価格表

在庫・価格 : 2025年04月28日 17時18分 現在

商品名 商品コード メーカー 包装 価格 在庫 リスト
Blyscan Glycosaminoglycan Assay Kit (110assays)
データシート※最新のデータシートでない場合があります
B1000 QBSバイオカラー
Biocolor, Ltd.
1 kit ¥120,000 2個 追加

在庫・価格 : 2025年04月28日 17時18分 現在

Blyscan Glycosaminoglycan Assay Kit (110assays)

  • 商品コード:B1000
  • メーカー:QBS
  • 包装:1kit
  • 価格: ¥120,000
  • 在庫:2個
使用文献
No. 文献情報 備考 参照
1 Agrawal, Parinita, and Krishna Pramanik. 2019. “Enhanced Chondrogenic Differentiation of Human Mesenchymal Stem Cells in Silk Fibroin/Chitosan/Glycosaminoglycan Scaffolds under Dynamic Culture Condition.” Differentiation 110: 36–48.

PubMed
2 Ahmed, Ebtehal et al. 2019. “Micro and Ultrastructural Changes Monitoring during Decellularization for the Generation of a Biocompatible Liver.” Journal of Bioscience and Bioengineering 128(2): 218–25.

PubMed
3 Akbarzadeh, Aram et al. 2019. “Preparation and Characterization of Human Size Whole Heart for Organ Engineering: Scaffold Microangiographic Imaging.” Regenerative Medicine 14(10): 939–54.

PubMed
4 Aoki, Fabio G. et al. 2019. “De-Epithelialization of Porcine Tracheal Allografts as an Approach for Tracheal Tissue Engineering.” Scientific Reports 9(1).

PubMed
5 Baek, Jihye, Martin K. Lotz, and Darryl D. D’Lima. 2019. “Core–Shell Nanofibrous Scaffolds for Repair of Meniscus Tears.” Tissue Engineering Part A: ten.tea.2018.0319.

PubMed
6 Bai, Ming et al. 2019. “MiR-182-5p Overexpression Inhibits Chondrogenesis by down- Regulating PTHLH.” Cell Biology International 43(3): 222–32.

PubMed
7 Bhattacharjee, Promita, Julia Fernández-Pérez, and Mark Ahearne. 2019. “Potential for Combined Delivery of Riboflavin and All-Trans Retinoic Acid, from Silk Fibroin for Corneal Bioengineering.” Materials Science and Engineering C 105.

PubMed
8 Browe, David C. et al. 2019. “Glyoxal Cross-Linking of Solubilized Extracellular Matrix to Produce Highly Porous, Elastic, and Chondro-Permissive Scaffolds for Orthopedic Tissue Engineering.” Journal of Biomedical Materials Research - Part A 107(10): 2222

PubMed
9 Brown, Wendy E., Grayson D. DuRaine, Jerry C. Hu, and Kyriacos A. Athanasiou. 2019. “Structure-Function Relationships of Fetal Ovine Articular Cartilage.” Acta Biomaterialia 87: 235–44.

PubMed
10 Cai, Hanxu et al. 2019. “A Col I and BCP Ceramic Bi-Layer Scaffold Implant Promotes Regeneration in Osteochondral Defects.” RSC Advances 9(7): 3740–48.

PubMed
11 Cao, Wanxu et al. 2019. “Dynamic Mechanical Loading Facilitated Chondrogenic Differentiation of Rabbit BMSCs in Collagen Scaffolds.” Regenerative Biomaterials 6(2): 99–106.

PubMed
12 Chai, Y. et al. 2019. “Evaluation of Decellularization Protocols for Production of Porcine Small Intestine Submucosa for Use in Abdominal Wall Reconstruction.” Hernia.

PubMed
13 Chen, Huanhuan Joyce, and Michael L. Shuler. 2019. “Engineering a Bioartificial Human Colon Model Through Decellularization and Recellularization.” In Methods in Molecular Biology, , 91–102.

PubMed
14 Chen, Liyang, Gejun Liu, Wenjun Li, and Xing Wu. 2019. “Sonic Hedgehog Promotes Chondrogenesis of Rabbit Bone Marrow Stem Cells in a Rotary Cell Culture System.” BMC Developmental Biology 19(1): 18.

PubMed
15 Chijimatsu, Ryota et al. 2019. “Effect of the Small Compound TD-198946 on Glycosaminoglycan Synthesis and Transforming Growth Factor Β3-Associated Chondrogenesis of Human Synovium-Derived Stem Cells in Vitro.” Journal of Tissue Engineering and Regenerativ

PubMed
16 Choi, Doo Jin et al. 2019. “Cartilage Protective and Anti-Analgesic Effects of ALM16 on Monosodium Iodoacetate Induced Osteoarthritis in Rats.” BMC Complementary and Alternative Medicine 19(1): 325.

PubMed
17 Curley, Clive J. et al. 2019. “An Injectable Alginate/Extra Cellular Matrix (ECM) Hydrogel towards Acellular Treatment of Heart Failure.” Drug Delivery and Translational Research 9(1): 1–13.

PubMed
18 Daly, Andrew C., and Daniel J. Kelly. 2019. “Biofabrication of Spatially Organised Tissues by Directing the Growth of Cellular Spheroids within 3D Printed Polymeric Microchambers.” Biomaterials 197: 194–206.

PubMed
19 Deng, Yuhao et al. 2019. “Enhancing Chondrogenesis and Mechanical Strength Retention in Physiologically Relevant Hydrogels with Incorporation of Hyaluronic Acid and Direct Loading of TGF-β.” Acta Biomaterialia 83: 167–76.

PubMed
20 Endo, Kentaro, Naoki Fujita, Takayuki Nakagawa, and Ryohei Nishimura. 2019. “Effect of Fibroblast Growth Factor-2 and Serum on Canine Mesenchymal Stem Cell Chondrogenesis.” Tissue Engineering - Part A 25(11–12): 901–10.

PubMed
21 Fujihara, Y et al. “Influence of Damage-Associated Molecular Patterns from Chondrocytes in Tissue-Engineered Cartilage.” liebertpub.com.

PubMed
22 Fujihara, Yuko et al. 2019. “Influence of Damage-Associated Molecular Patterns from Chondrocytes in Tissue-Engineered Cartilage.” Tissue Engineering Part A: ten.TEA.2019.0185.

PubMed
23 Graceffa, V., and D. I. Zeugolis. 2019. “Carrageenan Enhances Chondrogenesis and Osteogenesis in Human Bone Marrow Stem Cell Culture.” European cells & materials 37: 310–32.

PubMed
24 Hao, Ruijuan et al. 2019. “Cloning and Characterization of O-Xylosyltransferase Gene from Pinctada Fucata Martensii.” Journal of Applied Animal Research 47(1): 408–16.

PubMed
25 Hashimoto, Yasumasa et al. 2019. “Alteration of the Extracellular Matrix and Alpha-Gal Antigens in the Rat Lung Scaffold Reseeded Using Human Vascular and Adipogenic Stromal Cells.” Journal of Tissue Engineering and Regenerative Medicine 13(11): 2067–76.

PubMed
26 Haudenschild, Anne K. et al. 2019. “Non-Destructive Detection of Matrix Stabilization Correlates with Enhanced Mechanical Properties of Self-Assembled Articular Cartilage.” Journal of Tissue Engineering and Regenerative Medicine 13(4): 637–48.

PubMed
27 Hontani, Kazutoshi et al. 2019. “Chondrogenic Differentiation of Mouse Induced Pluripotent Stem Cells Using the Three-Dimensional Culture with Ultra-Purified Alginate Gel.” Journal of Biomedical Materials Research - Part A 107(5): 1086–93.

PubMed
28 Hu, Yue et al. 2019. “Quercetin Alleviates Rat Osteoarthritis by Inhibiting Inflammation and Apoptosis of Chondrocytes, Modulating Synovial Macrophages Polarization to M2 Macrophages.” Free Radical Biology and Medicine 145: 146–60.

PubMed
29 Hua, Jianming et al. 2019. “Small Molecule-Based Strategy Promotes Nucleus Pulposus Specific Differentiation of Adipose-Derived Mesenchymal Stem Cells.” Molecules and cells 42(9): 661–71.

PubMed
30 Huang, Li Hao et al. 2019. “Interleukin-17 Drives Interstitial Entrapment of Tissue Lipoproteins in Experimental Psoriasis.” Cell Metabolism 29(2): 475-487.e7.

PubMed
31 Ibsirlioglu, Tulin, Ayşe Eser Elçin, and Yaşar Murat Elçin. 2019. “Decellularized Biological Scaffold and Stem Cells from Autologous Human Adipose Tissue for Cartilage Tissue Engineering.” Methods.

PubMed
32 Iglesias, Carla et al. 2019. “Obtaining the SGAG Distribution Profile in Articular Cartilage Color Images.” Biomedizinische Technik.

PubMed
33 Jeong, Se Young, Mi Lan Kang, Jeong Won Park, and Gun Il Im. 2019. “Dual Functional Nanoparticles Containing SOX Duo and ANGPT4 ShRNA for Osteoarthritis Treatment.” Journal of Biomedical Materials Research - Part B Applied Biomaterials 108(1): 234–42.

PubMed
34 Karnik, Tanvi et al. 2019. “Ionic Silver Functionalized Ovine Forestomach Matrix - A Non- Cytotoxic Antimicrobial Biomaterial for Tissue Regeneration Applications.” Biomaterials Research 23(1): 6.

PubMed
35 Khader, Ateka, and Treena Livingston Arinzeh. 2019. “Biodegradable Zinc Oxide Composite Scaffolds Promote Osteochondral Differentiation of Mesenchymal Stem Cells.” Biotechnology and Bioengineering: bit.27173.

PubMed
36 Kim, Hee Jung et al. 2019. “Intra-Articular Delivery of Synovium-Resident Mesenchymal Stem Cells via BMP-7-Loaded Fibrous PLGA Scaffolds for Cartilage Repair.” Journal of Controlled Release 302: 169–80.

PubMed
37 Kim, MK et al. “Decellularized Extracellular Matrix-Based Bio-Ink with Enhanced 3D Printability and Mechanical Properties.” iopscience.iop.org.

PubMed
38 Kimmerling, Kelly A., John P. McQuilling, Miranda C. Staples, and Katie C. Mowry. 2019. “Tenocyte Cell Density, Migration, and Extracellular Matrix Deposition with Amniotic Suspension Allograft.” Journal of Orthopaedic Research 37(2): 412–20.

PubMed
39 Ko, Ji Yun et al. 2019. “SOX-6, 9-Transfected Adipose Stem Cells to Treat Surgically-Induced Osteoarthritis in Goats.” Tissue Engineering - Part A 25(13–14): 990–1000.

PubMed
40 Kobolák, Julianna et al. 2019. “Modelling the Neuropathology of Lysosomal Storage Disorders through Disease-Specific Human Induced Pluripotent Stem Cells.” Experimental Cell Research 380(2): 216–33.

PubMed
41 Koenig, Fabian, Marie Kilzer, Christian Hagl, and Nikolaus Thierfelder. 2019. “Successful Decellularization of Thick-Walled Tissue: Highlighting Pitfalls and the Need for a Multifactorial Approach.” International Journal of Artificial Organs 42(1): 17–24.

PubMed
42 Kouroupis, Dimitrios et al. 2019. “Infrapatellar Fat Pad-Derived MSC Response to Inflammation and Fibrosis Induces an Immunomodulatory Phenotype Involving CD10- Mediated Substance P Degradation.” Scientific Reports 9(1).

PubMed
43 Krueger, Simone et al. 2019. “Re-Differentiation Capacity of Human Chondrocytes in Vitro Following Electrical Stimulation with Capacitively Coupled Fields.” Journal of clinical medicine 8(11).

PubMed
44 Kuang, Biao, Yuanheng Yang, and Hang Lin. 2019. “Infiltration and In-Tissue Polymerization of Photocross-Linked Hydrogel for Effective Fixation of Implants into Cartilage - An in Vitro Study.” ACS Omega 4(20): 18540–44.

PubMed
45 Kwon, Heenam, Siobhan A. O’Leary, Jerry C. Hu, and Kyriacos A. Athanasiou. 2019. “Translating the Application of Transforming Growth Factor-Β1, Chondroitinase-ABC, and Lysyl Oxidase-like 2 for Mechanically Robust Tissue-Engineered Human Neocartilage.” Jou

PubMed
46 Larson, Benjamin L. et al. 2019. “Chondrogenic, Hypertrophic, and Osteochondral Differentiation of Human Mesenchymal Stem Cells on Three-Dimensionally Woven Scaffolds.” Journal of Tissue Engineering and Regenerative Medicine 13(8): 1453–65.

PubMed
47 Li, Tao et al. 2019. “Silk Fibroin/Carboxymethyl Chitosan Hydrogel with TunableBiomechanical Properties Has Application Potential as Cartilage Scaffold.”International Journal of Biological Macromolecules 137: 382–91.

PubMed
48 Lin, Hang et al. 2019. “Optimization of Photocrosslinked Gelatin/Hyaluronic Acid Hybrid Scaffold for the Repair of Cartilage Defect.” Journal of Tissue Engineering and Regenerative Medicine 13(8): 1418–29.

PubMed
49 Lin, Hung Jun et al. 2019. “Development of Decellularized Cornea by Organic Acid Treatment for Corneal Regeneration.” Tissue Engineering - Part A 25(7–8): 652–62.

PubMed
50 Lin, Hung Jun et al. 2019. “Decellularized Lymph Node Scaffolding as a Carrier for Dendritic Cells to Induce Anti-Tumor Immunity.” Pharmaceutics 11(11).

PubMed
51 Liu, Yanbo et al. 2019. “Development of an Injectable Thiolated Icariin Functionalized Collagen/Hyaluronic Hydrogel to Promote Cartilage Formation: In Vitro and in Vivo.” Journal of Materials Chemistry B 7(17): 2845–54.

PubMed
52 Machino, Ryusuke et al. 2019. “Replacement of Rat Tracheas by Layered, Trachea-Like, Scaffold-Free Structures of Human Cells Using a Bio-3D Printing System.” Advanced Healthcare Materials 8(7): 1800983.

PubMed
53 McQuilling, John P., Mary Rose Kammer, Kelly A. Kimmerling, and Katie C. Mowry. 2019. “Characterisation of Dehydrated Amnion Chorion Membranes and Evaluation of Fibroblast and Keratinocyte Responses in Vitro.” International Wound Journal 16(3): 827–40.

PubMed
54 McQuilling, John P., Kelly A. Kimmerling, Miranda C. Staples, and Katie C. Mowry. 2019. “Evaluation of Two Distinct Placental-Derived Membranes and Their Effect on Tenocyte Responses in Vitro.” Journal of Tissue Engineering and Regenerative Medicine 13(8)

PubMed
55 Miranda, Joana P. et al. 2019. “The Secretome Derived from 3D-Cultured Umbilical Cord Tissue MSCS Counteracts Manifestations Typifying Rheumatoid Arthritis.” Frontiers in Immunology 10(FEB).

PubMed
56 Mohd Heikal, Mohd Yunus, Shuid Ahmad Nazrun, Kien Hui Chua, and Abd Ghafar Norzana. 2019. “Stichopus Chloronotus Aqueous Extract as a Chondroprotective Agent for Human Chondrocytes Isolated from Osteoarthitis Articular Cartilage in Vitro.” Cytotechnology

PubMed
57 Mohiuddin, Omair A. et al. 2019. “Decellularized Adipose Tissue: Biochemical Composition, in Vivo Analysis and Potential Clinical Applications.”

PubMed
58 Moser, Philipp Tobias et al. 2019. “Creation of Laryngeal Grafts from Primary Human Cells and Decellularized Laryngeal Scaffolds.” Tissue Engineering Part A (800): ten.TEA.2019.0128.

PubMed
59 Munir, N, A McDonald, and A Callanan - Available at SSRN 3368802. “Integrational Technologies for Development of Three-Dimensional Scaffolds as Platforms in Cartilage Tissue Engineering.” papers.ssrn.com.

PubMed
60 Murphy, Caroline A., Gráinne M. Cunniffe, Atul K. Garg, and Maurice N. Collins. 2019. “Regional Dependency of Bovine Meniscus Biomechanics on the Internal Structure and Glycosaminoglycan Content.” Journal of the Mechanical Behavior of Biomedical Materials

PubMed
61 Naffa, Rafea et al. 2019. “Molecular and Structural Insights into Skin Collagen Reveals Several Factors That Influence Its Architecture.” International Journal of Biological Macromolecules 128: 509–20.

PubMed
62 Naik, Anish, Michelle F. Griffin, Matthew Szarko, and Peter E. Butler. 2019. “Optimizing the Decellularization Process of Human Maxillofacial Muscles for Facial Reconstruction Using a Detergent-Only Approach.” Journal of Tissue Engineering and Regenerativ

PubMed
63 Nam, Hui Yin et al. 2019. “Uniaxial Cyclic Tensile Stretching at 8% Strain Exclusively Promotes Tenogenic Differentiation of Human Bone Marrow-Derived Mesenchymal Stromal Cells.” Stem Cells International 2019.

PubMed
64 Ou, Li et al. 2019. “ZFN-Mediated In Vivo Genome Editing Corrects Murine Hurler Syndrome.” Molecular Therapy 27(1): 178–87.

PubMed
65 Park, Do Young et al. 2019. “Cross‐linked Cartilage Acellular Matrix Film Decreases Postsurgical Peritendinous Adhesions.” Artificial Organs: aor.13591.

PubMed
66 Pérez-Silos, Vanessa et al. 2019. “A Cellularized Biphasic Implant Based on a Bioactive Silk Fibroin Promotes Integration and Tissue Organization during Osteochondral Defect Repair in a Porcine Model.” International Journal of Molecular Sciences 20(20).

PubMed
67 Rezaei Topraggaleh, Tohid, Mojtaba Rezazadeh Valojerdi, Leila Montazeri, and Hossein Baharvand. 2019. “A Testis-Derived Macroporous 3D Scaffold as a Platform for the Generation of Mouse Testicular Organoids.” Biomaterials Science 7(4): 1422–36.

PubMed
68 Ruiz, Maxime et al. 2020. “TGFBI Secreted by Mesenchymal Stromal Cells Ameliorates Osteoarthritis and Is Detected in Extracellular Vesicles.” Biomaterials 226.

PubMed
69 Samuel, Shani et al. 2019. “Platelet-Rich Concentrate in Serum-Free Medium Enhances Cartilage-Specific Extracellular Matrix Synthesis and Reduces Chondrocyte Hypertrophy of Human Mesenchymal Stromal Cells Encapsulated in Alginate.” Platelets 30(1): 66–74.

PubMed
70 Sathy, Binulal N. et al. 2019. “Hypoxia Mimicking Hydrogels to Regulate the Fate of Transplanted Stem Cells.” Acta Biomaterialia 88: 314–24.

PubMed
71 Sorrentino, Nicolina Cristina et al. 2019. “Enhancing the Therapeutic Potential of Sulfamidase for the Treatment of Mucopolysaccharidosis IIIA.” Molecular Therapy - Methods and Clinical Development 15: 333–42.

PubMed
72 Su, Mingzhen et al. 2019. “Preparation of Decellularized Triphasic Hierarchical Bone- Fibrocartilage-Tendon Composite Extracellular Matrix for Enthesis Regeneration.” Advanced Healthcare Materials 8(19): 1900831.

PubMed
73 Tarafder, Solaiman et al. 2019. “In Situ Tissue Engineering of the Tendon-to-Bone Interface by Endogenous Stem/Progenitor Cells.” Biofabrication 12(1): 015008.

PubMed
74 Thej, Charan, and Pawan Kumar Gupta. 2019. “The Role of Mesenchymal Stromal Cells in the Management of Osteoarthritis of the Knee.” Mesenchymal Stem Cells [Working Title].

PubMed
75 Trevisan, C, MEA Fallas, … E Maghin - Stem cells, and undefined 2019. “Generation of a Functioning and Self‐Renewing Diaphragmatic Muscle Construct.” Wiley Online Library.

PubMed
76 Trevisan, Caterina et al. 2019. “Generation of a Functioning and Self-Renewing Diaphragmatic Muscle Construct.” Stem Cells Translational Medicine 8(8): 858–69.

PubMed
77 Truong, Vu Anh et al. 2019. “CRISPRai for Simultaneous Gene Activation and Inhibition to Promote Stem Cell Chondrogenesis and Calvarial Bone Regeneration.” Nucleic acids research 47(13): e74.

PubMed
78 Vander Beken, Seppe et al. 2019. “Newly Defined ATP-Binding Cassette Subfamily B Member 5 Positive Dermal Mesenchymal Stem Cells Promote Healing of Chronic Iron-Overload Wounds via Secretion of Interleukin-1 Receptor Antagonist.” Stem Cells 37(8): 1057–74

PubMed
79 Varshosaz, Jaleh et al. 2019. “Atorvastatin Lipid Nanocapsules and Gold Nanoparticles Embedded in Injectable Thermo-Gelling Hydrogel Scaffold Containing Adipose Tissue Extracellular Matrix for Myocardial Tissue Regeneration.” IET Nanobiotechnology 13(9):

PubMed
80 VeDepo, Mitchell C. et al. 2019. “Non-Physiologic Bioreactor Processing Conditions for Heart Valve Tissue Engineering.” Cardiovascular Engineering and Technology 10(4): 628–37.

PubMed
81 Watanabe, Naoto et al. 2019. “Comparison of High-Hydrostatic-Pressure Decellularized Versus Freeze-Thawed Porcine Menisci.” Journal of Orthopaedic Research 37(11): 2466–75.

PubMed
82 Wijburg, Frits A. et al. 2019. “Intrathecal Heparan-N-Sulfatase in Patients with Sanfilippo Syndrome Type A: A Phase IIb Randomized Trial.” Molecular Genetics and Metabolism 126(2): 121–30.

PubMed
83 Willemse, Jorke et al. 2020. “Fast, Robust and Effective Decellularization of Whole Human Livers Using Mild Detergents and Pressure Controlled Perfusion.” Materials Science and Engineering C 108.

PubMed
84 Wu, Jinglei et al. 2019. “Heart Valve Tissue-Derived Hydrogels: Preparation and Characterization of Mitral Valve Chordae, Aortic Valve, and Mitral Valve Gels.” Journal of Biomedical Materials Research - Part B Applied Biomaterials 107(5): 1732–40.

PubMed
85 Wu, Linxiao et al. 2019. “Thermoresponsive Stiffness Softening of Hierarchically Porous Nanohybrid Membranes Promotes Niches for Mesenchymal Stem Cell Differentiation.” Advanced Healthcare Materials 8(10): 1801556.

PubMed
86 Xie, Shanshan et al. 2019. “Book-Shaped Decellularized Tendon Matrix Scaffold Combined with Bone Marrow Mesenchymal Stem Cells-Sheets for Repair of Achilles Tendon Defect in Rabbit.” Journal of Orthopaedic Research 37(4): 887–97.

PubMed
87 Xu, Chet C., and Ted Mau. 2019. “A Tissue-Specific, Injectable Acellular Gel for the Treatment of Chronic Vocal Fold Scarring.” Acta Biomaterialia 99: 141–53.

PubMed
88 Xu, Jiaqi et al. 2019. “Decellularised Nucleus Pulposus as a Potential Biologic Scaffold for Disc Tissue Engineering.” Materials Science and Engineering C 99: 1213–25.

PubMed
89 Yang, Yuanheng et al. 2019. “Condensation-Driven Chondrogenesis of Human Mesenchymal Stem Cells within Their Own Extracellular Matrix: Formation of Cartilage with Low Hypertrophy and Physiologically Relevant Mechanical Properties.” Advanced Biosystems: 19

PubMed
90 Zhang, Shipin et al. 2019. “MSC Exosomes Alleviate Temporomandibular Joint Osteoarthritis by Attenuating Inflammation and Restoring Matrix Homeostasis.” Biomaterials 200: 35–47.

PubMed
91 Jonsdottir-Buch, S. M.; Gunnarsdottir, K.; Sigurjonsson, O. E., 2020, Human Embryonic-Derived Mesenchymal Progenitor Cells (hES-MP Cells) are Fully Supported in Culture with Human Platelet Lysates, Bioengineering

PubMed
92 Maloney, E.; Wang, Y. N.; Vohra, R.; Son, H.; ..., 2020, Magnetic resonance imaging biomarkers for pulsed focused ultrasound treatment of pancreatic ductal adenocarcinoma, World journal of 腦駈拾

PubMed
93 Salinas, E. Y.; Aryaei, A.; Paschos, N.; Berson, E.; ..., 2020, Shear stress induced by fluid flow produces improvements in tissue-engineered cartilage, 腦駈拾

PubMed
94 Almeida, B.; Wang, Y.; Shukla, A., 2020, Effects of nanoparticle properties on kartogenin delivery and interactions with mesenchymal stem cells, Annals of Biomedical Engineering

PubMed
95 Zhang, L.; Qiu, H.; Wang, D.; Miao, H.; ..., 2020, Enhanced vascularization and biocompatibility of rat pancreatic decellularized scaffolds loaded with platelet-rich plasma, Journal of 腦駈拾

PubMed
96 Ahmed, E.; Saleh, T.; Yu, L.; Song, S. H.; ..., 2020, Decellularized extracellular matrix窶甚ich hydrogel窶都ilver nanoparticle mixture as a potential treatment for acute liver failure model, 窶ヲ Research Part A

PubMed
97 Meran, L.; Massie, I.; Campinoti, S.; Weston, A. E.; ..., 2020, Engineering transplantable jejunal mucosal grafts using patient-derived organoids from children with intestinal failure, Nature medicine

PubMed
98 Baumann, H. J.; Mahajan, G.; Ham, T. R.; Betonio, P.; ..., 2020, Softening of the chronic hemi-section spinal cord injury scar parallels dysregulation of cellular and extracellular matrix content, Journal of the 腦駈拾

PubMed
99 Liu, Y.; Zhou, W.; Chen, F. F.; Xiao, F.; Zhu, H. Y.; ..., 2020, Overexpression of LMP-1 Decreases Apoptosis in Human Nucleus Pulposus Cells via Suppressing the NF-ホコB Signaling Pathway, 窶ヲ Medicine and Cellular 窶ヲ

PubMed
100 Rorick, C. B.; Mitchell, J. A.; Bledsoe, R. H.; Floren, M. L.; ..., 2020, Cryopreserved, thin, laser-etched osteochondral allograft maintains the functional components of articular cartilage after 2 years of storage, Journal of Orthopaedic 腦駈拾

PubMed
101 Taniguchi, D.; Matsumoto, K.; Machino, R.; Takeoka, Y.; ..., 2020, Human lung microvascular endothelial cells as potential alternatives to human umbilical vein endothelial cells in bio-3D-printed trachea-like structures, Tissue and Cell

PubMed
102 Wu, Y.; Yang, Z.; Denslin, V.; Ren, X. F.; ..., 2020, Repair of osteochondral defects with predifferentiated mesenchymal stem cells of distinct phenotypic character derived from a nanotopographic platform, 腦駈拾 American Journal of 腦駈拾

PubMed
103 Ventura, R. D.; Padalhin, A. R.; Lee, B. T., 2020, Functionalization of extracellular matrix (ECM) on multichannel biphasic calcium phosphate (BCP) granules for improved bone regeneration, Materials &Design

PubMed
104 Capella-Monsonテュs, H.; Pieri, A. De; Peixoto, R.; ..., 2020, Extracellular matrix-based biomaterials as adipose-derived stem cell delivery vehicles in wound healing: a comparative study between a collagen scaffold 窶ヲ, Stem Cell Research & 窶ヲ

PubMed
105 Li, Y.; Chen, M.; Zhou, W.; Gao, S.; Luo, X.; Peng, L.; Yan, J.; ..., 2020, Cell-free 3D wet-electrospun PCL/silk fibroin/Sr2+ scaffold promotes successful total meniscus regeneration in a rabbit model, Acta biomaterialia

PubMed
106 Ventura, R. D.; Padalhin, A. R.; Kim, B.; Park, M. K.; ..., 2020, Evaluation of bone regeneration potential of injectable extracellular matrix (ECM) from porcine dermis loaded with biphasic calcium phosphate (BCP) powder, Materials Science and 腦駈拾

PubMed
107 Lee, H.; Ju, Y. M.; Kim, I.; Elsangeedy, E.; Lee, J. H.; Yoo, J. J.; ..., 2020, A novel decellularized skeletal muscle-derived ECM scaffolding system for in situ muscle regeneration, Methods

PubMed
108 Zhang, L.; Miao, H.; Wang, D.; Qiu, H.; Zhu, Y.; Yao, X.; ..., 2020, Pancreatic extracellular matrix and platelet窶甚ich plasma constructing injectable hydrogel for pancreas tissue engineering, Artificial 窶ヲ

PubMed
109 Hahn, O.; Kieb, M.; Jonitz-Heincke, A.; ..., 2020, Dose-dependent effects of platelet-rich plasma powder on chondrocytes in vitro, 腦駈拾 American Journal of 腦駈拾

PubMed
110 Allas, L.; Rochoux, Q.; Leclercq, S.; Boumテゥdiene, K.; ..., 2020, Development of a simple osteoarthritis model useful to predict in vitro the anti-hypertrophic action of drugs, Laboratory 窶ヲ

PubMed
111 Santi, L.; Ponti, G. De; Dina, G.; Pievani, A.; Corsi, A.; ..., 2020, Neonatal combination therapy improves some of the clinical manifestations in the Mucopolysaccharidosis type I murine model, Molecular Genetics and 腦駈拾

PubMed
112 Chen, Y.; Lee, K.; Kawazoe, N.; Yang, Y.; Chen, G., 2020, ECM scaffolds mimicking extracellular matrices of endochondral ossification for the regulation of mesenchymal stem cell differentiation, Acta Biomaterialia

PubMed
113 Entchev, E.; Jantzen, I.; Masson, P.; Bocart, S.; Bournique, B.; ..., 2020, Odiparcil, a potential glycosaminoglycans clearance therapy in mucopolysaccharidosis VI窶忍vidence from in vitro and in vivo models, PloS one

PubMed
114 Okamura, G.; Ebina, K.; Hirao, M.; Chijimatsu, R.; ..., 2020, Promoting effect of basic fibroblast growth factor in synovial mesenchymal stem cell-based cartilage regeneration, International journal of 腦駈拾

PubMed
115 Li, J.; Sasaki, N.; Itaka, K.; Terpstra, M.; ..., 2020, Regulation of chondrocyte differentiation by changing intercellular distances using type II collagen microfibers, ACS Biomaterials 腦駈拾

PubMed
116 Şeker, Ş; Elçin, A. E.; Elçin, Y. M., 2020, Macroporous elastic cryogels based on platelet lysate and oxidized dextran as tissue engineering scaffold: In vitro and in vivo evaluations, Materials Science and Engineering: C

PubMed
117 Belviso, I.; Romano, V.; Sacco, A. M.; Ricci, G.; ..., 2020, Decellularized human dermal matrix as a biological scaffold for cardiac repair and regeneration, … in Bioengineering and …

PubMed
118 Lahrood, F. Nobakht; Saheli, M.; Farzaneh, Z.; ..., 2020, Generation of transplantable three-dimensional hepatic-patch to improve the functionality of hepatic cells in vitro and in vivo, Stem Cells and …

PubMed
119 Goh, S. K.; Halfter, W.; Richardson, T.; Bertera, S.; ..., 2020, Organ-specific ECM arrays for investigating cell-ECM interactions during stem cell differentiation, …

PubMed
120 Intartaglia, D.; Giamundo, G.; Marrocco, E.; ..., 2020, Retinal degeneration in MPS-IIIA mouse model, Frontiers in Cell and …

PubMed
121 Moor, L. De; Beyls, E.; Declercq, H., 2020, Scaffold free microtissue formation for enhanced cartilage repair, Annals of biomedical engineering

PubMed
122 Wang, X.; Lu, Y.; Wang, W.; Wang, Q.; Liang, J.; ..., 2020, Effect of different aged cartilage ECM on chondrogenesis of BMSCs in vitro and in vivo, Regenerative …

PubMed
123 Costa, J. B.; Park, J.; Jorgensen, A. M.; ..., 2020, 3D bioprinted highly elastic hybrid constructs for advanced fibrocartilaginous tissue regeneration, Chemistry of …

PubMed
124 Parchehbaf-Kashani, M.; Sepantafar, M.; ..., 2020, Design and characterization of an electroconductive scaffold for cardiomyocytes based biomedical assays, Materials Science and …

PubMed
125 Wang, Y.; Xiao, Y.; Long, S.; Fan, Y.; ..., 2020, Role of N-Cadherin in a Niche-Mimicking Microenvironment for Chondrogenesis of Mesenchymal Stem Cells In Vitro, ACS Biomaterials Science …

PubMed
126 Kong, W.; Gao, Y.; Liu, Q.; Dong, L.; Guo, L.; Fan, H.; ..., 2020, The effects of chemical crosslinking manners on the physical properties and biocompatibility of collagen type I/hyaluronic acid composite hydrogels, International Journal of …

PubMed
127 Luo, C.; Xie, R.; Zhang, J.; Liu, Y.; Li, Z.; Zhang, Y.; ..., 2020, Low-temperature three-dimensional printing of tissue cartilage engineered with gelatin methacrylamide, … Engineering Part C …

PubMed
128 Yun, H. W.; Choi, B. H.; Park, D. Y.; Jin, L. H.; Min, B. H., 2020, Inhibitory effect of topical cartilage acellular matrix suspension treatment on neovascularization in a rabbit corneal model, Tissue Engineering and …

PubMed
129 Wei, L.; Cao, P.; Xu, C.; Zhong, H.; Wang, X.; Bai, M.; ..., 2020, Chondroitin synthase‐3 regulates nucleus pulposus degeneration through actin‐induced YAP signaling, The FASEB …

PubMed
130 Xu, Q.; Xing, H.; Wu, J.; Chen, W.; Zhang, N., 2020, miRNA-141 induced pyroptosis in intervertebral disk degeneration by targeting ROS generation and activating TXNIP/NLRP3 signaling in nucleus pulpous …, Frontiers in Cell and …

PubMed
131 Zhao, W.; Zou, T.; Cui, H.; Lv, Y.; Gao, D.; Ruan, C.; ..., 2020, Parathyroid hormone (1-34) promotes the effects of 3D printed scaffold-seeded bone marrow mesenchymal stem cells on meniscus regeneration, Stem Cell Research & …

PubMed
132 Zhao, C.; Li, Y.; Peng, G.; Lei, X.; Zhang, G.; ..., 2020, Decellularized liver matrix-modified chitosan fibrous scaffold as a substrate for C3A hepatocyte culture, Journal of biomaterials …

PubMed
133 Muir, E., 2020, Targeting chondroitinase ABC to axons enhances the ability of chondroitinase to promote neurite outgrowth and sprouting,

PubMed
134 Qasim, M.; Le, N. X. T.; Nguyen, T. P. T.; Chae, D. S.; ..., 2020, Nanohybrid biodegradable scaffolds for TGF-β3 release for the chondrogenic differentiation of human mesenchymal stem cells, International Journal of …

PubMed
135 Saleh, T.; Ahmed, E.; Yu, L.; Song, S. H.; ..., 2020, Conjugating homogenized liver‐extracellular matrix into decellularized hepatic scaffold for liver tissue engineering, … Research Part A

PubMed
136 Wang, Y.; Duan, M.; Rahman, M.; Yang, M.; Zhao, W.; ..., 2020, Use of bioactive extracellular matrix fragments as a urethral bulking agent to treat stress urinary incontinence, Acta Biomaterialia

PubMed
137 Luo, Y.; Ma, L., 2020, Bioprosthetic heart valves with reduced immunogenic residuals using vacuum-assisted decellularization treatment, Biomedical Materials

PubMed
138 Vliet, DM van; Lin, Y.; Bale, N. J.; Koenen, M.; Villanueva, L.; ..., 2020, … gen. nov., sp. nov., and Pontiella sulfatireligans sp. nov., two marine anaerobes of the Pontiellaceae fam. nov. producing sulfated glycosaminoglycan-like …, Microorganisms

PubMed
139 Yoon, K. H.; Park, J. Y.; Lee, J. Y.; Lee, E. A.; ..., 2020, Costal chondrocyte窶電erived pellet-type autologous chondrocyte implantation for treatment of articular cartilage defect, 窶ヲ American Journal of 窶ヲ

PubMed
140 Sturtivant, A.; Callanan, A., 2020, The use of antifreeze proteins to modify pore structure in directionally frozen alginate sponges for cartilage tissue engineering, Biomedical Physics &Engineering …

PubMed
141 Dehghan-Baniani, D.; Chen, Y.; Wang, D.; ..., 2020, Injectable in situ forming kartogenin-loaded chitosan hydrogel with tunable rheological properties for cartilage tissue engineering, Colloids and Surfaces B …

PubMed
142 Hanai, H.; Jacob, G.; Nakagawa, S.; Tuan, R. S.; ..., 2020, Potential of soluble decellularized extracellular matrix for musculoskeletal tissue engineering窶田omparison of various mesenchymal tissues, Frontiers in Cell and 窶ヲ

PubMed
143 Ba, R.; Kong, L.; Wu, G.; Liu, S.; Dong, Y.; Li, B.; ..., 2020, Increased expression of Sox9 during balance of BMSCs/chondrocyte bricks in platelet-rich plasma promotes construction of a stable 3-D chondrogenesis …, Stem Cells …

PubMed
144 Louis, F.; Fujii, N.; Katsuyama, M.; Okumoto, S.; ..., 2020, Effects of radiofrequency and ultrasound on the turnover rate of skin aging components (skin extracellular matrix and epidermis) via HSP47-induced stimulation, Biochemical and …

PubMed
145 Wang, Y.; Nakajima, T.; Diao, P.; Yamada, Y.; ..., 2020, Polyunsaturated fatty acid deficiency affects sulfatides and other sulfated glycans in lysosomes through autophagy‐mediated degradation, The FASEB …

PubMed
146 Wang, Z.; Han, L.; Sun, T.; Ma, J.; Sun, S.; Ma, L.; Wu, B., 2020, Extracellular matrix derived from allogenic decellularized bone marrow mesenchymal stem cell sheets for the reconstruction of osteochondral defects in rabbits, Acta biomaterialia

PubMed
147 Lin, Y. M.; Lam, A. T. L.; Lee, J.; Leng, T. K.; Sim, E.; Jian, L.; ..., 2020, Human early mesenchymal stromal cells delivered on porous lightweight biodegradable polycaprolactone-based microcarriers result in improved cartilage formation, Materialia

PubMed
148 Putri, N. R. E.; Wang, X.; Chen, Y.; Li, X.; Kawazoe, N.; ..., 2020, Preparation of PLGA-collagen hybrid scaffolds with controlled pore structures for cartilage tissue engineering, Progress in Natural …

PubMed
149 Laker, L.; Dohmen, P. M.; Smit, F. E., 2020, The sequential effects of a multifactorial detergent based decellularization process on bovine pericardium, Biomedical Physics & …

PubMed
150 Shalaby, S.; Simioni, P.; Campello, E.; ..., 2020, Endothelial damage of the portal vein is associated with heparin-like effect in advanced stages of cirrhosis, Thrombosis and …

PubMed
151 Raftery, R. M.; Vazquez, AG Gonzalez; ..., 2020, Activation of the SOX‐5, SOX‐6, and SOX‐9 trio of transcription factors using a gene‐activated scaffold stimulates mesenchymal stromal cell chondrogenesis and …, Advanced …

PubMed
152 Dテュaz-Payno, P. J.; Browe, D. C.; Cunniffe, G. M.; ..., 2020, The identification of articular cartilage and growth plate extracellular matrix-specific proteins supportive of either osteogenesis or stable chondrogenesis of 窶ヲ, 窶ヲ and Biophysical Research 窶ヲ

PubMed
153 Derkacz, A.; Olczyk, P.; Jura-Poltorak, A.; ..., 2020, Clinical significance of uri-nary glycosaminoglycan excretion in inflammatory bowel disease patients, J. Physiol …

PubMed
154 Ryu, J. S.; Seo, S. Y.; Jeong, E. J.; Kim, J. Y.; Koh, Y. G.; ..., 2020, Ganglioside GM3 up-regulate chondrogenic differentiation by transform growth factor receptors, International Journal of …

PubMed
155 Chin, L. K.; Theise, N. D.; Loneker, A. E.; ..., 2020, Lipid droplets disrupt mechanosensing in human hepatocytes, American Journal …

PubMed
156 Hamamoto, S.; Chijimatsu, R.; Shimomura, K.; ..., 2020, Enhancement of chondrogenic differentiation supplemented by a novel small compound for chondrocyte-based tissue engineering, Journal of experimental …

PubMed
157 Mohamed, H. T.; Untereiner, V.; Cinque, G.; Ibrahim, S. A.; ..., 2020, Infrared microspectroscopy and imaging analysis of inflammatory and non-inflammatory breast cancer cells and their GAG secretome, Molecules

PubMed
158 Liu, B.; Zhang, S.; Wang, W.; Yun, Z.; Lv, L.; ..., 2020, Matrisome provides a supportive microenvironment for skin functions of diverse species, ACS Biomaterials …

PubMed
159 Chen, Y.; Ma, M.; Teng, Y.; Cao, H.; Yang, Y.; ..., 2020, Efficient manufacturing of tissue engineered cartilage in vitro by a multiplexed 3D cultured method, Journal of materials …

PubMed
160 Jung, S. Y.; Tran, A. N. T.; Kim, H. Y.; Choi, E.; Lee, S. J.; ..., 2020, Development of acellular respiratory mucosal matrix using porcine tracheal mucosa, Tissue Engineering and …

PubMed
161 Tan, F.; Wang, D.; Yuan, Z., 2020, The fibroblast-like synoviocyte derived exosomal long non-coding RNA H19 alleviates osteoarthritis progression through the miR-106b-5p/TIMP2 axis, Inflammation

PubMed
162 Wang, Q.; Li, X.; Wang, P.; Yao, Y.; Xu, Y.; Chen, Y.; ..., 2020, Bionic composite hydrogel with a hybrid covalent/noncovalent network promoting phenotypic maintenance of hyaline cartilage, Journal of Materials …

PubMed
163 Kushioka, J.; Kaito, T.; Chijimatsu, R.; Okada, R.; ..., 2020, The small compound, TD-198946, protects against intervertebral degeneration by enhancing glycosaminoglycan synthesis in nucleus pulposus cells, Scientific reports

PubMed
164 Chen, S.; Qin, L.; Wu, X.; Fu, X.; Lin, S.; Chen, D.; ..., 2020, Moderate fluid shear stress regulates heme oxygenase-1 expression to promote autophagy and ECM homeostasis in the nucleus pulposus cells, Frontiers in cell and …

PubMed
165 Lan, X.; Zhao, Q.; Zhang, J.; Lei, Y.; Wang, Y., 2020, A combination of hydrogen bonding and chemical covalent crosslinking to fabricate a novel swim-bladder-derived dry heart valve material yields advantageous …, Biomedical Materials

PubMed
166 Day, P.; Alves, N.; Daniell, E.; Dasgupta, D.; Ogborne, R.; ..., 2020, Targeting chondroitinase ABC to axons enhances the ability of chondroitinase to promote neurite outgrowth and sprouting, PloS one

PubMed
167 Guillot-Ferriols, M.; Rodriguez-Hernandez, J. C.; ..., 2020, Poly (vinylidene) fluoride membranes coated by heparin/collagen layer-by-layer, smart biomimetic approaches for mesenchymal stem cell culture, Materials Science and …

PubMed
168 Martino, C.; Kellman, B. P.; Sandoval, D. R.; Clausen, T. M.; ..., 2020, Bacterial modification of the host glycosaminoglycan heparan sulfate modulates SARS-CoV-2 infectivity, BioRxiv

PubMed
169 Nayakawde, N. B.; Methe, K.; Banerjee, D.; ..., 2020, In Vitro Regeneration of Decellularized Pig Esophagus Using Human Amniotic Stem Cells, BioResearch Open …

PubMed
170 Kanemitsu, M.; Nakasa, T.; Shirakawa, Y.; ..., 2020, Role of vasoactive intestinal peptide in the progression of osteoarthritis through bone sclerosis and angiogenesis in subchondral bone, Journal of Orthopaedic …

PubMed
171 Li, J.; Cai, Z.; Cheng, J.; Wang, C.; Fang, Z.; ..., 2020, Characterization of a heparinized decellularized scaffold and its effects on mechanical and structural properties, Journal of …

PubMed
172 Chen, D.; Smith, L. R.; Khandekar, G.; Patel, P.; Yu, C. K.; ..., 2020, Distinct effects of different matrix proteoglycans on collagen fibrillogenesis and cell-mediated collagen reorganization, Scientific reports

PubMed
173 Hussey, G. S.; Nascari, D. G.; Saldin, L. T.; Kolich, B.; Lee, Y. C.; ..., 2020, Ultrasonic cavitation to prepare ECM hydrogels, Acta biomaterialia

PubMed
174 Christensen, C.; Jonsdottir-Buch, S. M.; Sigurjonsson, O. E., 2020, Effects of amotosalen treatment on human platelet lysate bioactivity: A proof-of-concept study, Plos one

PubMed
175 Boleij, M.; Kleikamp, H.; Pabst, M.; Neu, T. R.; ..., 2020, Decorating the anammox house: sialic acids and sulfated glycosaminoglycans in the extracellular polymeric substances of anammox granular sludge, … science &technology

PubMed
176 Pieri, A. De; Rana, S.; Korntner, S.; Zeugolis, D. I., 2020, Seaweed polysaccharides as macromolecular crowding agents, International Journal of …

PubMed
177 Gao, Y.; Liu, Q.; Kong, W.; Wang, J.; He, L.; Guo, L.; ..., 2020, Activated hyaluronic acid/collagen composite hydrogel with tunable physical properties and improved biological properties, International journal of …

PubMed
178 Kang, H.; Sun, A.; Wu, Q.; Yang, J.; ..., 2020, Atherogenic diet-diminished endothelial glycocalyx contributes to impaired vasomotor properties in rat, American Journal …

PubMed
179 Felz, S.; Neu, T. R.; Loosdrecht, MCM van; Lin, Y., 2020, Aerobic granular sludge contains Hyaluronic acid-like and sulfated glycosaminoglycans-like polymers, Water research

PubMed
180 Delbaere, S.; Damme, T. Van; Syx, D.; Symoens, S.; ..., 2020, Hypomorphic zebrafish models mimic the musculoskeletal phenotype of 硫4GalT7-deficient Ehlers-Danlos syndrome, Matrix Biology

PubMed
181 Lee, J. S.; Park, H. S.; Jung, H.; Lee, H.; Hong, H.; Lee, Y. J.; ..., 2020, 3D-printable photocurable bioink for cartilage regeneration of tonsil-derived mesenchymal stem cells, Additive …

PubMed
182 Casal-Beiroa, P.; Balboa-Barreiro, V.; ..., 2020, Raman spectroscopy for osteoarthritis severity and cartilage degradation assessment-defining optical biomarkers using an ex vivo model, Osteoarthritis and …

PubMed
183 Rooney, P.; Ryan, C.; McDermott, B. J.; Dev, K.; ..., 2020, Effect of Glycosaminoglycan Replacement on Markers of Interstitial Cystitis In Vitro, Frontiers in …

PubMed
184 Hatami-Marbini, H.; Pachenari, M., 2020, On influence of sulfated glycosaminoglycans on tensile properties of posterior sclera, Mechanics of Soft Materials

PubMed
185 Keller, S.; Liedek, A.; Shendi, D.; Bach, M.; Tovar, G. E. M.; ..., 2020, Eclectic characterisation of chemically modified cell-derived matrices obtained by metabolic glycoengineering and re-assessment of commonly used methods, RSC …

PubMed
186 Beiroa, P. Casal, 2020, Biomarcadores 坦pticos para el diagn坦stico de la osteoartritis utilizando la espectroscop鱈a Raman,

PubMed
187 Cramer, C., 2020, Charakterisierung der biomechanischen Eigenschaften und extrazellul辰ren Matrix bei BAV-assoziierten Aortopathien,

PubMed
188 邹彤; 赵雯; 吕阳欧; 高登科; 阮晨梅; 张霞; 张翊华, 2020, 钻孔法增加犬半月板脱细胞基质支架孔隙率的可行性分析, 畜牧兽医学报

PubMed
189 Svatić, R., 2020, Probir na mukopolisaharidoze iz uzorka suhe kapi mokraće,

PubMed
190 Miara, A., 2020, Ocena wydalania glikozoaminoglikanów z moczem osób chorych na twardzinę układową,

PubMed
191 Melo, P., 2020, Additive manufacturing of bioceramic and biocomposite devices for bone repair,

PubMed
192 조연진, 2020, Extraction of Polysaccharide from Achatina fulica Using Compressed Hot Water and Development of Bioactive Polysaccharide Derivatives by Chemical Modification,

PubMed
193 Duda, M., 2020, Wydalanie glikozoaminoglikanów z moczem u otyłych chorych na cukrzycę typu 2 leczonych insuliną detemir,

PubMed
194 Sevrain, L. C.; Verdier-Sevrain, S. Y., 2020, Methods and compositions for repair of cartilage using an in vivo bioreactor, US Patent 10,806,824

PubMed
195 Nulty, J., 2020, THE DEVELOPMENT OF A NOVEL 3D BIOPRINTING STRATEGY TO DRIVE VASCULARISATION, AND ITS APPLICATION FOR BONE TISSUE …,

PubMed
196 Jin-Hwan, K.; Han, M. S., 2020, Composition for preventing or treating osteoarthritis containing an extract of Angelica gigas Nakai, US Patent 10,688,144

PubMed
197 Mohiuddin, O. A., 2020, Characterization of Decellularized Adipose Tissue Hydrogel and Analysis of Its Regenerative Potential in Mouse Femoral Defect Model,

PubMed
198 TUBERT, MFB; HAURIGOT, VA; ..., 2020, Adenoassociated virus vectors for the treatment of mucopolysaccharidoses, US Patent 10,617,771

PubMed
199 Gansau, J., 2020, On the Effect of Primed Cellular Microcapsules and pH Neutralizing Biomaterials to Augment Regeneration of the Intervertebral Disc,

PubMed
200 Kadir, N. D. B., 2020, Engineering Mesenchymal Stem Cell Paracrine Signaling for Cartilage Regeneration,

PubMed
201 Echols, J.; Siddiqui, A.; Dai, Y.; Havasi, V.; ..., 2020, A regulated NMD mouse model supports NMD inhibition as a viable therapeutic option to treat genetic diseases, Disease models & …

PubMed
202 Scheurer, S., 2020, 3D Bioprinting of anatomically accurate Implants for Meniscus Tissue Engineering,

PubMed
203 Giuliani, N.; Lovati, A. B.; Ferroni, M.; Ferrari, L.; ..., 2020, Use of an optimized automatic procedure for measuring the hydraulic permeability of articular cartilage, … GNB2020, June 10th …

PubMed
204 Payno, P. J. D., 2020, The development of biomimetic scaffolds for osteochondral tissue engineering,

PubMed
205 Maghin, E., 2020, Study of extracellular matrix in healthy and pathological condition,

PubMed
206 Huber, A.; Taghavie-Moghadam, P., 2020, Cartilage matrix, US Patent App. 16/631,942

PubMed
207 David, S., 2020, Stem Cell and Tissue-Based Therapies for Male Infertility,

PubMed
208 Arinzeh, T. L.; Khader, A., 2020, System and method for insulin-mimetic of cartilage, bone, or osteochondral repair and piezoelectric composite scaffold, US Patent 10,772,909

PubMed
209 Li, P., 2020, The roles of extracellular matrix molecules matrilins and aggrecan in bone development and articular cartilage functions,

PubMed
210 Keong, L. C., 2020, Dermal Delivery of Berberine for Suppression of Pain and Inflammation in Knee Osteoarthritis,

PubMed
211 Munir, N.; McDonald, A.; Callanan, A., 2020, Integrational technologies for the development of three-dimensional scaffolds as platforms in cartilage tissue engineering, Acs Omega

PubMed
212 Schipani, R.; Scheurer, S.; Florentin, R.; Critchley, S. E.; ..., 2020, Reinforcing interpenetrating network hydrogels with 3D printed polymer networks to engineer cartilage mimetic composites, …

PubMed
213 Higuita, M. L., 2020, Xenogeneic Small Diameter Vein Extracellular Matrix Scaffolds for Use in Vascular Diseases,

PubMed
214 Jahanbakhsh, A.; Nourbakhsh, M. S.; Bonakdar, S.; ..., 2020, Evaluation of alginate modification effect on cell-matrix interaction, mechanotransduction and chondrogenesis of encapsulated MSCs, Cell and tissue …

PubMed
215 Settembre, C.; Cinque, L.; Bartolomeo, R.; ..., 2020, Treatment of bone growth disorders, US Patent App. 15 …

PubMed
216 Hong, H.; Seo, Y. B.; Lee, J. S.; Lee, Y. J.; Lee, H.; Ajiteru, O.; ..., 2020, Digital light processing 3D printed silk fibroin hydrogel for cartilage tissue engineering, Biomaterials

PubMed
217 Bielajew, B.; Hu, J.; Athanasiou, K.; Gonzalez-Leon, E., 2020, Engineering self-assembled neomenisci through combination of matrix augmentation and directional remodeling.,

PubMed
218 Higuita, M. L.; Griffiths, L., 2020, Effect of extracellular matrix scaffold generation method on function of small diameter venous valved conduits, Available at SSRN 3509327

PubMed
219 Baumann, H., 2020, Molecular investigation into spinal cord injury regeneration barriers and therapeutic strategies,

PubMed
220 Badylak, S. F.; Freytes, D., 2020, Extracellular matrix-derived gels and related methods, US Patent 10,729,813

PubMed
221 Fischer, I., 2020, Extracellular Matrix-and Pluripotent Stem Cell-based Tissue Engineering of the Kidney,

PubMed
222 Tiemann, T. T.; Padma, A. M.; Sehic, E.; ..., 2020, Towards uterus tissue engineering: a comparative study of sheep uterus decellularisation, Molecular human …

PubMed
223 Helgeland, E., 2020, Scaffold-Based Temporomandibular Joint Cartilage Regeneration: Using Bone Marrow-Derived Mesenchymal Stem Cells,

PubMed
224 Li, P.; Fleischhauer, L.; Nicolae, C.; Prein, C.; ..., 2020, Mice lacking the matrilin family of extracellular matrix proteins develop mild skeletal abnormalities and are susceptible to age-associated osteoarthritis, International journal of …

PubMed
225 Sumitran-Holgersson, S.; Rosales, A.; ..., 2020, Bioengineered allogeneic valve, US Patent App. 16 …

PubMed
226 Weisgrab, G.; Guillaume, O.; Guo, Z.; Heimel, P.; ..., 2020, 3D Printing of large-scale and highly porous biodegradable tissue engineering scaffolds from poly (trimethylene-carbonate) using two-photon-polymerization, …

PubMed
227 Son, Y. S.; Lee, J. S.; Lee, E. K.; Lee, J. Y., 2020, Artificial cartilage containing chondrocytes obtained from costal cartilage and preparation process thereof, US Patent 10,583,157

PubMed
228 V箪born箪, K., 2020, Development of extracellular-matrix scaffolds for CNS repair,

PubMed
229 Gonzalez-Leon, E. A.; Bielajew, B. J.; Hu, J. C.; ..., 2020, Engineering self-assembled neomenisci through combination of matrix augmentation and directional remodeling, Acta biomaterialia

PubMed
230 Naffa, R.; Zhang, Y.; Mansel, B.; Zhang, W.; ..., 2020, Chemical and structural composition of alpaca (vicugna pacos) skin with a focus on collagen crosslinks, Small ruminant …

PubMed
231 Weissenberger, M.; Weissenberger, M. H.; Gilbert, F.; ..., 2020, Reduced hypertrophy in vitro after chondrogenic differentiation of adult human mesenchymal stem cells following adenoviral SOX9 gene delivery, BMC musculoskeletal …

PubMed
232 Critchley, S.; Sheehy, E. J.; Cunniffe, G.; Diaz-Payno, P.; ..., 2020, 3D printing of fibre-reinforced cartilaginous templates for the regeneration of osteochondral defects, Acta Biomaterialia

PubMed
233 Salinas, E. Y., 2020, Using mechanical stimulation to improve tissue-engineered articular cartilage for implantation in the knee joint,

PubMed
234 Klinder, A.; Kussauer, S.; Hiemer, B.; Wree, A.; ..., 2020, Influence of conditioned media on the re-differentiation capacity of human chondrocytes in 3D spheroid cultures, Journal of Clinical …

PubMed
235 El-Jawhari, J.; Ilas, D.; Jones, W.; Cuthbert, R.; ..., 2020, Enrichment and preserved functionality of multipotential stromal cells in bone marrow concentrate processed by vertical centrifugation, European Cells and …

PubMed
236 Higuita, M. L.; Griffiths, L. G., 2020, Antigen removal process preserves function of small diameter venous valved conduits, whereas SDS-decellularization results in significant valvular insufficiency, Acta biomaterialia

PubMed
237 Bhattacharjee, P.; Cavanagh, B. L.; Ahearne, M., 2020, Effect of substrate topography on the regulation of human corneal stromal cells, Colloids and Surfaces B …

PubMed
238 Zouhair, S.; Sasso, E. Dal; Tuladhar, S. R.; Fidalgo, C.; ..., 2020, A comprehensive comparison of bovine and porcine decellularized pericardia: new insights for surgical applications, Biomolecules

PubMed
239 Parmaksiz, M.; El巽in, A. E.; El巽in, Y. M., 2020, Decellularized cell culture ECMs act as cell differentiation inducers, Stem Cell Reviews and Reports

PubMed
240 Yu, J. J.; Lee, S. J.; Choi, S.; Kim, K. K.; Ryu, B.; Kim, C. Y.; ..., 2020, Fabrication of a polycaprolactone/alginate bipartite hybrid scaffold for osteochondral tissue using a three-dimensional bioprinting system, Polymers

PubMed
241 Oudot, M.; Shir, I. B.; Schmidt, A.; Plasseraud, L.; ..., 2020, A nature's curiosity: the argonaut “shell” and its organic content, Crystals

PubMed
242 Vieira, J. T. S., 2020, Decellularized matrices as platforms for studying cancer cells,

PubMed
243 Kim, M. J.; Lee, J. H.; Kim, J. S.; Kim, H. Y.; Lee, H. C.; ..., 2020, Intervertebral disc regeneration using stem cell/growth factor-loaded porous particles with a leaf-stacked structure, …

PubMed
244 Gruber, S. M. S., 2020, A platform technology for concurrent 3D printing of decellularized matrices and polycaprolactone for regeneration in homogenous and heterogeneous tissues,

PubMed
245 Pandit, A.; Krishna, V.; Ismail, S.; ..., 2020, Hyaluronan compositions, and uses thereof in treatment of interstitial cystitis, US Patent App. 16/339,512

PubMed
246 ANSARI, TI; SIBBONS, PD, 2020, Implant and method of producing an implant by decellularising an tissue by perfusion under negative pressure,

PubMed
247 Baba, O.; Elvington, A.; Szpakowska, M.; Sultan, D.; Heo, G. S.; ..., 2020, CXCR4-binding PET tracers link monocyte recruitment and endothelial injury in murine atherosclerosis, bioRxiv

PubMed
248 Zubillaga, V.; Alonso-Varona, A.; Fernandes, S. C. M.; ..., 2020, Adipose-derived mesenchymal stem cell chondrospheroids cultured in hypoxia and a 3D porous chitosan/chitin nanocrystal scaffold as a platform for cartilage …, International Journal of …

PubMed
249 McNeill, E. P.; Zeitouni, S.; Pan, S.; Haskell, A.; ..., 2020, Characterization of a pluripotent stem cell-derived matrix with powerful osteoregenerative capabilities, Nature …

PubMed
250 Yamashita, T.; Fujii, T.; Yamauchi, I.; Ueda, Y.; ..., 2020, C-type natriuretic peptide restores growth impairment under enzyme replacement in mice with mucopolysaccharidosis VII, …

PubMed
251 Yang, J.; Xiao, Y.; Tang, Z.; Luo, Z.; Li, D.; Wang, Q.; ..., 2020, The negatively charged microenvironment of collagen hydrogels regulates the chondrogenic differentiation of bone marrow mesenchymal stem cells in vitro and in …, Journal of Materials …

PubMed
252 Bordbar, S.; Bakhshaiesh, N. Lotfi; ..., 2020, Production and evaluation of decellularized extracellular matrix hydrogel for cartilage regeneration derived from knee cartilage, … Research Part A

PubMed
253 Liu, J.; Li, B.; Jing, H.; Wu, Y.; Kong, D.; ..., 2020, Swim bladder as a novel biomaterial for cardiovascular materials with anti‐calcification properties, Advanced Healthcare …

PubMed
254 Salonius, E.; Kontturi, L.; Laitinen, A.; ..., 2020, Chondrogenic differentiation of human bone marrow‐derived mesenchymal stromal cells in a three‐dimensional environment, Journal of Cellular …

PubMed
255 Khader, A.; Arinzeh, T. L., 2020, Biodegradable zinc oxide composite scaffolds promote osteochondral differentiation of mesenchymal stem cells, Biotechnology and Bioengineering

PubMed
256 Moser, P. T.; Gerli, M.; Diercks, G. R.; ..., 2020, Creation of laryngeal grafts from primary human cells and decellularized laryngeal scaffolds, … Engineering Part A

PubMed
257 Shen, H.; Lin, H.; Sun, A. X.; Song, S.; Wang, B.; Yang, Y.; Dai, J.; ..., 2020, Acceleration of chondrogenic differentiation of human mesenchymal stem cells by sustained growth factor release in 3D graphene oxide incorporated hydrogels, Acta Biomateriali

PubMed
258 Bhattacharjee, P.; Cavanagh, B. L.; Ahearne, M., 2020, Influence of micropatterned substrates on keratocyte phenotype, Scientific Reports

PubMed
259 Moncada-Palazuelos, L. T., 2020, Canine Osteochondritis Dissecans Surgical Fragments as a Cell Source for Scaffold-Free Cartilage Tissue Engineering,

PubMed
260 Kao, C. Y.; Nguyen, H. Q. D.; Weng, Y. C., 2020, Characterization of porcine urinary bladder matrix hydrogels from sodium dodecyl sulfate decellularization method, Polymers

PubMed
261 Parate, D.; Kadir, N. D.; Celik, C.; Lee, E. H.; Hui, J. H. P.; ..., 2020, Pulsed electromagnetic fields potentiate the paracrine function of mesenchymal stem cells for cartilage regeneration, Stem cell research & …

PubMed
262 Mony, M. P.; Anilkumar, T. V., 2020, Controlled cross‐linking of porcine cholecyst extracellular matrix for preparing tissue engineering scaffold, Journal of Biomedical Materials …

PubMed
263 Lee, J. M.; Ko, J. Y.; Park, J. W.; Lee, W. K.; ..., 2020, KLF10 is a modulatory factor of chondrocyte hypertrophy in developing skeleton, Journal of …

PubMed
264 Li, X. G.; Park, I. S.; Choi, B. H.; Kim, U. J.; Min, B. H., 2020, In Vivo Bioreactor Using Cellulose Membrane Benefit Engineering Cartilage by Improving the Chondrogenesis and Modulating the Immune Response, Tissue Engineering and …

PubMed
265 Zhou, X.; Zhang, F.; Wang, D.; Wang, J.; ..., 2020, Micro fragmented adipose tissue promotes the matrix synthesis function of nucleus pulposus cells and regenerates degenerated intervertebral disc in a pig model, Cell …

PubMed
266 McDermott, A. M.; Eastburn, E. A.; Kelly, D. J.; Boerckel, J. D., 2020, Effects of chondrogenic priming duration on mechanoregulation of engineered cartilage anlagen, bioRxiv

PubMed
267 Jana, S.; Lerman, A., 2020, Trilayered tissue construct mimicking the orientations of three layers of a native heart valve leaflet, Cell and tissue research

PubMed
268 Hatami-Marbini, H.; Pachenari, M., 2020, The contribution of sGAGs to stress-controlled tensile response of posterior porcine sclera, Plos one

PubMed
269 Ansari, T.; Southgate, A.; Obiri-Yeboa, I.; ..., 2020, Development and characterization of a porcine liver scaffold, Stem Cells and …

PubMed
270 Alshaikh, A. B.; Padma, A. M.; Dehlin, M.; Akouri, R.; ..., 2020, Decellularization and recellularization of the ovary for bioengineering applications; studies in the mouse, Reproductive Biology …

PubMed
271 Yu, S. H.; Kim, H. J.; Jeon, S. Y.; Kim, M. R.; Lee, B. S.; ..., 2020, Anti-inflammatory and anti-nociceptive activities of Alpinia oxyphylla Miquel extracts in animal models, Journal of …

PubMed
272 Yao, Y.; Wang, P.; Li, X.; Xu, Y.; Lu, G.; Jiang, Q.; Sun, Y.; Fan, Y.; ..., 2020, A di-self-crosslinking hyaluronan-based hydrogel combined with type I collagen to construct a biomimetic injectable cartilage-filling scaffold, Acta Biomaterialia

PubMed
273 Weissenberger, M.; Weissenberger, M. H.; ..., 2020, Different types of cartilage neotissue fabricated from collagen hydrogels and mesenchymal stromal cells via SOX9, TGFB1 or BMP2 gene transfer, PLoS …

PubMed
274 Lu, Y.; Wang, Y.; Zhang, H.; Tang, Z.; Cui, X.; ..., 2021, Solubilized cartilage ECM facilitates the recruitment and chondrogenesis of endogenous BMSCs in collagen scaffolds for enhancing microfracture treatment, … Applied Materials & …

PubMed
275 Lee, K.; Chen, Y.; Li, X.; Kawazoe, N.; Yang, Y.; ..., 2021, Influence of viscosity on chondrogenic differentiation of mesenchymal stem cells during 3D culture in viscous gelatin solution-embedded hydrogels, Journal of Materials …

PubMed
276 Dabaghi, M.; Saraei, N.; Carpio, M. B.; Nanduri, V.; ..., 2021, A robust protocol for decellularized human lung bioink generation amenable to 2D and 3D lung cell culture, Cells

PubMed
277 Xie, Y.; Lee, K.; Wang, X.; Yoshitomi, T.; ..., 2021, Interconnected collagen porous scaffolds prepared with sacrificial PLGA sponge templates for cartilage tissue engineering, Journal of Materials …

PubMed
278 Gryadunova, A.; Kasamkattil, J.; Gay, M. H. P.; Dasen, B.; ..., 2021, Nose to spine: Spheroids generated by human nasal chondrocytes for scaffold-free nucleus pulposus augmentation, Acta biomaterialia

PubMed
279 Russell, T.; Watad, A.; Bridgewood, C.; Rowe, H.; Khan, A.; ..., 2021, IL-17A and TNF modulate normal human spinal entheseal bone and soft tissue mesenchymal stem cell osteogenesis, adipogenesis, and stromal function, Cells

PubMed
280 Jin, R.; Cui, Y.; Chen, H.; Zhang, Z.; Weng, T.; Xia, S.; Yu, M.; ..., 2021, Three-dimensional bioprinting of a full-thickness functional skin model using acellular dermal matrix and gelatin methacrylamide bioink, Acta biomaterialia

PubMed
281 Marinkovic, M.; Sridharan, R.; Santarella, F.; ..., 2021, Optimization of extracellular matrix production from human induced pluripotent stem cell‐derived fibroblasts for scaffold fabrication for application in wound healing, … Research Part A

PubMed
282 Helgeland, E.; Rashad, A.; Campodoni, E.; ..., 2021, Dual-crosslinked 3D printed gelatin scaffolds with potential for temporomandibular joint cartilage regeneration, Biomedical …

PubMed
283 Kwon, H.; Brown, W. E.; O'Leary, S. A.; Hu, J. C.; ..., 2021, Rejuvenation of extensively passaged human chondrocytes to engineer functional articular cartilage, …

PubMed
284 Zabolian, A. H.; Rostami, M.; Eftekharzadeh, S.; ..., 2021, In Vivo Colon Regeneration: from Decellularization to In Vivo Implantation in a Rat Model Using the Body as a Natural Bioreactor, Regenerative …

PubMed
285 Fern叩ndez-P辿rez, J.; Madden, P. W.; Brady, R. T.; ..., 2021, The effect of prior long-term recellularization with keratocytes of decellularized porcine corneas implanted in a rabbit anterior lamellar keratoplasty model, Plos one

PubMed
286 Auriol, D.; Chajra, H.; Lefevre, F., 2021, Skin restoration product, US Patent 11,026,875

PubMed
287 Lee, H.; Kim, W. J.; Lee, J. U.; Park, K. S.; Yoo, J. J.; ..., 2021, Self-aligned myofibers in 3D bioprinted extracellular matrix-based construct accelerate skeletal muscle function restoration, Applied physics …

PubMed
288 Casal-Beiroa, P.; Balboa-Barreiro, V.; Oreiro, N.; ..., 2021, Optical biomarkers for the diagnosis of osteoarthritis through raman spectroscopy: radiological and biochemical validation using ex vivo human cartilage …, Diagnostics

PubMed
289 Varinelli, L.; Guaglio, M.; Brich, S.; Zanutto, S.; Belfiore, A.; ..., 2021, Decellularized Normal and Tumor Extracellular Matrix as Scaffold for Cancer Organoid Cultures of Colorectal Peritoneal Metastases, bioRxiv

PubMed
290 Kim, S. H.; Hong, H.; Ajiteru, O.; Sultan, M. T.; Lee, Y. J.; ..., 2021, 3D bioprinted silk fibroin hydrogels for tissue engineering, Nature …

PubMed
291 Burdis, R.; Chariyev-Prinz, F.; Kelly, D. J., 2021, Bioprinting of biomimetic self-organised cartilage with a supporting joint fixation device, Biofabrication

PubMed
292 Al‐Qurayshi, Z.; Wafa, E. I.; Hoffman, H.; ..., 2021, Tissue‐engineering the larynx: Effect of decellularization on human laryngeal framework and the cricoarytenoid joint, … Research Part B …

PubMed
293 Liu, J.; Lu, Y.; Xing, F.; Liang, J.; Wang, Q.; Fan, Y.; ..., 2021, Cell-free scaffolds functionalized with bionic cartilage acellular matrix microspheres to enhance the microfracture treatment of articular cartilage defects, Journal of Materials …

PubMed
294 Fell, C. W.; Hagelkruys, A.; Cicvaric, A.; Horrer, M.; Liu, L.; ..., 2021, FIBCD1 is a conserved receptor for chondroitin sulphate proteoglycans of the brain extracellular matrix and a candidate gene for a complex neurodevelopmental …, bioRxiv

PubMed
295 Kang, Y. M.; Shin, E. J.; Lee, B. H.; Yang, J. H.; Lee, H. M.; ..., 2021, Hypoxia regulates the extracellular matrix via mitogen-activated protein kinases pathway in cells retrieved from the human intervertebral disc, Yonsei medical …

PubMed
296 Tsuyuguchi, Y.; Nakasa, T.; Ishikawa, M.; Miyaki, S.; ..., 2021, The benefit of minced cartilage over isolated chondrocytes in atelocollagen gel on chondrocyte proliferation and migration, Cartilage

PubMed
297 Ebrahim, N.; Badr, O. A. M.; Yousef, M. M.; Hassouna, A.; ..., 2021, Functional recellularization of acellular rat liver scaffold by induced pluripotent stem cells: Molecular evidence for wnt/b-catenin upregulation, Cells

PubMed
298 Uzieliene, I.; Bagdonas, E.; Hoshi, K.; Sakamoto, T.; ..., 2021, Different phenotypes and chondrogenic responses of human menstrual blood and bone marrow mesenchymal stem cells to activin A and TGF-β3, Stem Cell Research & …

PubMed
299 Risi, M. De; Tufano, M.; Alvino, F. G.; Ferraro, M. G.; ..., 2021, Altered heparan sulfate metabolism during development triggers dopamine-dependent autistic-behaviours in models of lysosomal storage disorders, Nature …

PubMed
300 Kim, S. J.; Jung, S. Y.; Lee, M. J.; Bae, J. H.; ..., 2021, Porcine tracheal mucosa-derived decellularized patch to prevent septal perforation in a rabbit model, American journal of …

PubMed
301 Tang, Z.; Lu, Y.; Zhang, S.; Wang, J.; Wang, Q.; ..., 2021, Chondrocyte secretome enriched microparticles encapsulated with the chondrocyte membrane to facilitate the chondrogenesis of BMSCs and reduce hypertrophy, Journal of Materials …

PubMed
302 Ercan, H.; El巽in, A. E.; El巽in, Y. M., 2021, Preliminary assessment of an injectable extracellular matrix from decellularized bovine myocardial tissue, Zeitschrift f端r Naturforschung C

PubMed
303 Li, H.; Li, J.; Yu, S.; Wu, C.; Zhang, W., 2021, The mechanical properties of tibiofemoral and patellofemoral articular cartilage in compression depend on anatomical regions, Scientific Reports

PubMed
304 Mahon, O. R.; Browe, D. C.; Diaz-Payno, P. J.; ..., 2021, Extracellular matrix scaffolds derived from different musculoskeletal tissues drive distinct macrophage phenotypes and direct tissue-specific cellular …, Journal of Immunology …

PubMed
305 Shin, Y. H.; Yun, H. W.; Park, S. Y.; Choi, S. J.; ..., 2021, Effect of glutaraldehyde‐crosslinked cartilage acellular matrix film on anti‐adhesion and nerve regeneration in a rat sciatic nerve injury model, Journal of tissue …

PubMed
306 Houreh, A. B.; Masaeli, E.; Nasr-Esfahani, M. H., 2021, Chitosan/polycaprolactone multilayer hydrogel: A sustained Kartogenin delivery model for cartilage regeneration, International Journal of …

PubMed
307 Qin, X.; He, R.; Chen, H.; Fu, D.; Peng, Y.; ..., 2021, Methacrylated pullulan/polyethylene (glycol) diacrylate composite hydrogel for cartilage tissue engineering, Journal of …

PubMed
308 Yaldiz, B.; Saglam-Metiner, P.; Cam, S. B.; ..., 2021, Effect of sterilization methods on the mechanical stability and extracellular matrix constituents of decellularized brain tissues, The Journal of …

PubMed
309 Al-Qurayshi, Z.; Wafa, E. I.; Meyer, MK Rossi; ..., 2021, Tissue engineering the pinna: comparison and characterization of human decellularized auricular biological scaffolds, ACS applied bio …

PubMed
310 Lテウpez-Martテュnez, S.; Campo, H.; ..., 2021, A Natural Xenogeneic Endometrial Extracellular Matrix Hydrogel Toward Improving Current Human in vitro Models and Future in vivo Applications, 窶ヲ in Bioengineering and 窶ヲ

PubMed
311 Wang, D.; Zhu, Y.; Huang, Y.; Zhu, J.; Zhu, B.; ..., 2021, Pancreatic extracellular matrix/alginate hydrogels provide a supportive microenvironment for insulin-producing cells, ACS Biomaterials …

PubMed
312 Bose, S. K.; White, B. M.; Kashyap, M. V.; Dave, A.; ..., 2021, In utero adenine base editing corrects multi-organ pathology in a lethal lysosomal storage disease, Nature …

PubMed
313 Maumus, M.; Fonteneau, G.; Ruiz, M.; Assou, S.; ..., 2021, Neuromedin B promotes chondrocyte differentiation of mesenchymal stromal cells via calcineurin and calcium signaling, Cell &Bioscience

PubMed
314 Chen, Z.; Zhang, B.; Shu, J.; Wang, H.; Han, Y.; ..., 2021, Human decellularized adipose matrix derived hydrogel assists mesenchymal stem cells delivery and accelerates chronic wound healing, … Research Part A

PubMed
315 Zhai, W.; Tan, J.; Russell, T.; Chen, S.; McGonagle, D.; ..., 2021, Multi-pronged approach to human mesenchymal stromal cells senescence quantification with a focus on label-free methods, Scientific reports

PubMed
316 Dehghan‐Baniani, D.; Mehrjou, B.; ..., 2021, A biomimetic nano‐engineered platform for functional tissue engineering of cartilage superficial zone, Advanced Healthcare …

PubMed
317 Fang, R.; Jiang, Q.; Guan, Y.; Gao, P.; Zhang, R.; Zhao, Z.; ..., 2021, Golgi apparatus-synthesized sulfated glycosaminoglycans mediate polymerization and activation of the cGAMP sensor STING, Immunity

PubMed
318 Jeannerat, A.; Peneveyre, C.; Armand, F.; Chiappe, D.; ..., 2021, Hypoxic incubation conditions for optimized manufacture of tenocyte-based active pharmaceutical ingredients of homologous standardized transplant …, Cells

PubMed
319 Parmaksiz, M., 2021, Development of a Nanofibrous Scaffold Based on Bovine Tissue-derived ECM and Poly (竜-caprolactone) for Tissue Engineering Applications, Hittite Journal of Science and Engineering

PubMed
320 Padalhin, A.; Ventura, R.; Kim, B.; Sultana, T.; ..., 2021, Boosting osteogenic potential and bone regeneration by co-cultured cell derived extracellular matrix incorporated porous electrospun scaffold, Journal of …

PubMed
321 Weng, J.; Chen, B.; Xie, M.; Wan, X.; Wang, P.; Zhou, X.; ..., 2021, Rabbit thyroid extracellular matrix as a 3D bioscaffold for thyroid bioengineering: a preliminary in vitro study, BioMedical Engineering …

PubMed
322 Wu, Z.; Korntner, S. H.; Mullen, A. M.; Skoufos, I.; ..., 2021, In the quest of the optimal tissue source (porcine male and female articular, tracheal and auricular cartilage) for the development of collagen sponges for …, Biomedical Engineering …

PubMed
323 Autissier, R.; Mazuel, L.; Maubert, E.; ..., 2021, Simultaneous proteoglycans and hypoxia mapping of chondrosarcoma environment by frequency selective CEST MRI, Magnetic …

PubMed
324 Russell, T.; Rowe, H.; Bridgewood, C.; Cuthbert, R. J.; ..., 2021, Tofacitinib Blocks Entheseal Lymphocyte Activation and Modulates MSC Adipogenesis, But Does Not Directly Affect Chondro-and Osteogenesis, Immuno

PubMed
325 Dong, L.; Liu, Q.; Gao, Y.; Jia, H.; Dai, W.; Guo, L.; ..., 2021, The effect of collagen hydrogels on chondrocyte behaviors through restricting the contraction of cell/hydrogel constructs, Regenerative …

PubMed
326 Song, Y. H.; Maynes, M. A.; Hlavac, N.; Visosevic, D.; ..., 2021, Development of novel apoptosis-assisted lung tissue decellularization methods, Biomaterials …

PubMed
327 Fu, C. Y.; Chuang, W. T.; Hsu, S., 2021, A biodegradable chitosan-polyurethane cryogel with switchable shape memory, ACS Applied Materials &Interfaces

PubMed
328 Li, Y.; Chen, M.; Yan, J.; Zhou, W.; Gao, S.; Liu, S.; Li, Q.; ..., 2021, Tannic acid/Sr2+-coated silk/graphene oxide-based meniscus scaffold with anti-inflammatory and anti-ROS functions for cartilage protection and delaying …, Acta biomaterialia

PubMed
329 Abusharkh, H. A.; Reynolds, O. M.; Mendenhall, J.; ..., 2021, Combining stretching and gallic acid to decrease inflammation indices and promote extracellular matrix production in osteoarthritic human articular chondrocytes, Experimental cell …

PubMed
330 Gテウmez-Cid, L.; Lテウpez-Donaire, M. L.; Velasco, D.; ..., 2021, Cardiac extracellular matrix hydrogel enriched with polyethylene glycol presents improved gelation time and increased on-target site retention of extracellular 窶ヲ, International Journal of 窶ヲ

PubMed
331 Nieto-Nicolau, N.; Lテウpez-Chicテウn, P.; Fariテアas, O.; ..., 2021, Effective decellularization of human nerve matrix for regenerative medicine with a novel protocol, Cell and Tissue 窶ヲ

PubMed
332 Lin, C. H.; Hsia, K.; Su, C. K.; Chen, C. C.; Yeh, C. C.; Ma, H.; Lu, J. H., 2021, Sonication-assisted method for decellularization of human umbilical artery for small-caliber vascular tissue engineering, Polymers

PubMed
333 Li, B.; Jing, H.; Sun, Z.; Wang, X.; Kong, D.; Liu, J.; ..., 2021, Comprehensive analyses and prioritization of various swim bladder-derived extracellular matrix in the application of heart valve prosthesis, Smart Materials in …

PubMed
334 Neidlinger-Wilke, C.; Ekkerlein, A.; ..., 2021, Mesenchymal stem cell secretome decreases the inflammatory response in annulus fibrosus organ cultures, eCells and Materials …

PubMed
335 Almeida, H. V.; Tenreiro, M. F.; Louro, A. F.; ..., 2021, Human extracellular-matrix functionalization of 3D hiPSC-based cardiac tissues improves cardiomyocyte maturation, ACS applied bio …

PubMed
336 Jana, S.; Franchi, F.; Lerman, A., 2021, Fibrous heart valve leaflet substrate with native-mimicked morphology, Applied materials today

PubMed
337 Abusharkh, H. A.; Mallah, A. H.; Amr, M. M.; ..., 2021, Enhanced matrix production by cocultivated human stem cells and chondrocytes under concurrent mechanical strain, In Vitro Cellular & …

PubMed
338 Chae, S.; Sun, Y.; Choi, Y. J.; Ha, D. H.; Jeon, I.; Cho, D. W., 2021, 3D cell-printing of tendon-bone interface using tissue-derived extracellular matrix bioinks for chronic rotator cuff repair, Biofabrication

PubMed
339 Chae, S.; Lee, S. S.; Choi, Y. J.; Gao, G.; Wang, J. H.; Cho, D. W., 2021, 3D cell-printing of biocompatible and functional meniscus constructs using meniscus‐derived bioink, Biomaterials

PubMed
340 Lee, J.; Jang, S.; Kwon, J. P.; Oh, T. I.; Lee, E. A., 2021, Comparative evaluation of synovial multipotent stem cells and meniscal chondrocytes for capability of fibrocartilage reconstruction, Cartilage

PubMed
341 Gaffke, L.; Pierzynowska, K.; Rintz, E.; Cyske, Z.; ..., 2021, Gene expression-related changes in morphologies of organelles and cellular component organization in mucopolysaccharidoses, International Journal of …

PubMed
342 Nedunchezian, S.; Banerjee, P.; Lee, C. Y.; Lee, S. S.; ..., 2021, Generating adipose stem cell-laden hyaluronic acid-based scaffolds using 3D bioprinting via the double crosslinked strategy for chondrogenesis, Materials Science and …

PubMed
343 Hampton, J. D.; Peterson, E. J.; Katner, S. J.; Turner, T. H.; ..., 2021, Exploitation of sulfated glycosaminoglycan status for precision medicine of platinums in triple-negative breast cancer, bioRxiv

PubMed
344 Francテゥs-Herrero, E.; Miguel-Gテウmez, L. De; ..., 2021, Development of decellularized oviductal hydrogels as a support for rabbit embryo culture, Reproductive 窶ヲ

PubMed
345 Xie, M.; Fritch, M.; He, Y.; Fu, H.; Hong, Y.; Lin, H., 2021, Dynamic loading enhances chondrogenesis of human chondrocytes within a biodegradable resilient hydrogel, Biomaterials Science

PubMed
346 Orfei, C. Perucca; Bowles, A. C.; Kouroupis, D.; ..., 2021, Human Tendon Stem/Progenitor Cell Features and Functionality Are Highly Influenced by in vitro Culture Conditions, … in bioengineering and …

PubMed
347 Hwang, H. S.; Lee, M. H.; Go, D. J.; Kim, H. A., 2021, Norepinephrine modulates IL-1硫-induced catabolic response of human chondrocytes, BMC Musculoskeletal Disorders

PubMed
348 Monteiro, M. V.; Gaspar, V. M.; Mendes, L.; Duarte, I. F.; ..., 2021, Stratified 3D microtumors as organotypic testing platforms for screening pancreatic cancer therapies, Small …

PubMed
349 Li, Y.; Wu, Q.; Li, L.; Chen, F.; Bao, J.; ..., 2021, Decellularization of porcine whole lung to obtain a clinical‐scale bioengineered scaffold, Journal of Biomedical …

PubMed
350 Galicka, A.; Sutkowska-Skolimowska, J., 2021, The beneficial effect of rosmarinic acid on benzophenone-3-induced alterations in human skin fibroblasts, International Journal of Molecular …

PubMed
351 Levingstone, T. J.; Moran, C.; Almeida, H. V.; Kelly, D. J.; ..., 2021, Layer-specific stem cell differentiation in tri-layered tissue engineering biomaterials: Towards development of a single-stage cell-based approach for …, Materials Today Bio

PubMed
352 Espinosa, M. G.; Otarola, G. A.; Hu, J. C.; ..., 2021, Vibrometry as a noncontact alternative to dynamic and viscoelastic mechanical testing in cartilage, Journal of the Royal …

PubMed
353 Yang, J.; Tang, Z.; Liu, Y.; Luo, Z.; Xiao, Y.; Zhang, X., 2021, Comparison of chondro-inductivity between collagen and hyaluronic acid hydrogel based on chemical/physical microenvironment, International journal of …

PubMed
354 Kobayashi, M.; Chijimatsu, R.; Hart, D. A.; ..., 2021, Evidence that TD‐198946 enhances the chondrogenic potential of human synovium‐derived stem cells through the NOTCH3 signaling pathway, Journal of Tissue …

PubMed
355 Sun, F.; Lu, Y.; Wang, Z.; Zhang, B.; Shen, Z.; Yuan, L.; ..., 2021, Directly construct microvascularization of tissue engineering trachea in orthotopic transplantation, Materials Science and …

PubMed
356 Wang, H.; Xu, Y.; Wang, P.; Ma, J.; Wang, P.; Han, X.; Fan, Y.; ..., 2021, Cell-mediated injectable blend hydrogel-BCP ceramic scaffold for in situ condylar osteochondral repair, Acta Biomaterialia

PubMed
357 Yang, Y.; Zhu, Z.; Gao, R.; Yuan, J.; Zhang, J.; Li, H.; Xie, Z.; ..., 2021, Controlled release of MSC-derived small extracellular vesicles by an injectable Diels-Alder crosslinked hyaluronic acid/PEG hydrogel for osteoarthritis improvement, Acta Biomater

PubMed
358 Seifer, P.; Hay, E.; Fleischhauer, L.; Heilig, J.; Bloch, W.; ..., 2021, The Matrilin-3 T298M mutation predisposes for post-traumatic osteoarthritis in a knock-in mouse model, Osteoarthritis and …

PubMed
359 Cao, H.; Wang, X.; Chen, M.; Liu, Y.; Cui, X.; ..., 2021, Childhood cartilage ECM enhances the chondrogenesis of endogenous cells and subchondral bone repair of the unidirectional collagen窶電ECM scaffolds in 窶ヲ, 窶ヲ Applied Materials & 窶ヲ

PubMed
360 Russell, T.; Watad, A.; Bridgewood, C.; Rowe, H.; Khan, A.; ..., 2021, IL-17A and TNF modulate normal human spinal entheseal bone and soft tissue mesenchymal stem cell osteogenesis, adipogenesis, and stromal function. Cells …,

PubMed
361 Pierzynowska, K.; Podlacha, M.; ナ「szczek, D.; Rintz, E.; ..., 2021, Hair dysmorphology in the r6/1 and r6/2 mouse models of huntington's disease, Gene

PubMed
362 Ferreira, L. P.; Gaspar, V. M.; Mendes, L.; Duarte, I. F.; Mano, J. F., 2021, Organotypic 3D decellularized matrix tumor spheroids for high-throughput drug screening, Biomaterials

PubMed
363 Espinosa, M. G.; Otarola, G. A.; Hu, J. C.; ..., 2021, Cartilage assessment requires a surface characterization protocol: roughness, friction, and function, … Engineering Part C …

PubMed
364 Joung, S.; Yoon, D. S.; Cho, S.; Ko, E. A.; Lee, K. M.; ..., 2021, Downregulation of MicroRNA-495 alleviates IL-1β responses among chondrocytes by preventing SOX9 reduction, Yonsei medical …

PubMed
365 Choi, M.; Sultana, T.; Park, M.; Lee, B. T., 2021, Fibroblast cell derived extracellular matrix containing electrospun scaffold as a hybrid biomaterial to promote in vitro endothelial cell expansion and functionalization, Materials Science and Engineering

PubMed
366 Willemse, J.; Roos, F. J. M.; Voogt, I. J.; ..., 2021, Scaffolds obtained from decellularized human extrahepatic bile ducts support organoids to establish functional biliary tissue in a dish, Biotechnology and …

PubMed
367 Uto, S.; Hikita, A.; Sakamoto, T.; Mori, D.; Yano, F.; ..., 2021, Ear cartilage reconstruction combining induced pluripotent stem cell-derived cartilage and three-dimensional shape-memory scaffold, … Engineering Part A

PubMed
368 Jeong, W.; Kim, M. K.; Kang, H. W., 2021, Effect of detergent type on the performance of liver decellularized extracellular matrix-based bio-inks, Journal of tissue engineering

PubMed
369 Visscher, D. O.; Lee, H.; Zuijlen, PPM van; Helder, M. N.; ..., 2021, A photo-crosslinkable cartilage-derived extracellular matrix bioink for auricular cartilage tissue engineering, Acta biomaterialia

PubMed
370 Aydトアn, N.; Karaismailoト殕u, B.; ..., 2021, Gene expression profiling of primary fibrochondrocyte cultures in traumatic and degenerative meniscus lesions, Journal of 窶ヲ

PubMed
371 Sobreiro-Almeida, R.; Gテウmez-Florit, M.; Quinteira, R.; ..., 2021, Decellularized kidney extracellular matrix bioinks recapitulate renal 3D microenvironment in vitro, 窶ヲ

PubMed
372 Sun, B.; Han, Y.; Jiang, W.; Dai, K., 2021, 3D Printing Bioink Preparation and Application in Cartilage Tissue Reconstruction in Vitro, Journal of Shanghai Jiaotong University …

PubMed
373 Tenreiro, M. F.; Almeida, H. V.; Calmeiro, T.; Fortunato, E.; ..., 2021, Interindividual heterogeneity affects the outcome of human cardiac tissue decellularization, Scientific reports

PubMed
374 Li, W.; Bai, Y.; Cao, J.; Gao, S.; Xu, P.; Feng, G.; Wang, L.; ..., 2021, Highly interconnected inverse opal extracellular matrix scaffolds enhance stem cell therapy in limb ischemia, Acta Biomaterialia

PubMed
375 Sulaiman, N. S.; Bond, A. R.; Bruno, V. D.; ..., 2021, Effective decellularisation of human saphenous veins for biocompatible arterial tissue engineering applications: Bench optimisation and feasibility in vivo testing, Journal of Tissue …

PubMed
376 Mesquita, F. C. P.; Morrissey, J.; Lee, P. F.; Monnerat, G.; ..., 2021, Cues from human atrial extracellular matrix enrich the atrial differentiation of human induced pluripotent stem cell-derived cardiomyocytes, Biomaterials …

PubMed
377 Li, X.; Bian, S.; Zhao, M.; Han, X.; Liang, J.; Wang, K.; Jiang, Q.; ..., 2021, Stimuli-responsive biphenyl-tripeptide supramolecular hydrogels as biomimetic extracellular matrix scaffolds for cartilage tissue engineering, Acta Biomaterialia

PubMed
378 P辿rez, M. L.; Castells-Sala, C.; L坦pez-Chic坦n, P.; ..., 2021, Fast protocol for the processing of split-thickness skin into decellularized human dermal matrix, Tissue and Cell

PubMed
379 Elder, S. H.; Mosher, M. L.; Jarquin, P.; ..., 2021, Effects of short‐duration treatment of cartilage with punicalagin and genipin and the implications for treatment of osteoarthritis, … Research Part B …

PubMed
380 Kr端ger, S., 2021, Untersuchungen zur biologischen Antwort humaner Chondrozyten auf kapazitiv gekoppelte elektrische Wechselfelder,

PubMed
381 Staa, M. van, 2021, Ein neuer Kreuzbandersatz-Tissue Engineering,

PubMed
382 Paya, JC Marin, 2021, 3D Culture o Multiple Myeloma Cell Line Using Microgel Environments,

PubMed
383 Agost, M. Garc鱈a, 2021, Obtenci坦n de soportes biomim辿ticos para la expansi坦n de c辿lulas madre mesenquimales,

PubMed
384 Briega, MI Garc鱈a, 2021, Desarrollo de microgeles basados en microc叩psulas huecas para generar modelos de enfermedad de mieloma m炭ltiple,

PubMed
385 Gouardères, S., 2021, Réponses cellulaires et tissulaires de la peau humaine à l'application d'un champ électrique externe de type électroporation,

PubMed
386 Salom, J. Pl叩, 2021, Obtenci坦n de microesferas de dextrano funcionalizadas como medio de cultivo tridimensional en un modelo de Mieloma M炭ltiple,

PubMed
387 Brownell, L. A.; Chu, M.; Hong, M. F.; Eu-Jin, H.; Jia, Q.; ..., 2021, Compositions and methods for joint health, US Patent …

PubMed
388 Amann, E. V. M., 2021, Natural-origin biopolymers and stem cells in chondral and osteochondral repair,

PubMed
389 Russell, T. J. W., 2021, The effects of innate lymphocyte derived cytokines on spinal bone and entheses derived mesenchymal stem cells,

PubMed
390 Katrekar, D., 2021, Engineering a programmable RNA editing toolset for correction of point mutations in vivo,

PubMed
391 Ayoub, S.; Howsmon, D. P.; Lee, C. H.; Sacks, M. S., 2021, On the role of predicted in vivo mitral valve interstitial cell deformation on its biosynthetic behavior, Biomechanics and modeling …

PubMed
392 Varinelli, L., 2021, Decellularised Normal and Tumour Scaffolds for Cancer Organoid Cultures as a Model of Colorectal Peritoneal Metastases,

PubMed
393 Hahn, O., 2021, Proliferation and differentiation potential of human primary mesenchymal (stem/stromal) cells,

PubMed
394 TUBERT, MFB; MENDOÇA, MVH; ..., 2021, Adenoassociated virus vectors for the treatment of lysosomal storage disorders, US Patent …

PubMed
395 Ramer, M.; Badylak, S. F.; Keane, T., 2021, Method and composition for treating inflammatory bowel disease, US Patent App. 16/922,765

PubMed
396 Mallah, A., 2021, Mechanistic Investigation of Articular Cartilage Development Representative of Diseased, Healthy, and Induced Inflammation States,

PubMed
397 Santos, A.; Pedrosa, S.; Branquinho, M.; ..., 2021, Compositions for use in the treatment of musculoskeletal conditions and methods for producing the same leveraging the synergistic activity of two different types of …, US Patent App. 16 …

PubMed
398 Hariri, R. J.; Bhatia, M., 2021, Extracellular matrix composition beads for cell culture, US Patent App. 17/025,124

PubMed
399 Alshaikh, A. B., 2021, Principles of scaffold generation for bioengineering of the ovary and uterus: a study focusing on decellularization,

PubMed
400 Yen, J. J., 2021, RNA Editing via Recruitment of Endogenous ADARs using Circular Antisense Guide RNAs,

PubMed
401 Lee, K., 2021, Influence of Solution Viscosity on Cell Functions in 3D Culture System Using Gelatin Biphasic Hydrogels,

PubMed
402 Kyriakides, T.; Morris, A., 2021, Compositions and methods useful in regenerative medicine, US Patent App. 16/757,811

PubMed
403 Jia, W., 2021, Cell-derived Extracellular Matrix in Lymphangiogenesis and Cardiac Patch Engineering,

PubMed
404 Hausmanns, S.; Oesser, S.; Dolle, F.; ..., 2021, Collagen hydrolysate for use with skin disorders and intestinal disorders, US Patent App. 17 …

PubMed
405 Wu, Z.; Korntner, S. H.; Mullen, A. M.; Zeugolis, D. I., 2021, In the quest of the optimal chondrichthyan for the development of collagen sponges for articular cartilage, Journal of Science: Advanced …

PubMed
406 Peck, S. H.; Lau, Y. K.; Kang, J. L.; Lin, M.; Arginteanu, T.; ..., 2021, Progression of vertebral bone disease in mucopolysaccharidosis VII dogs from birth to skeletal maturity, Molecular genetics and …

PubMed
407 Ikeya, M.; Nakajima, T., 2021, Stepwise method of producing various types of cells from pluripotent stem cells, US Patent App. 16/979,956

PubMed
408 Gansau, J.; Buckley, C. T., 2021, Priming as a strategy to overcome detrimental PH effects on cells for intervertebral disc regeneration, Eur Cells Mater

PubMed
409 Toguchida, J.; Ikeya, M.; Ohta, A.; Hino, K., 2021, Therapeutic agent for fibrodysplasia ossificans progressiva, US Patent 11,207,303

PubMed
410 Katrekar, D.; Yen, J.; Xiang, Y.; Saha, A.; Meluzzi, D.; ..., 2021, Robust RNA editing via recruitment of endogenous ADARs using circular guide RNAs, bioRxiv

PubMed
411 Carroll, S. F.; Buckley, C. T.; Kelly, D. J., 2021, Measuring and modeling oxygen transport and consumption in 3D hydrogels containing chondrocytes and stem cells of different tissue origins, Frontiers in Bioengineering and …

PubMed
412 Kamaraj, A.; Kyriacou, H.; Seah, K. T. M.; Khan, W. S., 2021, Use of human induced pluripotent stem cells for cartilage regeneration in vitro and within chondral defect models of knee joint cartilage in vivo: a Preferred Reporting …, Cytotherapy

PubMed
413 Brown, W. E.; Huang, B. J.; Hu, J. C., 2021, Engineering large, anatomically shaped osteochondral constructs with robust interfacial, NPJ Regenerative medicine, 6 (1 …

PubMed
414 Baei, P.; Daemi, H.; Mostafaei, F.; Sayahpour, F. A.; ..., 2021, A tough polysaccharide-based cell-laden double-network hydrogel promotes articular cartilage tissue regeneration in rabbits, Chemical Engineering …

PubMed
415 Kadir, N. D.; Yang, Z.; Hassan, A.; Denslin, V.; ..., 2021, Electrospun fibers enhanced the paracrine signaling of mesenchymal stem cells for cartilage regeneration, Stem Cell Research & …

PubMed
416 McDermott, A. M.; Eastburn, E. A.; Kelly, D. J.; ..., 2021, Effects of chondrogenic priming duration on mechanoregulation of engineered cartilage, Journal of …

PubMed
417 Tamaddon, M.; Blunn, G.; Xu, W.; ..., 2021, Sheep condyle model evaluation of bone marrow cell concentrate combined with a scaffold for repair of large osteochondral defects, Bone &Joint …

PubMed
418 Trinh, K. T. L.; Le, N. X. T.; Lee, N. Y., 2021, Microfluidic-based fabrication of alginate microparticles for protein delivery and its application in the in vitro chondrogenesis of mesenchymal stem cells, Journal of Drug Delivery Science and …

PubMed
419 Chin, A. R.; Taboas, J. M.; Almarza, A. J., 2021, Regenerative Potential of Mandibular Condyle Cartilage and Bone Cells Compared to Costal Cartilage Cells When Seeded in Novel Gelatin Based Hydrogels, Annals of biomedical engineering

PubMed
420 Kao, C. Y.; Nguyen, H. Q. D.; Weng, Y. C.; Hung, Y. H.; Lo, C. M., 2021, Evaluating the Effect of Tissue Selection on the Characteristics of Extracellular Matrix Hydrogels from Decellularized Porcine Bladders, Applied Sciences

PubMed
421 Piening, L., 2021, Development and Characterization of a Decellularized Neuroinhibitory Scaffold Containing Matrix Bound Nanovesicles,

PubMed
422 Parmaksiz, M.; Lalegül-Ülker, Ö; Vurat, M. T.; ..., 2021, Magneto-sensitive decellularized bone matrix with or without low frequency-pulsed electromagnetic field exposure for the healing of a critical-size bone defect, Materials Science and …

PubMed
423 Chiera, S., 2021, A model scaffold for Anterior Cruciate Ligament tissue engineering,

PubMed
424 Ribeiro, S.; Pugliese, E.; Korntner, S. H.; ..., 2021, Modulation of stem cell response using biodegradable polyester films with different stiffness, Biomedical Engineering …

PubMed
425 Chen, D., 2021, Versican/Collagen Interactions in Tissue Structure and Mechanics,

PubMed
426 Zhu, M.; Qin, B.; Yi, Y.; Yang, J.; Gu, L., 2021, TGFβ1 Improves the Proliferation of Decellularized and Aligned Skeletal Muscle in Extracellular Matrix Hydrogels by m6A Modification-Mediated Integrin Through …,

PubMed
427 Brown, W. E.; Huang, B. J.; Hu, J. C.; ..., 2021, Engineering large, anatomically shaped osteochondral constructs with robust interfacial shear properties, NPJ Regenerative …

PubMed
428 Yeo, M.; Kim, G. H., 2021, Electrohydrodynamic-direct-printed cell-laden microfibrous structure using alginate-based bioink for effective myotube formation, Carbohydrate Polymers

PubMed
429 Lee, J. H.; Kwon, Y. S.; Jung, D. Y.; Kim, N. Y.; Lim, H.; ..., 2021, Viscum album and Its Constituents Downregulate Mmp-13 Expression in Chondrocytes and Protect Cartilage Degradation, Natural Product …

PubMed
430 Oyadomari, S.; Brown, W. E.; Kwon, H.; ..., 2021, In vitro effects of bupivacaine on the viability and mechanics of native and engineered cartilage grafts, … American journal of …

PubMed
431 Mallah, A. H.; Amr, M.; Abusharkh, H. A.; Wie, B. Van; ..., 2021, Sex-specific reduction in inflammation of osteoarthritic human chondrocytes and nutraceutical-dependent extracellular matrix formation, Journal of immunology …

PubMed
432 Mousavi, M. S.; Amoabediny, G.; Mahfouzi, S. H.; ..., 2021, Enhanced articular cartilage decellularization using a novel perfusion-based bioreactor method, Journal of the Mechanical …

PubMed
433 Ji, W.; Wen, J.; Lin, W.; He, P.; Hou, B.; ..., 2022, Comparing the characteristics of amniotic membrane-, endometrium-, and urinary-derived ECMs and their effects on endometrial regeneration in a rat uterine …, Frontiers in Bioengineering …

PubMed
434 Wu, G. X.; Chen, C. Y.; Wu, C. S.; Hwang, L. C.; Yang, S. W.; ..., 2022, Restoration of the phenotype of dedifferentiated rabbit chondrocytes by sesquiterpene farnesol, Pharmaceutics

PubMed
435 Gonzalez-Leon, E. A.; Hu, J. C.; ..., 2022, Yucatan minipig knee meniscus regional biomechanics and biochemical structure support its suitability as a large animal model for translational research, … in Bioengineering and …

PubMed
436 Zhang, X.; Chai, Z.; Dobbins, A. L.; Itano, M. S.; Askew, C.; ..., 2022, Customized blood-brain barrier shuttle peptide to increase AAV9 vector crossing the BBB and augment transduction in the brain, Biomaterials

PubMed
437 Fiordalisi, M. F.; Ferreira, J. R.; Pinto, M. L.; ..., 2022, The impact of matrix age on intervertebral disc regeneration, Biomaterials …

PubMed
438 Sarviya, N.; Basu, S. M.; Mani, R.; Chauhan, M.; ..., 2022, Biomimicking nanofibrous gelatin microspheres recreating the stem cell niche for their ex-vivo expansion and in-vivo like differentiation for injectable stem cell …, Biomaterials …

PubMed
439 Faggioli, M.; Moro, A.; Butt, S.; Todesco, M.; Sandrin, D.; ..., 2022, A new decellularization protocol of porcine aortic valves using tergitol to characterize the scaffold with the biocompatibility profile using human bone marrow …, Polymers

PubMed
440 Zhu, X.; Li, Y.; Yang, Y.; He, Y.; Gao, M.; Peng, W.; Wu, Q.; ..., 2022, Ordered micropattern arrays fabricated by lung-derived dECM hydrogels for chemotherapeutic drug screening, Materials Today Bio

PubMed
441 Kim, H.; Choi, K. H.; Sung, S. C.; Kim, Y. S., 2022, Effect of ethanol washing on porcine pulmonary artery wall decellularization using sodium dodecyl sulfate, Artificial Organs

PubMed
442 Pachenari, M., 2022, The Role of Glycosaminoglycans in the Mechanical Properties of the Sclera,

PubMed
443 Bains, A. K., 2022, Amanpreet Kaur Bains1, Lena Behrens Wu2, Jennifer Riviティre3, Sandra Rother4, Valentina Magno5, Jens Friedrichs5, Carsten Werner5, Martin 窶ヲ,

PubMed
444 Min, K.; Kong, J. S.; Kim, J.; Kim, J.; Gao, G.; ..., 2022, Three-dimensional microfilament printing of a decellularized extracellular matrix (dECM) bioink using a microgel printing bath for nerve graft fabrication and the …, ACS Applied Bio …

PubMed
445 Rashidi, N.; Tamaddon, M.; Liu, C.; ..., 2022, A Bilayer Osteochondral Scaffold with Self‐Assembled Monomeric Collagen Type‐I, Type‐II, and Polymerized Chondroitin Sulfate Promotes Chondrogenic and …, Advanced …

PubMed
446 Ergun, C.; Parmaksiz, M.; Vurat, M. T.; Elテァin, A. E.; ..., 2022, Decellularized liver ECM-based 3D scaffolds: compositional, physical, chemical, rheological, thermal, mechanical, and in vitro biological evaluations, International Journal of 窶ヲ

PubMed
447 Jura-PテウナUorak, A.; Olczyk, P.; ChaナBs-Lipka, A.; ..., 2022, Urinary sulphated glycosaminoglycans excretion in obese patients with type 2 diabetes mellitus treated with metformin, 窶ヲ of Physiology and 窶ヲ

PubMed
448 Martin, M.; Wells, S.; Chen, J., 2022, MITRAL VALVE CHORDAE TENDINEAE DEVELOP INDEPENDENTLY FROM LEAFLET TISSUE DURING FETAL DEVELOPMENT, Canadian Journal of Cardiology

PubMed
449 Lin, Z.; Zhang, X.; Fritch, M. R.; Li, Z.; Kuang, B.; Alexander, P. G.; ..., 2022, Engineering pre-vascularized bone-like tissue from human mesenchymal stem cells through simulating endochondral ossification, Biomaterials

PubMed
450 Sanada, Y.; Ikuta, Y.; Ding, C.; Shinohara, M.; ..., 2022, Senescence-accelerated mice prone 8 (SAMP8) in male as a spontaneous osteoarthritis model, Arthritis Research & …

PubMed
451 Intini, C.; Hodgkinson, T.; Casey, S. M.; Gleeson, J. P.; ..., 2022, Highly porous type II collagen-containing scaffolds for enhanced cartilage repair with reduced hypertrophic cartilage formation, Bioengineering

PubMed
452 Chiesa-Estomba, C. M.; Hernテ。ez-Moya, R.; Rodiテアo, C.; ..., 2022, Ex Vivo Maturation of 3D-Printed, Chondrocyte-Laden, Polycaprolactone-Based Scaffolds Prior to Transplantation Improves Engineered Cartilage Substitute 窶ヲ, Cartilage

PubMed
453 Ahn, J.; Arai, Y.; Kim, B. J.; Seo, Y. K.; Moon, J. J.; Shin, D. A.; ..., 2022, Combinatorial physicochemical stimuli in the three-dimensional environment of a hyaluronic acid hydrogel amplify chondrogenesis by stimulating …, NPG Asia …

PubMed
454 Marsh, S.; Constantin-Teodosiu, T.; ..., 2022, In vitro Exposure to Inflammatory Mediators Affects the Differentiation of Mesenchymal Progenitors, … in Bioengineering and …

PubMed
455 Wang, D.; Xue, X.; Gunn, G.; Du, M.; Siddiqui, A.; ..., 2022, Ataluren suppresses a premature termination codon in an MPS IH mouse, Journal of Molecular …

PubMed
456 Luo, L.; Foster, N. C.; Man, K. L.; Brunet, M.; ..., 2022, Hydrostatic pressure promotes chondrogenic differentiation and microvesicle release from human embryonic and bone marrow stem cells, Biotechnology …

PubMed
457 Thowsen, I. M.; Karlsen, T. V.; Nikpey, E.; ..., 2022, Na+ is shifted from the extracellular to the intracellular compartment and is not inactivated by glycosaminoglycans during high salt conditions in rats, The Journal of …

PubMed
458 Salinas, E. Y.; Donahue, R. P.; Herrera, J. M.; ..., 2022, The functionality and translatability of neocartilage constructs are improved with the combination of fluid-induced shear stress and bioactive factors, … : official publication of …

PubMed
459 Kobayashi-Miura, M.; Osago, H.; Hamasaki, Y.; ..., 2022, Decrease in Glycosaminoglycan with Aging in Normal Rat Articular Cartilage Is Greater in Females than in Males, Cartilage

PubMed
460 Yoon, D. S.; Lee, K. M.; Choi, Y.; Ko, E. A.; Lee, N. H.; ..., 2022, TLR4 downregulation by the RNA-binding protein PUM1 alleviates cellular aging and osteoarthritis, Cell Death & …

PubMed
461 Li, R.; Liu, J.; Ma, J.; Sun, X.; Wang, Y.; Yan, J.; Yu, Q.; Diao, J.; ..., 2022, Fibrinogen improves liver function via promoting cell aggregation and fibronectin assembly in hepatic spheroids, Biomaterials

PubMed
462 Yoon, J.; Yoon, D.; Lee, H.; Lee, J. U.; Jo, S. Y.; Kym, D.; ..., 2022, Wound healing ability of acellular fish skin and bovine collagen grafts for split-thickness donor sites in burn patients: Characterization of acellular grafts and clinical …, Internat

PubMed
463 Piening, L. M.; Lillyman, D. J.; Lee, F. S.; Lozano, A. M.; ..., 2022, Injectable decellularized nucleus pulposus tissue exhibits neuroinhibitory properties, JOR …

PubMed
464 Intini, C.; Lemoine, M.; Hodgkinson, T.; Casey, S.; ..., 2022, A highly porous type II collagen containing scaffold for the treatment of cartilage defects enhances MSC chondrogenesis and early cartilaginous matrix deposition, Biomaterials …

PubMed
465 Teo, K. Y. W.; Sevencan, C.; Cheow, Y. A.; Zhang, S.; ..., 2022, Macrophage Polarization as a Facile Strategy to Enhance Efficacy of Macrophage Membrane‐Coated Nanoparticles in Osteoarthritis, Small …

PubMed
466 Otarola, G. A.; Hu, J. C.; Athanasiou, K. A., 2022, Ion modulatory treatments toward functional self-assembled neocartilage, Acta Biomaterialia

PubMed
467 Fang, Y.; Han, Y.; Wang, S.; Chen, J.; Dai, K.; Xiong, Y.; ..., 2022, Three-dimensional printing bilayer membranous nanofiber scaffold for inhibiting scar hyperplasia of skin, Biomaterials …

PubMed
468 Otani, S.; Kanamoto, T.; Oyama, S.; Yamakawa, S.; Shi, W.; ..., 2022, Meniscus surface texture is associated with degenerative changes in biological and biomechanical properties, Scientific Reports

PubMed
469 Nordberg, R. C.; Kim, A. N.; Hight, J. M.; Meka, R. S.; ..., 2022, Biochemical and biomechanical characterization of the cervical, thoracic, and lumbar facet joint cartilage in the Yucatan minipig, Journal of …

PubMed
470 Pieri, A. De; Korntner, S. H.; Capella-Monsonis, H.; ..., 2022, Macromolecular crowding transforms regenerative medicine by enabling the accelerated development of functional and truly three-dimensional cell …, Biomaterials

PubMed
471 Zeng, J.; Huang, L.; Xiong, H.; Li, Q.; Wu, C.; ..., 2022, Injectable decellularized cartilage matrix hydrogel encapsulating urine-derived stem cells for immunomodulatory and cartilage defect regeneration, NPJ Regenerative …

PubMed
472 Tateiwa, D.; Kaito, T.; Hashimoto, K.; Okada, R.; ..., 2022, Selective retinoic acid receptor γ antagonist 7C is a potent enhancer of BMP-induced ectopic endochondral bone formation, Frontiers in Cell and …

PubMed
473 Bruin, S. De; Vasquez-Cardenas, D.; Sarbu, S. M.; ..., 2022, Sulfated glycosaminoglycan-like polymers are present in an acidophilic biofilm from a sulfidic cave, Science of the Total …

PubMed
474 Browe, D. C.; D鱈az-Payno, P. J.; Freeman, F. E.; Schipani, R.; ..., 2022, Bilayered extracellular matrix derived scaffolds with anisotropic pore architecture guide tissue organization during osteochondral defect repair, Acta Biomaterialia

PubMed
475 Hampton, J. D.; Peterson, E. J.; Katner, S. J.; Turner, T. H.; ..., 2022, Exploitation of sulfated glycosaminoglycan status for precision medicine of triplatin in triple-negative breast cancer, Molecular cancer …

PubMed
476 Normoyle, K. P.; Lillis, K. P.; Egawa, K.; McNally, M. A.; ..., 2022, Displacement of extracellular chloride by sulfated glycosaminoglycans of the brain extracellular matrix, BioRxiv

PubMed
477 Kuナコnik-Trocha, K.; Winsz-Szczotka, K.; ..., 2022, Plasma and urine levels of glycosaminoglycans in patients with systemic sclerosis and their relationship to selected interleukins and marker of early kidney 窶ヲ, Journal of Clinical 窶ヲ

PubMed
478 Bains, A. K.; Wu, L. Behrens; Riviティre, J.; Rother, S.; ..., 2022, Bone marrow mesenchymal stromal cell-derived extracellular matrix displays altered glycosaminoglycan structure and impaired functionality in 窶ヲ, Frontiers in 窶ヲ

PubMed
479 Chen, C. W.; Wang, Y., 2022, Compositions Comprising Extracellular Matrix of Primitive Animal Species and Related Methods, US Patent App. 17/739,466

PubMed
480 Yang, S. W.; Chen, Y. J.; Chen, C. J.; Liu, J. T.; Yang, C. Y.; Tsai, J. H.; ..., 2022, High-Density Horizontal Stacking of Chondrocytes via the Synergy of Biocompatible Magnetic Gelatin Nanocarriers and Internal Magnetic Navigation for …, Polymers

PubMed
481 Harmatz, P.; Prada, C. E.; Burton, B. K.; Lau, H.; Kessler, C. M.; ..., 2022, First-in-human in vivo genome editing via AAV-zinc-finger nucleases for mucopolysaccharidosis I/II and hemophilia B, Molecular Therapy

PubMed
482 Briat, A.; Jacques, C.; Malige, M.; Sudre, L.; Nourissat, G.; ..., 2022, 99mTc-NTP 15-5 is a companion radiotracer for assessing joint functional response to sprifermin (rhFGF-18) in a murine osteoarthritis model, Scientific Reports

PubMed
483 Brito, M. Martinho de; Bundeleva, I.; Marin, F.; Vennin, E.; ..., 2022, Effect of Culture pH on Properties of Exopolymeric Substances from Synechococcus PCC7942: Implications for Carbonate Precipitation, Geosciences

PubMed
484 Kim, D.; Lee, H.; Lee, G. H.; Hoang, T. H.; ..., 2022, Fabrication of bone‐derived decellularized extracellular matrix/ceramic‐based biocomposites and their osteo/odontogenic differentiation ability for dentin regeneration, Bioengineering & …

PubMed
485 Dufour, A.; Gallostra, X. B.; O'keeffe, C.; Eichholz, K.; ..., 2022, Integrating melt electrowriting and inkjet bioprinting for engineering structurally organized articular cartilage, Biomaterials

PubMed
486 Zambaiti, E., 2022, Organoidi gastrointestinali pediatrici e fetali: modello di cultura tridimensionale in vitro,

PubMed
487 Lin, J.; Hu, W.; Gao, T.; Bao, B.; Li, X.; Huang, T.; Sun, Y.; ..., 2022, ε-Poly-l-lysine as an efficient cartilage penetrating and residing drug carrier with high intraarticular injection safety for treating osteoarthritis, Chemical Engineering …

PubMed
488 Nedunchezian, S.; Wu, C. W.; Wu, S. C.; Chen, C. H.; Chang, J. K.; ..., 2022, Characteristic and chondrogenic differentiation analysis of hybrid hydrogels comprised of Hyaluronic Acid Methacryloyl (HAMA), Gelatin Methacryloyl (GelMA) …, Polymers

PubMed
489 Browe, D. C.; Burdis, R.; D鱈az-Payno, P. J.; Freeman, F. E.; ..., 2022, Promoting endogenous articular cartilage regeneration using extracellular matrix scaffolds, Materials Today Bio

PubMed
490 Athanasiou, K. A.; Hu, J. C.; Brown, W. E., 2022, Methods and systems for improving cells for use in therapy, US Patent App. 17/496,391

PubMed
491 Chen, T. C.; Wong, C. W.; Hsu, S., 2022, Three-dimensional printing of chitosan cryogel as injectable and shape recoverable scaffolds, Carbohydrate Polymers

PubMed
492 Haudenschild, A. K.; Sherlock, B. E.; Zhou, X.; Sheaff, C. S.; ..., 2022, Non-destructive, continuous monitoring of biochemical, mechanical, and structural maturation in engineered tissue, Scientific Reports

PubMed
493 Martino, C.; Kellman, B.; Lewis, N.; Knight, R.; Esko, J. D.; ..., 2022, Application of microbial glycosidase as an anti-viral therapeutic, prognostic, and diagnostic,

PubMed
494 Vapniarsky, N.; Moncada, L.; Garrity, C.; Wong, A.; ..., 2022, Tissue engineering of canine cartilage from surgically debrided osteochondritis dissecans fragments, Annals of biomedical …

PubMed
495 Huang, Z.; Wang, X.; Ryzhuk, V.; Gao, W., 2022, Preparation and use of tissue matrix derived powder, US Patent App. 17/727,804

PubMed
496 Pandit, A.; Kanala, V. K.; Ismail, S.; ..., 2022, Hyaluronan compositions, and uses thereof in treatment of interstitial cystitis, US Patent App. 17 …

PubMed
497 Wang, B.; Chariyev-Prinz, F.; Burdis, R.; Eichholz, K.; ..., 2022, Additive manufacturing of cartilage-mimetic scaffolds as off-the-shelf implants for joint regeneration, …

PubMed
498 Pitrolino, K. A.; Felfel, R. M.; Pellizzeri, L. M.; McLaren, J.; ..., 2022, Development and in vitro assessment of a bi-layered chitosan-nano-hydroxyapatite osteochondral scaffold, Carbohydrate …

PubMed
499 Katrekar, D.; Yen, J.; Xiang, Y.; Saha, A.; Meluzzi, D.; ..., 2022, Efficient in vitro and in vivo RNA editing via recruitment of endogenous ADARs using circular guide RNAs, Nature …

PubMed
500 Xiang, S.; Lin, Z.; Makarcyzk, M. J.; ..., 2022, Differences in the intrinsic chondrogenic potential of human mesenchymal stromal cells and iPSC‐derived multipotent cells, Clinical and …

PubMed
501 Gao, M.; Zhu, X.; Peng, W.; He, Y.; Li, Y.; Wu, Q.; Zhou, Y.; ..., 2022, Kidney ECM pregel nanoarchitectonics for microarrays to accelerate harvesting gene-edited porcine primary monoclonal spheres, ACS …

PubMed
502 Otarola, G. A.; Hu, J. C.; Athanasiou, K. A., 2022, Intracellular calcium and sodium modulation of self-assembled neocartilage using costal chondrocytes, Tissue Engineering Part A

PubMed
503 Jahr, H.; Windt, AE van der; Timur, U. T.; Baart, E. B.; ..., 2022, Physosmotic induction of chondrogenic maturation is TGF-β dependent and enhanced by calcineurin inhibitor FK506, International journal of …

PubMed
504 Mosher, M. L., 2022, Development of a crosslinked osteochondral xenograft and a collagen stabilizing intra-articular injection to remediate cartilage focal lesions to prevent …,

PubMed
505 MacIver, M. A.; Dobson, L. K.; Gregory, C. A.; Muneoka, K.; ..., 2022, A three-dimensional (3D), serum-free, Collagen Type I system for chondrogenesis of canine bone marrow-derived multipotent stromal cells (cMSCs), Plos one

PubMed
506 Manon, J.; Evrard, R.; Maistriaux, L.; Fievテゥ, L.; ..., 2022, Periosteum and fascia lata: Are they so different?, 窶ヲ in bioengineering and 窶ヲ

PubMed
507 Wang, S.; Yan, H.; Fang, B.; Gu, C.; Guo, J.; Qiu, P.; Song, N.; ..., 2022, A myogenic niche with a proper mechanical stress environment improves abdominal wall muscle repair by modulating immunity and preventing fibrosis, Biomaterials

PubMed
508 Smith, M. C., 2022, Gene Therapy for Mucopolysaccharidosis Type II,

PubMed
509 Burdis, R.; Chariyev-Prinz, F.; Browe, D. C.; Freeman, F. E.; ..., 2022, Spatial patterning of phenotypically distinct microtissues to engineer osteochondral grafts for biological joint resurfacing, Biomaterials

PubMed
510 Rossetti, D., 2022, Early Biological Response of Articular Cartilage to Hemiarthroplasty Wear,

PubMed
511 Tran, N. T.; Park, I. S.; Truong, M. D.; Park, D. Y.; Park, S. H.; ..., 2022, Conditioned media derived from human fetal progenitor cells improves skin regeneration in burn wound healing, Cell and tissue …

PubMed
512 Barcel坦, X.; Eichholz, K. F.; Garcia, O.; Kelly, D. J., 2022, Tuning the degradation rate of alginate-based bioinks for bioprinting functional cartilage tissue, Biomedicines

PubMed
513 Endo, K.; Miura, Y.; Komori, K.; Sekiya, I., 2022, Clearance of senescent cells with ABT-263 improves biological functions of synovial mesenchymal stem cells from osteoarthritis patients,

PubMed
514 Dテュaz-Payno, P. J.; Browe, D. C.; Freeman, F. E.; ..., 2022, Gremlin-1 Suppresses Hypertrophy of Engineered Cartilage In Vitro but Not Bone Formation In Vivo, 窶ヲ Engineering Part A

PubMed
515 Bhattacharjee, P.; Ahearne, M., 2022, Silk fibroin based interpenetrating network hydrogel for corneal stromal regeneration, International Journal of Biological …

PubMed
516 Ercan, H.; El巽in, A. E.; El巽in, Y. M., 2022, Assessment of dopamine-conjugated decellularized bovine tendon extracellular matrix as a bioadhesive, Materials Today Communications

PubMed
517 Tang, W.; Qi, J.; Wang, Q.; Qu, Y.; Fu, S.; ..., 2022, Investigating the adipogenic effects of different tissue-derived decellularized matrices, Frontiers in Bioengineering …

PubMed
518 Lima, EC de; Bezerra, T. F.; ..., 2022, Cosmetic composition and its use, dermocosmetic formulation, US Patent …

PubMed
519 Lee, C. K.; Zhang, S.; Venkatesan, G.; Chong, S. Y.; ..., 2022, Enhanced skin penetration of berberine from proniosome gel attenuates pain and inflammation in a mouse model of osteoarthritis, Biomaterials …

PubMed
520 Lassila, R., 2022, Therapeutic APAC Molecule comprising Heparin Conjugated to a Plasma Protein, US Patent App. 17/855,932

PubMed
521 Reis, D. P.; Domingues, B.; Fidalgo, C.; Reis, R. L.; ..., 2022, Bioinks enriched with ECM components obtained by supercritical extraction, Biomolecules

PubMed
522 Wト冱ierska, M.; Nowicka, W.; Kloska, A.; ..., 2022, Murine fibroblasts and primary hepatocytes as tools when studying the efficacy of potential therapies for mucopolysaccharidosis type I, International Journal of 窶ヲ

PubMed
523 Kim, A.; Hight, J.; Meka, R.; Elder, B.; Hu, J.; Athanasiou, K.; ..., 2022, Biochemical and biomechanical characterization of the cervical, thoracic, and lumbar facet joint cartilage in the Yucatan minipig.,

PubMed
524 Long, S.; Huang, D.; Ma, Z.; Shi, S.; Xiao, Y.; ..., 2022, A sonication-induced silk-collagen hydrogel for functional cartilage regeneration, Journal of Materials …

PubMed
525 Kawecki, F.; Gluais, M.; Claverol, S.; Dusserre, N.; ..., 2022, Inter-donor variability of extracellular matrix production in long-term cultures of human fibroblasts, Biomaterials …

PubMed
526 Samuel, S.; McDonnell, E. E.; Buckley, C. T., 2022, Effects of growth factor combinations TGFβ3, GDF5 and GDF6 on the matrix synthesis of nucleus Pulposus and Nasoseptal chondrocyte self-assembled …, Applied Sciences

PubMed
527 AHMED, H.; Fazal, N.; Ahmad, M. R.; Ijaz, B.; Bilal, A. Z.; ..., 2022, S-ALLYL-L-CYSTEINE-INDUCED ANTI-INFLAMMATORY AND ANTI-APOPTOTIC EFFECTS IN CHONDROCYTES IS ASSOCIATED WITH SUPPRESSION OF THE …, Biological and Clinical …

PubMed
528 Makhija, E.; Zheng, Y.; Wang, J.; Leong, H. R.; Othman, R. B.; ..., 2022, Topological defects govern mesenchymal condensations, offering a morphology-based tool to predict cartilage differentiation, bioRxiv

PubMed
529 Zhi, D.; Cheng, Q.; Midgley, A. C.; Zhang, Q.; Wei, T.; Li, Y.; ..., 2022, Mechanically reinforced biotubes for arterial replacement and arteriovenous grafting inspired by architectural engineering, Science …

PubMed
530 Wang, Y.; Xu, L.; Zhao, J.; Liang, J.; Zhang, Z.; Li, Q.; Zhang, J.; ..., 2022, Reconstructing auto tissue engineering lamellar cornea with aspartic acid modified acellular porcine corneal stroma and preconditioned limbal stem cell for corneal …, Biomater

PubMed
531 Capuozzo, A.; Montefusco, S.; Cacace, V.; Sofia, M.; ..., 2022, Fluoxetine ameliorates mucopolysaccharidosis type IIIA, Molecular Therapy

PubMed
532 Blanco-Fernandez, B.; Rey-Vinolas, S.; ..., 2022, Bioprinting decellularized breast tissue for the development of three-dimensional breast cancer models, … applied materials & …

PubMed
533 Behan, K.; Dufour, A.; Garcia, O.; Kelly, D., 2022, Methacrylated cartilage ECM-based hydrogels as injectables and bioinks for cartilage tissue engineering, Biomolecules

PubMed
534 Nasiri, N.; Hosseini, S.; Reihani-Sabet, F.; ..., 2022, Targeted mesenchymal stem cell therapy equipped with a cell-tissue nanomatchmaker attenuates osteoarthritis progression, Scientific reports

PubMed
535 Xu, L.; Wang, H.; Luo, L.; Deng, J.; Chen, F.; Wang, Y.; ..., 2022, Aspartic acid and epidermal growth factor modified decellularized rabbit conjunctiva for conjunctival reconstruction, Biomaterials …

PubMed
536 Ribeiro, S.; Pugliese, E.; Korntner, S. H.; ..., 2022, Assessing the combined effect of surface topography and substrate rigidity in human bone marrow stem cell cultures, Engineering in Life …

PubMed
537 Kuna, V. K.; Lundgren, A.; Anerillas, L. O.; Kelk, P.; ..., 2022, Efficacy of Nerve-Derived Hydrogels to Promote Axon Regeneration Is Influenced by the Method of Tissue Decellularization, International Journal of …

PubMed
538 Deus, I. A.; Santos, S. C.; Cust坦dio, C. A.; Mano, J. F., 2022, Designing highly customizable human based platforms for cell culture using proteins from the amniotic membrane, Biomaterials Advances

PubMed
539 Braunlin, E.; Abrahante, J. E.; McElmurry, R.; ..., 2022, Contribution of the innate and adaptive immune systems to aortic dilation in murine mucopolysaccharidosis type I, Molecular genetics and …

PubMed
540 Baysan, G.; Gunes, O. C.; Akokay, P.; Husemoglu, R. B.; ..., 2022, Loofah-chitosan and poly (− 3-hydroxybutyrate-co-3-hydroxyvalerate)(PHBV) based hydrogel scaffolds for meniscus tissue engineering applications, International Journal of …

PubMed
541 Li, M.; Zheng, C.; Wu, B.; Ding, K.; Zhang, S.; ..., 2022, Glycidyl methacrylate-crosslinked fish swim bladder as a novel cardiovascular biomaterial with improved antithrombotic and anticalcification properties, Journal of …

PubMed
542 Palmosi, T.; Tolomeo, A. M.; Cirillo, C.; Sandrin, D.; ..., 2022, Small intestinal submucosa-derived extracellular matrix as a heterotopic scaffold for cardiovascular applications, … in Bioengineering and …

PubMed
543 Bテシyテシk, Nトー; Tテシfekテァi, K.; Cumbul, A.; ..., 2022, A novel method for providing scaffold: Decellularization of parathyroid capsule, Journal of 窶ヲ

PubMed
544 Yuan, P.; Li, Z.; Shao, B.; Zeng, T.; Wu, X.; Wang, Y.; Zhao, Y.; ..., 2022, Extracellular vesicles derived from starving BMSCs enhance survival of chondrocyte aggregates in grafts by attenuating chondrocyte apoptosis and enabling stable …, Acta Biomateri

PubMed
545 Yuan, Z.; Liu, S.; Song, W.; Liu, Y.; Bi, G.; Xie, R.; ..., 2022, Galactose Enhances Chondrogenic Differentiation of ATDC5 and Cartilage Matrix Formation by Chondrocytes, Frontiers in Molecular …

PubMed
546 Sparn, C.; Dimou, E.; Meyer, A.; Saleppico, R.; ..., 2022, Glypican-1 drives unconventional secretion of fibroblast growth factor 2, Elife

PubMed
547 Tzankov, A.; Bhattacharyya, S.; Kotlo, K.; Tobacman, J. K., 2022, Increase in chondroitin sulfate and decline in Arylsulfatase B may contribute to pathophysiology of COVID-19 respiratory failure, Pathobiology

PubMed
548 Li, H.; Li, J.; Li, T.; Wu, C.; Zhang, W., 2022, Macroporous polyvinyl alcohol-tannic acid hydrogel with high strength and toughness for cartilage replacement, Journal of Materials Science

PubMed
549 Miura, Y.; Endo, K.; Komori, K.; Sekiya, I., 2022, Clearance of senescent cells with ABT-263 improves biological functions of synovial mesenchymal stem cells from osteoarthritis patients, Stem Cell Research &Therapy

PubMed
550 Guagliano, G.; Volpini, C.; Sardelli, L.; ..., 2022, Hep3Gel: a shape-shifting extracellular matrix-based, three-dimensional liver model adaptable to different culture systems, ACS biomaterials …

PubMed
551 Wu, G. X.; Chen, C. Y.; Wu, C. S.; Hwang, L. C.; Yang, S. W.; ..., 2022, Restoration of the Phenotype of Dedifferentiated Rabbit Chondrocytes by Sesquiterpene Farnesol. Pharmaceutics 2022, 14, 186,

PubMed
552 Giang, N. N.; Trinh, X. T.; Han, J.; Chien, P. N.; ..., 2022, Effective decellularization of human skin tissue for regenerative medicine by supercritical carbon dioxide technique, Journal of Tissue …

PubMed
553 Shologu, N.; Gurdal, M.; Szegezdi, E.; FitzGerald, U.; ..., 2022, Macromolecular crowding in the development of a three-dimensional organotypic human breast cancer model, Biomaterials

PubMed
554 Nieto-Nicolau, N.; López-Chicón, P.; Torrico, C.; ..., 2022, “Off-the-Shelf” nerve matrix preservation, Biopreservation and …

PubMed
555 Hill, C. N.; Coombs, M. C.; Cisewski, S. E.; Durham, E. L.; ..., 2022, Structure-function relationships of TMJ lateral capsule-ligament complex, Journal of …

PubMed
556 Smith, M. C.; Belur, L. R.; Karlen, A. D.; Erlanson, O.; ..., 2022, Phenotypic Correction of Murine Mucopolysaccharidosis Type II by Engraftment of Ex Vivo Lentiviral Vector-Transduced Hematopoietic Stem and Progenitor Cells, Human gene …

PubMed
557 Akbarzadeh, A.; Tafti, S. H. A.; Sabetkish, S.; ..., 2022, Coronary-Based Right Heart Flap Recellularization by Rat Neonatal Whole Cardiac Cells: A Viable Sheep Cardiac Patch Model for Possible Management of Heart …, Regenerative …

PubMed
558 Dehghan-Baniani, D.; Mehrjou, B.; Wang, D.; ..., 2022, A dual functional chondro-inductive chitosan thermogel with high shear modulus and sustained drug release for cartilage tissue engineering, International Journal of …

PubMed
559 Qiu, H.; Zhang, L.; Wang, D.; Miao, H., 2022, Silver Nanoparticles Improve the Biocompatibility and Reduce the Immunogenicity of Xenogeneic Scaffolds Derived from Decellularized Pancreas, Cellular Reprogramming

PubMed
560 Kim, M.; Ahn, J.; Lee, J.; Song, S.; Lee, S.; Lee, S.; ..., 2022, Combined mesenchymal stem cells and cartilage acellular matrix injection therapy for osteoarthritis in goats, Tissue Engineering and …

PubMed
561 Parmaksiz, M., 2022, Decellularized tendon-based heparinized nanocomposite scaffolds for prospective regenerative applications: Chemical, physical, thermal, mechanical and in vitro …, Journal of the Mechanical Behavior of Biomedical …

PubMed
562 Park, H. H.; Kim, Y. M.; Kim, H. S.; Kim, S. H.; Jin, X.; Hwang, D. H.; ..., 2022, Dual-functional hydrogel system for spinal cord regeneration with sustained release of arylsulfatase B alleviates fibrotic microenvironment and promotes …, Biomaterials

PubMed
563 Garriboli, M.; Deguchi, K.; Totonelli, G.; ..., 2022, Development of a porcine acellular bladder matrix for tissue-engineered bladder reconstruction, Pediatric Surgery …

PubMed
564 Xie, X.; Wu, S.; Mou, S.; Guo, N.; Wang, Z.; ..., 2022, Microtissue‐based bioink as a chondrocyte microshelter for DLP bioprinting, Advanced Healthcare …

PubMed
565 Otsuka, T.; Kan, H. M.; Mason, T. D.; Nair, L. S.; ..., 2022, Overexpression of NDST1 Attenuates Fibrotic Response in Murine Adipose-Derived Stem Cells, Stem Cells and …

PubMed
566 Shimizu, R.; Asawa, Y.; Komura, M.; Hoshi, K.; Hikita, A., 2022, Superior stemness of a rapidly growing subgroup of isolated human auricular chondrocytes and the potential for use in cartilage regenerative therapy, Regenerative Therapy

PubMed
567 Sant, N. J.; Proffen, B. L.; Murray, M. M., 2022, Effects of radiation dose and nitrogen purge on collagen scaffold properties, Journal of Biomaterials …

PubMed
568 Gaffke, L.; SzczudナP, Z.; Podlacha, M.; Cyske, Z.; ..., 2022, Impaired ion homeostasis as a possible associate factor in mucopolysaccharidosis pathogenesis: Transcriptomic, cellular and animal studies, Metabolic brain 窶ヲ

PubMed
569 Pierzynowska, K.; ナサabiナгka, M.; Gaffke, L.; Cyske, Z.; ..., 2022, Changes in expression of signal transduction-related genes, and formation of aggregates of GPER1 and OXTR receptors in mucopolysaccharidosis cells, European Journal of 窶ヲ

PubMed
570 Dong, Z.; Chen, S.; Wang, L.; Qi, P.; Wei, L., 2022, Fabrication of Flower-stacked structured microparticles encapsulated with Stem cells and Growth Factor to the potential treatment of Intervertebral Disc Degeneration, Process Biochemistry

PubMed
571 Huang, Z.; Zhang, Y.; Liu, R.; Li, Y.; Rafique, M.; Midgley, A. C.; ..., 2022, Cobalt loaded electrospun poly (竜-caprolactone) grafts promote antibacterial activity and vascular regeneration in a diabetic rat model, Biomaterials

PubMed
572 Liu, Q.; Dai, W.; Gao, Y.; Dong, L.; Jia, H.; Li, S.; Guo, L.; Fan, Y.; ..., 2022, The synergistic regulation of chondrogenesis by collagen-based hydrogels and cell co-culture, Acta biomaterialia

PubMed
573 Xie, M.; Zhang, Y.; Xiong, Z.; Hines, S.; Shang, J.; Clark, K. L.; ..., 2022, Generation of hyaline-like cartilage tissue from human mesenchymal stromal cells within the self-generated extracellular matrix, Acta Biomaterialia

PubMed
574 Wee, A. S.; Lim, C. K.; Tan, S. L.; Ahmad, T. S.; ..., 2022, TGF-β1 and-β3 for Mesenchymal Stem Cells Chondrogenic Differentiation on Poly (Vinyl Alcohol)-Chitosan-Poly (Ethylene Glycol) Scaffold, Tissue Engineering Part …

PubMed
575 Ota, T.; Iwai, R.; Kitaguchi, Y.; Takarada, T.; ..., 2022, Fabrication of scaffold-free mesenchyme tissue bands by cell self-aggregation technique for potential use in tissue regeneration, Biomedical …

PubMed
576 Choi, M.; Yang, Y. B.; Park, S.; Rahaman, S.; Tripathi, G.; ..., 2022, Effect of Co-culture of mesenchymal stem cell and glomerulus endothelial cell to promote endothelialization under optimized perfusion flow rate in whole renal …, Materials Today Bio

PubMed
577 Knight, K. M.; King, G. E.; Palcsey, S. L.; Artsen, A. M.; ..., 2022, A soft elastomer alternative to polypropylene for pelvic organ prolapse repair: a preliminary study, International …

PubMed
578 Heintzsch, M., 2022, Analyse von Proteinen der extrazellul辰ren Matrix indezellularisiertem tierischenGewebe,

PubMed
579 Mテシller, S. V., 2022, Systematische Optimierung bestehender Dezellularisierungsmethoden von Pulmonalarterien mithilfe von physikalischen, prozeduralen und enzymatischen 窶ヲ,

PubMed
580 Siurkus, J.; Peciura, R., 2022, Topical composition with active compounds from Cannabis sativa and Calendula officinalis for reduction of skin lesions, US Patent 11,364,273

PubMed
581 Sidney, L.; Hopkinson, A.; McIntosh, O., 2022, Corneal tissue, US Patent App. 17/776,990

PubMed
582 김은채; 강내운; 박지우; 곽소정; 이승재, 2022, 연골 재생을 위한 압축률 조절이 가능한 동적 압축 자극 바이오리액터 개발, 대한기계학회 논문집 B 권

PubMed
583 秦晓平; 李涛; 陈诚; 杨柳, 2022, 负载抗炎肽的锆-金属有机框架封装于水凝胶促进软骨细胞外基质生成,

PubMed
584 Frank, M. H.; Kluth, M. A.; Ganss, C., 2022, Highly functional manufactured abcb5+ mesenchymal stem cells, US Patent App. 17/598,848

PubMed
585 Hausmanns, S.; Frech, H. U.; Oesser, S.; ..., 2022, Synthetic and recombinant collagen peptides having biological activity, US Patent App. 17 …

PubMed
586 Ramer, M.; Badylak, S. F.; Keane, T., 2022, Method and composition for treating inflammatory bowel disease, US Patent 11,389,566

PubMed
587 Gonzalez-Leon, E., 2022, Enhancing Functional Properties of Self-Assembled Neomenisci and Neocartilage toward Their Implantation in a Suitable Preclinical Large Animal Model,

PubMed
588 Lin, H.; Tuan, R. S. C.; Yang, Y., 2022, Cartilage material having minimal hypertrophy and robust integration capacity, and uses therefor, US Patent 11,471,562

PubMed
589 Bhatia, M. B.; Lugo, C.; Ye, Q.; Edinger, J. W., 2022, Human placental collagen compositions and methods of making and using the same, US Patent App. 17/302,831

PubMed
590 Tremmel, D. M., 2022, Reconstructing the Islet Extracellular Niche,

PubMed
591 Chen, C. W.; Wang, Y., 2022, Compositions comprising extracellular matrix of primitive animal species and related methods, US Patent 11,331,348

PubMed
592 Al-Hejailan, R.; Weigel, T.; Schテシrlein, S.; Berger, C.; ..., 2022, Decellularization of full heart窶俳ptimizing the classical sodium-dodecyl-sulfate-based decellularization protocol, Bioengineering

PubMed
593 Jin, X.; Su, J.; Zhao, Q.; Li, R.; Xiao, J.; Zhong, X.; ..., 2022, Liver-directed gene therapy corrects neurologic disease in a murine model of mucopolysaccharidosis type I-Hurler, … Therapy-Methods & …

PubMed
594 Badylak, S. F.; Jr, TJ Keane; Turner, N. J.; ..., 2022, Methods for Preparation of a Terminally Sterilized Hydrogel Derived from Extracellular Matrix, US Patent App. 17 …

PubMed
595 Badylak, S. F.; Dearth, C. L.; Jr, TJ Keane; ..., 2022, Methods for preparation of a terminally sterilized hydrogel derived from extracellular matrix, US Patent …

PubMed
596 Zeng, T.; Yuan, P.; Liang, L.; Zhang, X.; Zhang, H.; ..., 2022, Cartilaginous extracellular matrix enriched with human gingival mesenchymal stem cells derived “matrix bound extracellular vesicles” enabled functional …, Advanced …

PubMed
597 Lassila, R., 2022, Therapeutic APAC molecule comprising heparin conjugated to a plasma protein, US Patent 11,446,361

PubMed
598 Badylak, S. F.; Hussey, G. S., 2022, Acoustic extracellular matrix hydrogels and their use, US Patent App. 17/434,925

PubMed
599 Entchev, E.; Antonelli, S.; Mauro, V.; Cimbolini, N.; ..., 2022, MPS VI associated ocular phenotypes in an MPS VI murine model and the therapeutic effects of odiparcil treatment, Molecular Genetics and …

PubMed
600 Trujillo, S. Clara, 2022, Development of a 3D in vitro disease model for multiple myeloma,

PubMed
601 Adil, A.; Xu, M.; Haykal, S., 2022, Recellularization of bioengineered scaffolds for vascular composite allotransplantation, Frontiers in Surgery

PubMed
602 Pitacco, P., 2022, 3D Bioprinted Cartilaginous Templates as Developmentally Inspired Implants for Large Bone Defect Regeneration,

PubMed
603 Lemoine, M., 2022, Reinforced collagen based scaffolds for musculoskeletal tissue engineering,

PubMed
604 Truong, V. A.; Lin, Y. H.; Nguyen, N. T. K.; Hsu, M. N.; Pham, N. N.; ..., 2022, Bi-directional gene activation and repression promote ASC differentiation and enhance bone healing in osteoporotic rats, Molecular Therapy

PubMed
605 Fujii, S.; Endo, K.; Matsuta, S.; Komori, K.; Sekiya, I., 2022, Comparison of the yields and properties of dedifferentiated fat cells and mesenchymal stem cells derived from infrapatellar fat pads, Regenerative Therapy

PubMed
606 Coppi, P. De; Elvassore, N.; Giobbe, G. G.; ..., 2022, Extracellular Matrix Gels, and Organoid Cultures Comprising the Same, US Patent App. 17 …

PubMed
607 Pezzani, GA Otarola, 2022, Development of novel tissue engineering strategies toward the translation of articular cartilage implants,

PubMed
608 Pezzani, G. A. O., 2022, Development of Novel Tissue Engineering Strategies toward the Translation of Articular Cartilage Implants,

PubMed
609 Intini, C., 2022, Innovative biomimetic collagen-based scaffolds for enhanced and longer lasting cartilage repair,

PubMed
610 Haghshenas, M.; Tavana, S.; Zand, E.; ..., 2022, Mouse ovarian follicle growth in an amniotic membrane-based hydrogel, Journal of …

PubMed
611 Liu, H. W.; Su, W. T.; Liu, C. Y.; Huang, C. C., 2022, Highly organized porous gelatin-based scaffold by microfluidic 3D-foaming technology and dynamic culture for cartilage tissue engineering, International journal of molecular …

PubMed
612 Kawai, S.; Takashima, S.; Ando, M.; Shintaku, S.; ..., 2023, Discovery of Novel Chromenopyridine Derivatives as Readthrough-Inducing Drugs, Chemical and …

PubMed
613 Tondato, S.; Moro, A.; Butt, S.; Todesco, M.; Sandrin, D.; ..., 2023, Tergitol Based Decellularization Protocol Improves the Prerequisites for Pulmonary Xenografts: Characterization and Biocompatibility Assessment. Polymers …,

PubMed
614 Guillaume, O.; Kopinski-Gr端nwald, O.; Weisgrab, G.; ..., 2023, Hybrid spheroid microscaffolds as modular tissue units to build macro-tissue assemblies for tissue engineering, Acta Biomaterialia

PubMed
615 Han, S.; Kim, J.; Kim, S. H.; Youn, W.; Kim, J.; Ji, G. Y.; Yang, S.; ..., 2023, In vitro induction of in vivo窶途elevant stellate astrocytes in 3D brain-derived, decellularized extracellular matrices, Acta Biomaterialia

PubMed
616 Intini, C.; Ferreras, L. B.; Casey, S.; Dixon, J. E.; ..., 2023, An Innovative miR‐Activated Scaffold for the Delivery of a miR‐221 Inhibitor to Enhance Cartilage Defect Repair, Advanced …

PubMed
617 Liang, L.; Zhang, F.; Feng, N.; Kuang, B.; Fan, M.; ..., 2023, IRE1α protects against osteoarthritis by regulating progranulin-dependent XBP1 splicing and collagen homeostasis, … & Molecular Medicine

PubMed
618 Zhang, D.; Fu, Q.; Fu, H.; Zeng, J.; Jia, L.; ..., 2023, 3D-bioprinted human lipoaspirate-derived cell-laden skin constructs for healing of full-thickness skin defects, International Journal of …

PubMed
619 Du, H.; Zhang, W.; Shi, Y.; Sun, W.; Liu, G.; Liu, H., 2023, Decellularized extracellular matrix tissues from human gastric cancer tissues as a three-dimensional model for cancer cell growth and drug treatments,

PubMed
620 Chiu, K. H.; Karpat, M.; Hahn, J.; Chang, K. Y.; ..., 2023, Cyclic Stretching Triggers Cell Orientation and Extracellular Matrix Remodeling in a Periodontal Ligament 3D In Vitro Model, Advanced …

PubMed
621 Tommasini, F.; Benoist, T.; Shibuya, S.; Woodall, M. N. J.; ..., 2023, Lung viral infection modelling in a bioengineered whole-organ, Biomaterials

PubMed
622 Hatala, P.; Lajos, A.; Mackei, M.; Sebナ遡, C.; Trテ。j, P.; ..., 2023, Feline Uroepithelial cell culture as a novel model of idiopathic cystitis: investigations on the effects of norepinephrine on inflammatory response, oxidative 窶ヲ, Veterinary 窶ヲ

PubMed
623 Fackler, N. P.; Yareli-Salinas, E.; ..., 2023, In vitro effects of triamcinolone and methylprednisolone on the viability and mechanics of native articular cartilage, … American Journal of …

PubMed
624 Chen, T. A.; Sharma, D.; Jia, W.; Ha, D.; Man, K.; Zhang, J.; ..., 2023, Detergent-Based Decellularization for Anisotropic Cardiac-Specific Extracellular Matrix Scaffold Generation, Biomimetics

PubMed
625 Zhu, W.; Ou, L.; Zhang, L.; Clark, I. H.; Zhang, Y.; Zhu, X. H.; ..., 2023, Mapping brain networks in MPS I mice and their restoration following gene therapy, Scientific reports

PubMed
626 Maeda, S.; Segawa, K.; Konishi, H.; Iwamoto, K.; ..., 2023, Development of scaffold-free tissue-engineered constructs with serum-free media from mesenchymal stem cell-derived cells for cartilage repair and long-term …,

PubMed
627 Yoshida, Y.; Inubushi, T.; Yokoyama, M.; Nag, P.; Oka, A.; ..., 2023, SLC26A2-mediated sulfate metabolism is essential for the tooth development, bioRxiv

PubMed
628 Nguyen, N. T. K.; Lee, S. S.; Chen, P. H.; Chang, Y. H.; Pham, N. N.; ..., 2023, Enhanced Calvarial Bone Repair Using ASCs Engineered with RNA‐Guided Split dCas12a System that Co‐Activates Sox 5, Sox6, and Long Non‐Coding RNA H19, Small

PubMed
629 Maeda, S.; Matsumoto, M.; Segawa, K.; Iwamoto, K., 2023, Development of scaffold-free tissue-engineered constructs derived from mesenchymal stem cells with serum-free media for cartilage repair and long-term preservation,

PubMed
630 Hatala, P.; Sebナ遡, C.; Mackei, M.; Kテ。rpテ。ti, K.; ..., 2023, Molecular effects of intermittent stress on primary feline uroepithelial cell culture as an in vitro model of feline idiopathic cystitis, Frontiers in Veterinary 窶ヲ

PubMed
631 Chen, Y. H.; Zhang, X.; Chou, C. H.; Hsueh, M. F.; ..., 2023, Association of dipeptidylpeptidase 4 (CD26) with chondrocyte senescence and radiographic progression in knee osteoarthritis, Arthritis & …

PubMed
632 Chen, L. M.; Bruin, S. de; Pronk, M.; Sousa, D. Z.; ..., 2023, Sialylation and sulfation of anionic glycoconjugates are common in the extracellular polymeric substances of both aerobic and anaerobic granular sludges, Environmental …

PubMed
633 Li, P. F.; Xiong, F.; Xing, H. Y.; Hu, S. J.; ..., 2023, Retinoic acid inhibits the pyroptosis of degenerated nucleus pulposus cells by activating Sirt1-SOD2 signaling, Connective Tissue …

PubMed
634 Ren, R.; Zhou, J.; Sun, Y.; Telha, W.; Song, N.; Zhan, Y.; ..., 2023, Interspecies comparison of temporomandibular joint condylar cartilage extracellular matrix from macro to microscopy, Journal of the …

PubMed
635 Nag, S.; Boyd, A. S., 2023, Decellularization of Mouse Kidneys to Generate an Extracellular Matrix Gel for Human Induced Pluripotent Stem Cell Derived Renal Organoids, Organoids

PubMed
636 Shigeta, Y.; Saleh, T.; Benedetti, G.; Caciolli, L.; ..., 2023, Stomach engineering: region-specific characterization of the decellularized porcine stomach, Pediatric Surgery …

PubMed
637 Nakano, T.; Yamanaka, H.; Sakamoto, M.; ..., 2023, Development of a Self-Assembled Dermal Substitute from Human Fibroblasts Using Long-term Three-Dimensional Culture, … Engineering Part A

PubMed
638 Zand, E.; Rajablou, E.; Siadat, S. F.; Beiki, B.; Akbarinejad, V.; ..., 2023, Successful 3D culture and transplantation of mouse isolated preantral follicles in hydrogel of bioengineered Wharton's jelly, Plos one

PubMed
639 Yamazaki, N.; Ohira, M.; Takada, S.; Ohtake, A.; ..., 2023, Enhanced osteoblastic differentiation of parietal bone in a novel murine model of mucopolysaccharidosis type II, Molecular Genetics and …

PubMed
640 Chen, L. M.; Keisham, S.; Tateno, H.; Ede, J. van; ..., 2023, Alterations of Glycan Composition in Aerobic Granular Sludge during the Adaptation to Seawater Conditions, ACS Es&t …

PubMed
641 Ota, T.; Takao, T.; Iwai, R.; Moriwaki, T.; ..., 2023, Fabrication of shape-designable cartilage from human induced pluripotent stem cell-derived chondroprogenitors using a cell self-aggregation technique, Biomedical …

PubMed
642 Kim, M. K.; Jeong, W.; Jeon, S.; Kang, H. W., 2023, 3D bioprinting of dECM-incorporated hepatocyte spheroid for simultaneous promotion of cell-cell and-ECM interactions, Frontiers in Bioengineering …

PubMed
643 Siddiqui, A.; Dundar, H.; Sharma, J.; ..., 2023, Triamterene Functions as an Effective Nonsense Suppression Agent for MPS IH (Hurler Syndrome), International Journal of …

PubMed
644 Chaaban, M.; Moya, A.; Garc鱈a-Garc鱈a, A.; Paillaud, R.; ..., 2023, Harnessing human adipose-derived stromal cell chondrogenesis in vitro for enhanced endochondral ossification, Biomaterials

PubMed
645 Chang, L. H.; Wu, S. C.; Chen, C. H.; Chen, J. W.; ..., 2023, Exosomes derived from hypoxia-cultured human adipose stem cells alleviate articular chondrocyte inflammaging and post-traumatic osteoarthritis progression, International Journal of …

PubMed
646 Choi, S. H.; Lee, K.; Han, H.; Mo, H.; Jung, H.; Ryu, Y. W.; Nam, Y.; ..., 2023, Prochondrogenic effect of decellularized extracellular matrix secreted from human induced pluripotent stem cell-derived chondrocytes, Acta Biomaterialia

PubMed
647 Devold, E. J., 2023, Characterization of the mechanical properties of pancreatic, breast, and colon tumor models,

PubMed
648 Tondato, S.; Moro, A.; Butt, S.; Todesco, M.; Sandrin, D.; ..., 2023, Tergitol Based Decellularization Protocol Improves the Prerequisites for Pulmonary Xenografts: Characterization and Biocompatibility Assessment, Polymers

PubMed
649 Pitacco, P.; Sadowska, J. M.; O'Brien, F. J.; Kelly, D. J., 2023, 3D bioprinting of cartilaginous templates for large bone defect healing, Acta Biomaterialia

PubMed
650 Salinas, E. Y.; Otarola, G. A.; Kwon, H.; Wang, D.; Hu, J. C.; ..., 2023, Topographical Characterization of the Young, Healthy Human Femoral Medial Condyle, Cartilage

PubMed
651 Cheng, Q.; Zhang, L.; Zhang, J.; Zhou, X.; ..., 2023, Decellularized Scaffolds with Double‐Layer Aligned Microchannels Induce the Oriented Growth of Bladder Smooth Muscle Cells: Toward Urethral and Ureteral …, Advanced …

PubMed
652 Gujjar, S.; Venkataprasanna, K. S.; Tiwari, S.; Sharma, J. C.; ..., 2023, Stabilized human amniotic membrane for enhanced sustainability and biocompatibility, Process …

PubMed
653 Grant, R.; Davis, N. F.; Callanan, A., 2023, Methods in Cell-Stimulated Extracellular Matrix Production in Tissue Engineering, Handbook of the Extracellular Matrix …

PubMed
654 Garc鱈a-Garc鱈a, A.; Pigeot, S.; Martin, I., 2023, Engineering of immunoinstructive extracellular matrices for enhanced osteoinductivity, Bioactive Materials

PubMed
655 Rintz, E.; Podlacha, M.; Cyske, Z.; Pierzynowska, K.; ..., 2023, Activities of (poly) phenolic antioxidants and other natural autophagy modulators in the treatment of Sanfilippo disease: remarkable efficacy of resveratrol in …, …

PubMed
656 Garcテュa-Garcテュa, テ泥; Soury, M. El; Campos, F.; ..., 2023, Comprehensive ex vivo and in vivo preclinical evaluation of novel chemo enzymatic decellularized peripheral nerve allografts, 窶ヲ in Bioengineering and 窶ヲ

PubMed
657 Dai, W.; Liu, Q.; Li, S.; Gao, Y.; Feng, C.; Guo, L.; ..., 2023, Functional injectable hydrogel with spatiotemporal sequential release for recruitment of endogenous stem cells and in situ cartilage regeneration, Journal of Materials …

PubMed
658 Mah辿, C.; Pranomphon, T.; Reynaud, K.; Laffont, L.; ..., 2023, Sperm-fluid-cell interplays in the bovine oviduct: glycosaminoglycans modulate sperm binding to the isthmic reservoir, Scientific Reports

PubMed
659 Louisthelmy, R.; Burke, B. M.; Cornelison, R. C., 2023, Brain cancer cell-derived matrices and effects on astrocyte migration, Cells Tissues Organs

PubMed
660 Siquier-Dameto, G.; Boisnic, S.; Boadas-Vaello, P.; ..., 2023, Anti-Aging and Depigmentation Effect of a Hyaluronic Acid Mechanically Stabilized Complex on Human Skin Explants, Polymers

PubMed
661 Park, C.; Lee, O. H.; Park, J. J.; Yoo, J.; Kwon, E.; ..., 2023, Self-assembled adipose-derived mesenchymal stem cells as an extracellular matrix component-and growth factor-enriched filler, Frontiers in Cell and …

PubMed
662 Yamazaki, S.; Hirayama, R.; Ikeda, Y.; Iseki, S.; Yoda, T.; ..., 2023, Hyaluronic acid hydrogels support to generate integrated bone formation through endochondral ossification in vivo using mesenchymal stem cells, PLoS …

PubMed
663 Lato-Kariakin, E.; Ku添nik-Trocha, K.; Gruenpeter, A.; ..., 2023, Investigation of Glycosaminoglycans in Urine and Their Alteration in Patients with Juvenile Idiopathic Arthritis, Biomolecules

PubMed
664 Liu, L.; Yu, F.; Chen, L.; Xia, L.; Wu, C.; ..., 2023, Lithium‐containing biomaterials stimulate cartilage repair through bone marrow stromal cells‐derived exosomal miR‐455‐3p and histone H3 acetylation, Advanced Healthcare …

PubMed
665 Asadi‐Yousefabad, S. H.; Daneshi, S.; ..., 2023, Comparison of Sodium Lauryl Ether Sulfate and Sodium Dodecyl Sulfate in the Intestinal Decellularization of Rats Using a Histological Method and Confocal …, Journal of Kerman …

PubMed
666 Murata, K.; Kawabata, S.; Kojima, T.; Oka, Y.; Takasu, C.; ..., 2023, Biochemical reactions between intra-articular tissues and joint instability in a rat model of osteoarthritis, bioRxiv

PubMed
667 Capella-Monsonテュs, H.; Cramer, M.; Turner, N.; ..., 2023, The composition and mechanical properties of porcine placental ecm from three different breeds, Biomedical Physics 窶ヲ

PubMed
668 Castells-Sala, C.; Pテゥrez, M. L.; Lテウpez-Chicテウn, P.; ..., 2023, Development of a full-thickness acellular dermal graft from human skin: Case report of first patient rotator cuff patch augmentation repair, Transplant 窶ヲ

PubMed
669 Francテゥs-Herrero, E.; Lopez, R.; Campo, H.; ..., 2023, Advances of xenogeneic ovarian extracellular matrix hydrogels for in vitro follicle development and oocyte maturation, Biomaterials 窶ヲ

PubMed
670 Freise, C.; Zappe, A.; Lテカwa, N.; Schnorr, J.; Pagel, K.; ..., 2023, Uremic Toxin-Induced Exosome-like Extracellular Vesicles Contain Enhanced Levels of Sulfated Glycosaminoglycans which Facilitate the Interaction with 窶ヲ, International Journal of 窶ヲ

PubMed
671 Zheng, J.; Chen, H.; Lu, C.; Yoshitomi, T.; ..., 2023, 3D culture of bovine articular chondrocytes in viscous medium encapsulated in agarose hydrogels for investigation of viscosity influence on cell functions, Journal of Materials …

PubMed
672 Molinos, M.; Fiordalisi, M. F.; Caldeira, J.; Almeida, C. R.; ..., 2023, Alterations of bovine nucleus pulposus cells with aging, Aging …

PubMed
673 Mahbub, M. S. I.; Bae, S. H.; Gwon, J. G.; Lee, B. T., 2023, Decellularized liver extracellular matrix and thrombin loaded biodegradable TOCN/Chitosan nanocomposite for hemostasis and wound healing in rat liver …, International Journal of …

PubMed
674 Jin, Y. J.; Park, D. Y.; Noh, S.; Kwon, H. J.; Shin, D. I.; Park, J. H.; ..., 2023, Effects of glycosaminoglycan content in extracellular matrix of donor cartilage on the functional properties of osteochondral allografts evaluated by micro-CT …, Plos one

PubMed
675 Hatami-Marbini, H., 2023, On the mechanical roles of glycosaminoglycans in the tensile properties of porcine corneal stroma, Investigative Ophthalmology &Visual …

PubMed
676 KONO, M.; OSAGO, H.; KOBAYASHI-MIURA, M.; ..., 2023, Quantitative Analysis of Extracellular Matrix Changes: Glycosaminoglycans, Collagen, and Elastin in Degenerated Ligamentum Flavum in Lumbar Spinal Canal …, Shimane Journal of …

PubMed
677 Brownell, L. A.; Chu, M.; Hong, M. F.; Eu-Jin, H.; ..., 2023, Compositions and methods for joint health, US Patent App. 18 …

PubMed
678 Gurzeler, L. A.; Link, M.; Ibig, Y.; Schmidt, I.; Galuba, O.; ..., 2023, Drug-induced eRF1 degradation promotes readthrough and reveals a new branch of ribosome quality control, Cell reports

PubMed
679 Athanasiou, K. A.; Hu, J. C.; Kwon, H., 2023, Methods and systems for conserving highly expanded cells, US Patent 11,696,929

PubMed
680 Snyder, Y.; Jana, S., 2023, Electrospun Elastomeric Leaflet Substrates that Structurally and Mechanically Mimic Human Aortic Valve Leaflets, ACS Applied Polymer Materials

PubMed
681 Xu, S. M., 2023, Bioengineering Vascularized Porcine Free Flaps by Perfusion-Decellularization and Recellularization,

PubMed
682 DeKelver, R.; McIvor, R. S.; Ou, L.; Wechsler, T.; ..., 2023, Methods and compositions for the treatment of neurologic disease, US Patent App. 17 …

PubMed
683 Sevrain, L. C.; Verdier-Sevrain, S. Y., 2023, Methods and compositions for repair of cartilage using an in vivo bioreactor, US Patent 11,717,596

PubMed
684 Siurkus, J.; Peciura, R., 2023, Topical composition with active compounds from Cannabis sativa and Calendula officinalis for reduction of skin lesions, US Patent 11,813,301

PubMed
685 Moreira, A. M., 2023, Influence of ECM Dynamics on Gastric Cancer Stem-Like Properties,

PubMed
686 Sevrain, L. C.; Verdier-Sevrain, S. Y., 2023, Methods and compositions for repair of cartilage using an in vivo bioreactor, US Patent App. 18/333,662

PubMed
687 Philippe, V.; Jeannerat, A.; Peneveyre, C.; Jaccoud, S.; ..., 2023, Autologous and Allogeneic Cytotherapies for Large Knee (Osteo) Chondral Defects: Manufacturing Process Benchmarking and Parallel Functional …, Pharmaceutics

PubMed
688 Atsu, P. M. K., 2023, Development of a Xenograft for Annular Repair Using Pulsed Electric Field Exposures for Enhanced Decellularization,

PubMed
689 Griffiths, L. G.; Papalamprou, A., 2023, Solubilization of antigen components for removal from tissues, US Patent 11,596,711

PubMed
690 Tedeschi, A. M., 2023, Mesoangioblast promote regeneration of a stable and organised vasculature in a decellularised intestinal graft,

PubMed
691 Wilson, J. M.; Hinderer, C.; Hordeaux, J., 2023, Gene therapy for mucopolysaccharidosis iiib, US Patent 11,723,989

PubMed
692 Wilson, J. M.; Katz, N.; Hordeaux, J., 2023, Gene therapy for mucopolysaccharidosis IIIA, US Patent 11,555,206

PubMed
693 Badylak, S. F.; Freytes, D., 2023, Extracellular Matrix-Derived Gels and Related Methods, US Patent App. 17/692,530

PubMed
694 Bonetti, N. R.; Jouppila, A. S.; Saravi, S. S. S.; Cooley, B. C.; ..., 2023, Intravenously administered APAC, a dual AntiPlatelet AntiCoagulant, targets arterial injury site to inhibit platelet thrombus formation and tissue factor activity in …, Thrombosi

PubMed
695 Wilson, J. M.; Katz, N.; Hordeaux, J., 2023, Gene therapy for mucopolysaccharidosis iiia, US Patent App. 18/055,731

PubMed
696 Akbarzadeh, A.; Elmaleh, D.; ..., 2023, Novel fabrication of coronary based decellularized heart flaps to treat aneurysm following myocardial infarction, US Patent App. 17 …

PubMed
697 Pavan, M.; Fanti, C. D.; Lucia, A. Di; Canato, E.; ..., 2023, Aerosolized sulfated hyaluronan derivatives prolong the survival of K18 ACE2 mice infected with a lethal dose of SARS-CoV-2, European Journal of …

PubMed
698 Peranteau, W. H.; Bose, S.; White, B., 2023, In utero and postnatal gene editing and therapy for treatment of monogenic diseases, including mucopolysaccharidosis type 1h and other disorders, US Patent App. 18/006,975

PubMed
699 Kim, H. S.; Ha, H. S.; Kim, D. H.; Son, D. H.; Baek, S.; Park, J.; ..., 2023, O2 variant chip to simulate site-specific skeletogenesis from hypoxic bone marrow, Science …

PubMed
700 Gawri, R.; Lau, Y. K.; Lin, G.; Shetye, S. S.; Zhang, C.; ..., 2023, Dose-dependent effects of enzyme replacement therapy on skeletal disease progression in mucopolysaccharidosis VII dogs, … Therapy-Methods & …

PubMed
701 Hu, Y.; Xiong, Y.; Zhu, Y.; Zhou, F.; Liu, X.; ..., 2023, Copper-Epigallocatechin gallate enhances therapeutic effects of 3D-printed dermal scaffolds in mitigating diabetic wound scarring, … Applied Materials & …

PubMed
702 Naqvi, S.; Kim, S.; Hoskens, H.; Matthews, H. S.; Spritz, R. A.; ..., 2023, Precise modulation of transcription factor levels identifies features underlying dosage sensitivity, Nature …

PubMed
703 Shang, J.; Hines, S.; Makarczyk, M. J.; Lin, H.; Hogan, M. C. V.; ..., 2023, Influence of the Synthetic Cannabinoid Agonist on Normal and Inflamed Cartilage: An In Vitro Study, Biomolecules

PubMed
704 Wang, B.; Barcel坦, X.; Euw, S. Von; Kelly, D. J., 2023, 3D printing of mechanically functional meniscal tissue equivalents using high concentration extracellular matrix inks, Materials Today Bio

PubMed
705 Kusoglu, A.; Ornek, D.; Dansik, A.; Uzun, C.; Ozkan, S. N.; ..., 2023, Extracellular matrix sulfation in the tumor microenvironment stimulates cancer stemness and invasiveness, bioRxiv

PubMed
706 Fujiwara, Y.; Ding, C.; Sanada, Y.; Yimiti, D.; ..., 2023, miR-23a/b clusters are not essential for the pathogenesis of osteoarthritis in mouse aging and post-traumatic models, Frontiers in Cell and …

PubMed
707 Hargis, J. G.; Klitzke, K., 2023, Porcine Scaffolds and Methods of Preparation, US Patent App. 17/288,041

PubMed
708 Aytekin, E.; Vurat, M. T.; Elテァin, A. E.; ..., 2023, Decellularized Bone Matrix/45S5 Bioactive Glass Biocomposite Hydrogel窶殖ased Constructs with Angiogenic and Osteogenic Properties: Ex Ovo and Ex Vivo 窶ヲ, Macromolecular 窶ヲ

PubMed
709 Glorieux, L.; Vandooren, L.; Derclaye, S., 2023, Pyr dit Ruys, Int. J. Mol. Sci

PubMed
710 Kim, M. K.; Jeong, W.; Kang, H. W., 2023, Liver dECM窶敵elatin Composite Bioink for Precise 3D Printing of Highly Functional Liver Tissues, Journal of Functional Biomaterials

PubMed
711 Gusarova, V. D.; Smolov, M. A.; Lyagoskin, I. V.; Degterev, M. B.; ..., 2023, Characterization of a HIR-Fab-IDS, Novel Iduronate 2-Sulfatase Fusion Protein for the Treatment of Neuropathic Mucopolysaccharidosis Type II (Hunter Syndrome), BioDrugs

PubMed
712 Kim, J. J.; Park, J. Y.; Nguyen, V. V. T.; Bae, M.; ..., 2023, Pathophysiological reconstruction of a tissue‐specific multiple‐organ on‐a‐chip for Type 2 diabetes emulation using 3D cell printing, Advanced Functional …

PubMed
713 Athanasiou, K. A.; Hu, J. C.; Brown, W. E.; ..., 2023, Engineered neocartilage tissue compositions, US Patent App. 18 …

PubMed
714 Kasamkattil, J.; Gryadunova, A.; Schmid, R.; ..., 2023, Human 3D nucleus pulposus microtissue model to evaluate the potential of pre-conditioned nasal chondrocytes for the repair of degenerated intervertebral …, … in Bioengineering and …

PubMed
715 Klarmann, G. J.; Piroli, M. E.; Loverde, J. R.; Nelson, A. F.; Li, Z.; ..., 2023, 3D printing a universal knee meniscus using a custom collagen ink, Bioprinting

PubMed
716 Lim, K. M., 2023, Edible bird's nest extract and method of extraction, US Patent 11,672,833

PubMed
717 Glorieux, L.; Vandooren, L.; Derclaye, S.; ..., 2023, In-Depth Analysis of the Pancreatic Extracellular Matrix during Development for Next-Generation Tissue Engineering, International Journal of …

PubMed
718 Yu, T.; Ao, Q.; Ao, T.; Ahmad, M. A.; Wang, A.; ..., 2023, Preparation and assessment of an optimized multichannel acellular nerve allograft for peripheral nerve regeneration, Bioengineering & …

PubMed
719 Wandling, E. N., 2023, The Wound Healing and Antibacterial Properties of Mesenchymal Stromal Cell Extracellular Matrix Nanoparticles,

PubMed
720 Manon, J.; Evrard, R.; Fiev辿, L.; Bouzin, C.; Magnin, D.; ..., 2023, A new osteogenic membrane to enhance bone healing: at the crossroads between the periosteum, the induced membrane, and the diamond concept, Bioengineering

PubMed
721 Pugliese, E.; Sallent, I.; Ribeiro, S.; Trotier, A.; Korntner, S. H.; ..., 2023, Development of three-layer collagen scaffolds to spatially direct tissue-specific cell differentiation for enthesis repair, Materials Today Bio

PubMed
722 Huang, D.; Li, Y.; Ma, Z.; Lin, H.; Zhu, X.; Xiao, Y.; Zhang, X., 2023, Collagen hydrogel viscoelasticity regulates MSC chondrogenesis in a ROCK-dependent manner, Science advances

PubMed
723 Callan, K. T.; Otarola, G.; Brown, W. E.; Athanasiou, K. A.; ..., 2023, The longer-term effects of a single bupivacaine exposure on the mechanical properties of native cartilage explants, Cartilage

PubMed
724 Ahmed, K.; Rodboon, T.; Oo, Y.; Phan, T.; ..., 2023, Biofabrication, biochemical profiling, and in vitro applications of salivary gland decellularized matrices via magnetic bioassembly platforms, Cell and Tissue …

PubMed
725 Joyce, M.; Hodgkinson, T.; Lemoine, M.; ..., 2023, Development of a 3D-printed bioabsorbable composite scaffold with mechanical properties suitable for treating large, load-bearingarticular cartilage defects,

PubMed
726 Kojima, H.; Kushige, H.; Yagi, H.; Nishijima, T.; ..., 2023, Combinational Treatment Involving Decellularized Extracellular Matrix Hydrogels With Mesenchymal Stem Cells Increased the Efficacy of Cell Therapy in Pancreatitis, Cell …

PubMed
727 Yuan, S.; Yang, X.; Wang, X.; Chen, J.; Tian, W.; ..., 2023, Injectable Xenogeneic Dental Pulp Decellularized Extracellular Matrix Hydrogel Promotes Functional Dental Pulp Regeneration, International Journal of …

PubMed
728 Sensi, F.; D'angelo, E.; Biccari, A.; Marangio, A.; ..., 2023, Establishment of a human 3D pancreatic adenocarcinoma model based on a patient-derived extracellular matrix scaffold, Translational …

PubMed
729 Wan, J.; Wu, T.; Wang, K.; Xia, K.; Yin, L.; ..., 2023, Polydopamine-modified decellularized intestinal scaffolds loaded with adipose-derived stem cells promote intestinal regeneration, Journal of Materials …

PubMed
730 Sorrentino, N. C.; Presa, M.; Attanasio, S.; ..., 2023, New mouse models with hypomorphic SUMF1 variants mimic attenuated forms of multiple sulfatase deficiency, Journal of inherited …

PubMed
731 Castillo, V.; D鱈az-Astudillo, P.; Corrales-Orovio, R.; ..., 2023, Comprehensive characterization of tissues derived from animals at different regenerative stages: a comparative analysis between fetal and adult mouse skin, Cells

PubMed
732 Rougier, G.; Maistriaux, L.; Fievテゥ, L.; Xhema, D.; ..., 2023, Decellularized vascularized bone grafts: A preliminary in vitro porcine model for bioengineered transplantable bone shafts, 窶ヲ in Bioengineering and 窶ヲ

PubMed
733 Fang, C. H.; Lin, Y. W.; Sun, C. K.; Sun, J. S., 2023, Small-Molecule Loaded Biomimetic Biphasic Scaffold for Osteochondral Regeneration: An In Vitro and In Vivo Study, Bioengineering

PubMed
734 McDonnell, E. E.; Wilson, N.; Barcellona, M. N.; Nテゥill, T. Nテュ; ..., 2023, Preclinical to clinical translation for intervertebral disc repair: Effects of species窶尽pecific scale, metabolism, and matrix synthesis rates on cell窶臣ased regeneration, JOR 窶ヲ

PubMed
735 Cho, A. Y.; Lee, H. J., 2023, Investigating the Impact of Mechanical Properties and Cell-Collagen Interaction on NIH3T3 Function: A Comparative Study on Different Substrates and …, Gels

PubMed
736 Tienderen, GS van; Beek, MEA van; Schurink, I. J.; ..., 2023, Modelling metastatic colonization of cholangiocarcinoma organoids in decellularized lung and lymph nodes, Frontiers in …

PubMed
737 Noh, S.; Jin, Y. J.; Shin, D. I.; Kwon, H. J.; ..., 2023, Selective Extracellular Matrix Guided Mesenchymal Stem Cell Self‐Aggregate Engineering for Replication of Meniscal Zonal Tissue Gradient in a Porcine …, Advanced …

PubMed
738 Bhattacharjee, P.; Madden, P. W.; Patriarca, E.; ..., 2023, Optimization and evaluation of oxygen-plasma-modified, aligned, poly (Є-caprolactone) and silk fibroin nanofibrous scaffold for corneal stromal regeneration, Biomaterials and …

PubMed
739 Takaoka, Y.; Fujibayashi, S.; Yabutsuka, T.; Yamane, Y.; ..., 2023, Synergistic effect of sulfonation followed by precipitation of amorphous calcium phosphate on the bone-bonding strength of carbon fiber reinforced …, Scientific Reports

PubMed
740 O'Shea, D. G.; Hodgkinson, T.; Curtin, C. M.; ..., 2023, An injectable and 3D printable pro-chondrogenic hyaluronic acid and collagen type II composite hydrogel for the repair of articular cartilage defects, Biofabrication

PubMed
741 Burdis, R.; Kronemberger, G. S.; Kelly, D. J., 2023, Engineering High-Quality Cartilage Microtissues Using Hydrocortisone Functionalized Microwells, Tissue Engineering Part C …

PubMed
742 Empere, M.; Wang, X.; Prein, C.; Aspberg, A.; ..., 2023, Aggrecan governs intervertebral discs development by providing critical mechanical cues of the extracellular matrix, … in bioengineering and …

PubMed
743 Fang, W.; Yang, M.; Jin, Y.; Zhang, K.; Wang, Y.; Liu, M.; ..., 2023, Injectable Decellularized Extracellular Matrix-Based Bio-Ink with Excellent Biocompatibility for Scarless Urethra Repair, Gels

PubMed
744 Kuナ殪ト殕u, A.; Yangトアn, K.; テ奔kan, S. N.; ..., 2023, Different decellularization methods in bovine lung tissue reveals distinct biochemical composition, stiffness, and viscoelasticity in reconstituted hydrogels, ACS Applied Bio 窶ヲ

PubMed
745 Vurat, M. T.; Parmaksiz, M.; Elテァin, A. E.; ..., 2023, Bioactive composite hydrogels as 3D mesenchymal stem cell encapsulation environment for bone tissue engineering: In vitro and in vivo studies, Journal of Biomedical 窶ヲ

PubMed
746 Bhattacharyya, S.; Tobacman, J. K., 2023, Increased Cerebral Serum Amyloid A2 and Parameters of Oxidation in Arylsulfatase B (N-Acetylgalactosamine-4-Sulfatase)-Null Mice, Journal of Alzheimer's …

PubMed
747 Bahrami, S.; Mirzadeh, H.; Solouk, A.; ..., 2023, Bioinspired scaffolds based on aligned polyurethane nanofibers mimic tendon and ligament fascicles, Biotechnology …

PubMed
748 Kim, W. J.; Kim, G. H., 2023, Bioprinting 3D muscle tissue supplemented with endothelial-spheroids for neuromuscular junction model, Applied Physics Reviews

PubMed
749 Moura, S. R.; Freitas, J.; Ribeiro-Machado, C.; ..., 2023, Long non-coding RNA H19 regulates matrisome signature and impacts cell behavior on MSC-engineered extracellular matrices, Stem Cell Research & …

PubMed
750 Su, J.; Jin, X.; She, K.; Liu, Y.; Song, L.; Zhao, Q.; Xiao, J.; ..., 2023, In vivo adenine base editing corrects newborn murine model of Hurler syndrome, Molecular …

PubMed
751 Palanki, R.; Bose, S. K.; Dave, A.; White, B. M.; Berkowitz, C.; ..., 2023, Ionizable lipid nanoparticles for therapeutic base editing of congenital brain disease, ACS …

PubMed
752 Brown, W. E.; Lavernia, L.; Bielajew, B. J.; Hu, J. C.; ..., 2023, Human nasal cartilage: Functional properties and structure-function relationships for the development of tissue engineering design criteria, Acta Biomaterialia

PubMed
753 Podetz-Pedersen, K. M.; Laoharawee, K.; Singh, S.; ..., 2023, Neurologic Recovery in MPS i and MPS II Mice by AAV9-Mediated Gene Transfer to the CNS after the Development of Cognitive Dysfunction, Human gene …

PubMed
754 Dechテェne, L.; Colin, M.; Demazy, C.; Fransolet, M.; ..., 2023, Characterization of the proteins secreted by equine muscle-derived mesenchymal stem cells exposed to cartilage explants in osteoarthritis model, Stem Cell Reviews and 窶ヲ

PubMed
755 Sun, F.; Shen, Z.; Zhang, B.; Lu, Y.; Shan, Y.; ..., 2023, Biomimetic in situ tracheal microvascularization for segmental tracheal reconstruction in one‐step, Bioengineering & …

PubMed
756 Arin, A.; Rahaman, M. S.; Farwa, U.; ..., 2023, Faster and protective wound healing mechanistic of para‐coumaric acid loaded liver ECM scaffold cross‐linked with acellular marine kelp, Advanced Functional …

PubMed
757 Yagi, M.; Endo, K.; Komori, K.; Sekiya, I., 2023, Comparison of the effects of oxidative and inflammatory stresses on rat chondrocyte senescence, Scientific Reports

PubMed
758 Bhattacharyya, S.; Tobacman, J. K., 2023, Increased Cerebral Serum Amyloid A2 and Parameters of Oxidation in Arylsulfatase B (N-Acetylgalactosamine-4-Sulfatase)-Null Mice, bioRxiv

PubMed
759 Zhang, D.; Lai, L.; Fu, H.; Fu, Q.; Chen, M., 2023, 3D-bioprinted biomimetic multilayer implants comprising microfragmented adipose extracellular matrix and cells improve wound healing in a murine model of full …, ACS Applied Materials & …

PubMed
760 Prithiviraj, S.; Garcia, A. G.; Linderfalk, K.; Yiguang, B.; ..., 2023, Compositional editing of extracellular matrices by CRISPR/Cas9 engineering of human mesenchymal stem cell lines, bioRxiv

PubMed
761 Lin, C. Y. J.; Gruber, S.; Whitlock, P. W.; Ghosh, P., 2023, Microspheres containing decellularized donor tissue and their use in fabricating polymeric structures, US Patent 11,712,496

PubMed
762 Salti, H.; Kramer, L.; Nelz, S. C.; Lorenz, M.; ..., 2023, Decellularization of precision-cut kidney slices—Application of physical and chemical methods, Biomedical …

PubMed
763 Delcroix, G. J. R.; Hackett, A.; Schiller, P. C.; ..., 2023, Characterization of three washing/decellularization procedures for the production of bioactive human micronized neural tissue (hMINT), Cell and Tissue Banking

PubMed
764 Sorhun, D. Turan; Kuナ殪ト殕u, A.; テ奔tテシrk, E., 2023, Developing Bovine Brain-Derived Extracellular Matrix Hydrogels: a Screen of Decellularization Methods for Their Impact on Biochemical and Mechanical Properties, ACS omega

PubMed
765 ナサabiナгka, M.; Gaffke, L.; Bielaナгka, P.; Podlacha, M.; ..., 2023, Decreased levels of chaperones in mucopolysaccharidoses and their elevation as a putative auxiliary therapeutic approach, Pharmaceutics

PubMed
766 Cao, H.; Li, Z.; Chen, Y.; Zhu, J.; Chen, M.; Lei, H.; ..., 2023, Viscoelasticity microenvironment constructed by self-crosslinking hyaluronan hybrid hydrogels regulates chondrogenic differentiation of mesenchymal stem …, Composites Part B …

PubMed
767 Dai, P.; Zou, T.; Zhao, W.; Lv, Y.; Gao, D.; Ruan, C.; ..., 2023, Short-term transplantation effect of a tissue-engineered meniscus constructed using drilled allogeneic acellular meniscus and BMSCs, Frontiers in Veterinary …

PubMed
768 Gu, J.; Wang, B.; Wang, T.; Zhang, N.; Liu, H.; ..., 2023, Effects of cartilage progenitor cells, bone marrow mesenchymal stem cells and chondrocytes on cartilage repair as seed cells: an in vitro study, Drug Design …

PubMed
769 Guo, H.; Li, Y.; Qiu, L.; Li, J.; Guo, X.; Zhang, Y.; Wang, J., 2023, Gua Lou Er Chen decoction attenuates atherosclerosis by reducing proteoglycans accumulation and inflammation, Phytomedicine

PubMed
770 Jianying, M. A. O.; Wenjing, Y.; He, G. U. O.; Ruili, D.; ..., 2023, A cervical cancer tissue-derived decellularized extracellular matrix scaffold for cervical cancer tissue reconstruction in vitro, Journal of Southern …

PubMed
771 Fackler, N. P.; Donahue, R. P.; Bielajew, B. J.; ..., 2023, Characterization of the Age-Related Differences in Porcine Acetabulum and Femoral Head Articular Cartilage, Cartilage

PubMed
772 Smith, M. C.; Belur, L. R.; Karlen, A. D.; ..., 2023, Generation and characterization of an immunodeficient mouse model of mucopolysaccharidosis type II, Molecular genetics and …

PubMed
773 Hausmanns, S.; Frech, H. U.; Oesser, S.; ..., 2023, Recombinant production of a collagen peptide preparation and use thereof, US Patent 11,673,940

PubMed
774 Weiテ歹nberger, M.; Wagenbrenner, M.; Nickel, J.; ..., 2023, Comparative in vitro treatment of mesenchymal stromal cells with GDF-5 and R57A induces chondrogenic differentiation while limiting chondrogenic 窶ヲ, Journal of Experimental 窶ヲ

PubMed
775 Brito, MM de; Bundeleva, I.; Marin, F.; ..., 2023, Properties of exopolymeric substances (EPS) produced during cyanobacterial growth: potential role in whiting events, Biogeosciences …

PubMed
776 Garcテュa, テ泥 Garcテュa, 2023, Generaciテウn y evaluaciテウn in vivo de modelos bioartificiales de nervio perifテゥrico descelularizado de estructura y visco-elasticidad controladas,

PubMed
777 Hanetseder, D.; Schaedl, B.; Redl, H.; ..., 2023, Extracellular matrix from hiPSC-mesenchymal progenitors modulates the three-lineage differentiation of human bone marrow stromal cells, European cells & …

PubMed
778 Tom叩s, C. Vicente, 2023, Desarrollo de un modelo de enfermedad para el mieloma m炭ltiple: estudio de la adhesi坦n entre c辿lulas tumorales y c辿lulas madre mesenquimales,

PubMed
779 Calle, E.; Niklason, L. E.; Petersen, T.; ..., 2023, Tissue engineering of lung, US Patent App. 18/190,551

PubMed
780 Orlando, G.; Soker, S., 2023, Organ/tissue decellularization, framework maintenance and recellularization, US Patent App. 18/170,669

PubMed
781 Jia, Q.; Ping, J.; Yimam, M.; Horm, T., 2023, Compositions and Methods for Managing or Improving Bone Disorders, Joint Disorders, Cartilage Disorders, or a Combination Thereof, US Patent App. 18/084,009

PubMed
782 Calle, E.; Niklason, L. E.; Petersen, T.; Gui, L., 2023, Tissue engineering of lung, US Patent 11,648,280

PubMed
783 Orlando, G.; Soker, S., 2023, Organ/tissue decellularization, framework maintenance and recellularization, US Patent 11,648,335

PubMed
784 Snyder, Y.; Jana, S., 2023, Elastomeric Trilayer Substrates with Native-like Mechanical Properties for Heart Valve Leaflet Tissue Engineering, ACS Biomaterials Science &Engineering

PubMed
785 Esquembre, C. Segu鱈, 2024, Dise単o de hidrogeles de 叩cido hialur坦nico injertados con mol辿culas condroprotectoras,

PubMed
786 Scalzone, A.; Sanjurjo-Rodr鱈guez, C.; ..., 2024, Functional and Molecular Analysis of Human Osteoarthritic Chondrocytes Treated with Bone Marrow-Derived MSC-EVs, Bioengineering

PubMed
787 Weber, P.; Asadikorayem, M.; Surman, F.; ..., 2024, Zwitterionic polymer-dexamethasone conjugates penetrate and protect cartilage from inflammation, Materials Today Bio

PubMed
788 Elder, S. H.; Ross, M. K.; Nicaise, A. J.; Miller, I. N.; ..., 2024, Development of in situ forming implants for controlled delivery of punicalagin, International Journal of …

PubMed
789 Luo, N.; Huang, Q.; Dong, L.; Liu, W.; Song, J.; Sun, H.; ..., 2024, Near-cognate tRNAs increase the efficiency and precision of pseudouridine-mediated readthrough of premature termination codons, Nature …

PubMed
790 Huang, S.; Rao, Y.; Ju, A. L.; Blocki, A. M.; Wang, D. M.; ..., 2024, Non-collagenous proteins, rather than the collagens, are key biochemical factors that mediate tenogenic bioactivity of tendon extracellular matrix, Acta Biomaterialia

PubMed
791 Evrard, R.; Manon, J.; Maistriaux, L.; Rafferty, C.; ..., 2024, Decellularization of Massive Bone Allografts By Perfusion: A New Protocol for Tissue Engineering, … Engineering Part A

PubMed
792 Baysan, G.; Yilmaz, P. A.; Albayrak, A. Z.; Havitcioglu, H., 2024, Loofah and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) nano-fiber-reinforced chitosan hydrogel composite scaffolds with elderberry (Sambucus nigra) and …, Polymer Bulletin

PubMed
793 Maistriaux, L.; Foulon, V.; Fievテゥ, L.; Xhema, D.; ..., 2024, Reconstruction of the human nipple窶殿reolar complex: a tissue engineering approach, 窶ヲ in Bioengineering and 窶ヲ

PubMed
794 Wang, Q.; Shao, G.; Zhao, X.; Wong, H. H.; Chin, K.; ..., 2024, Dysregulated fibrinolysis and plasmin activation promote the pathogenesis of osteoarthritis, JCI …

PubMed
795 Bhattacharyya, S.; Insug, O.; Tobacman, J. K., 2024, N-Acetylgalactosamine-4-Sulfatase (Arylsulfatase B) Regulates PD-L1 Expression in Melanoma by an HDAC3-Mediated Epigenetic Mechanism,

PubMed
796 Zhao, C.; Li, X.; Han, X.; Li, Z.; Bian, S.; Zeng, W.; ..., 2024, Molecular co-assembled strategy tuning protein conformation for cartilage regeneration, Nature …

PubMed
797 Sun, L.; Jin, Y.; Nishio, M.; Watanabe, M.; ..., 2024, Oxidative phosphorylation is a pivotal therapeutic target of fibrodysplasia ossificans progressiva, Life Science …

PubMed
798 Fern叩ndez-Moreno, M.; Hermida-G坦mez, T.; Larkins, N.; ..., 2024, Anti-Inflammatory Activity of APPA (Apocynin and Paeonol) in Human Articular Chondrocytes, Pharmaceuticals

PubMed
799 Jiang, T.; Li, B.; Yongfeng, R. A. N.; Yan, J.; ..., 2024, Preparation method for decellularized matrix biomaterial, US Patent App. 18 …

PubMed
800 Gujjar, S.; Tyagi, A.; Sainger, S.; Bharti, P.; Nain, V.; ..., 2024, Biocompatible Human Placental Extracellular Matrix Derived Hydrogels, Advanced …

PubMed
801 D旦nges, L.; Damle, A.; Mainardi, A.; Bock, T.; ..., 2024, Engineered human osteoarthritic cartilage organoids, Biomaterials

PubMed
802 Kopinski-Gr端nwald, O.; Guillaume, O.; Ferner, T.; Sch辰dl, B.; ..., 2024, Scaffolded spheroids as building blocks for bottom-up cartilage tissue engineering show enhanced bioassembly dynamics, Acta Biomaterialia

PubMed
803 Jin, H.; Kang, Y.; Gao, H.; Lin, Z.; Huang, D.; ..., 2024, Decellularization‐Based Modification Strategy for Bioactive Xenografts Promoting Tendon Repair, Advanced …

PubMed
804 Kleine, A.; K端hle, M.; Ly, T. D.; Schmidt, V.; Faust-Hinse, I.; ..., 2024, Xylosyltransferase-Deficiency in Human Dermal Fibroblasts Induces Compensatory Myofibroblast Differentiation and Long-Term ECM Reduction, Biomedicines

PubMed
805 Ishizaki, Y.; Wang, J.; Kim, J.; Matsumoto, T.; Maeda, E., 2024, Contributions of collagen and elastin to elastic behaviours of tendon fascicle, Acta Biomaterialia

PubMed
806 Xu, M. S.; D'Elia, A.; Hadzimustafic, N.; Adil, A.; Karoubi, G.; ..., 2024, Bioengineering of vascularized porcine flaps using perfusion-recellularization, Scientific Reports

PubMed
807 Noh, S.; Lee, S. J.; Yoo, J. J.; Jin, Y. J.; Yun, H. W.; Min, B. H.; ..., 2024, Synovium-Derived Mesenchymal Stem Cell-Based Scaffold-Free Fibrocartilage Engineering for Bone窶典endon Interface Healing in an Anterior Cruciate Ligament 窶ヲ, Tissue Engineering

PubMed
808 Malinowska, M.; Nowicka, W.; Kloska, A.; ..., 2024, Efficacy of a combination therapy with laronidase and genistein in treating mucopolysaccharidosis type I in a mouse model, International Journal of …

PubMed
809 Terrie, L.; Philips, C.; Muylle, E.; Weisrock, A.; ..., 2024, Decellularized tissue exhibits large differences of extracellular matrix properties dependent on decellularization method: novel insights from a standardized …, …

PubMed
810 Ma, T.; Ren, D.; Wang, J.; Fu, F.; Sun, W. Q.; ..., 2024, Enhanced osteogenicity of the demineralized bone‐dermal matrix composite by the optimal partial demineralization for sustained release of bioactive molecules, Journal of Biomedical …

PubMed
811 Seo, J. W.; Jo, S. H.; Kim, S. H.; Choi, B. H.; Cho, H.; ..., 2024, Application of Cartilage Extracellular Matrix to Enhance Therapeutic Efficacy of Methotrexate, Tissue Engineering and …

PubMed
812 Makhija, E.; Zheng, Y.; Wang, J.; Leong, H. R.; Othman, R. B.; ..., 2024, Topological defects in self-assembled patterns of mesenchymal stromal cells in vitro are predictive attributes of condensation and chondrogenesis, Plos one

PubMed
813 Monteiro, M. V.; Henriques‐Pereira, M.; ..., 2024, Photo‐Compartmentalized Decellularized Matrix‐Hyaluronan Hybrid Units for Pancreatic Tumor‐Stroma Modeling, Advanced Functional …

PubMed
814 Loverde, J. R.; Piroli, M. E.; Gilchrist, K. H.; Barnhill, J.; ..., 2024, Compression cycling of 3D-printed meniscal tissues in vitro using a custom bioreactor, Bioprinting

PubMed
815 Kim, W. J.; Kim, G. H., 2024, Engineered 3D liver-tissue model with minispheroids formed by a bioprinting process supported with in situ electrical stimulation, Bioactive Materials

PubMed
816 Yang, Z.; Wu, Y.; Neo, S. H.; Yang, D.; ..., 2024, Size-Based Microfluidic-Enriched Mesenchymal Stem Cell Subpopulations Enhance Articular Cartilage Repair, … American Journal of …

PubMed
817 Zhang, X.; Zhan, X.; Cheng, H.; Dong, Z.; Hu, C.; Liu, C.; ..., 2024, Cartilage-like protein-polysaccharide hybrid hydrogel for enhancing chondrogenic differentiation of bone marrow mesenchymal stem cells, Collagen and …

PubMed
818 Abusharkh, H. A.; Robertson, T.; ..., 2024, Impact of interstitial flow on cartilage matrix synthesis and NF‐kB transcription factor mRNA expression in a novel perfusion bioreactor, Biotechnology …

PubMed
819 Moslehyazdi, M.; Bielajew, B.; ..., 2024, Detrimental Effects of Chlorhexidine on Articular Cartilage Viability, Matrix, and Mechanics, … American Journal of …

PubMed
820 Lin, C. Y. J.; Gruber, S.; Whitlock, P. W.; ..., 2024, Microspheres Containing Decellularized Donor Tissue and Their Use in Fabricating Polymeric Structures, US Patent App. 18 …

PubMed
821 Donsante, S.; Pievani, A.; Palmisano, B.; Finamore, M.; ..., 2024, Modeling skeletal dysplasia in Hurler syndrome using patient-derived bone marrow osteoprogenitor cells, JCI insight

PubMed
822 Chen, L. M.; Beck, P.; Ede, J. van; Pronk, M.; ..., 2024, Anionic extracellular polymeric substances extracted from seawater-adapted aerobic granular sludge, Applied Microbiology …

PubMed
823 Vettese, J.; Manon, J.; Chretien, A.; Evrard, R.; ..., 2024, Collagen molecular organization preservation in human fascia lata and periosteum after tissue engineering, … in bioengineering and …

PubMed
824 Santinha, D.; Vilaテァa, A.; Estronca, L.; Schテシler, S. C.; ..., 2024, Remodeling of the Cardiac Extracellular Matrix Proteome During Chronological and Pathological Aging, Molecular &Cellular 窶ヲ

PubMed
825 Seki, Y.; Ohkuma, R. C.; Miyakawa, Y.; ..., 2024, Hyaluronan and chondroitin sulfate in chicken窶砺egetable bone broth delay osteoporosis progression, Journal of Food 窶ヲ

PubMed
826 Yu, P.; Duan, L.; Yan, Z.; Li, J.; Cai, D. Z., 2024, RADA-16-based self-assembled peptide nanofiber scaffolds loaded with TGF-β1 enhance the chondrogenic differentiation potential of BMSCs in vitro, Current Stem Cell Research …

PubMed
827 Barcellona, M. N.; Nテゥill, T. Nテュ; O'Brien, F. J.; ..., 2024, Modulation of Inflammation and Regeneration in the Intervertebral Disc Using Enhanced Cell窶娠enetrating Peptides for MicroRNA Delivery, Advanced 窶ヲ

PubMed
828 Im, P.; Shin, H.; Kim, J., 2024, Tilapia-Derived Granular Hydrogel as a 3D Scaffold Promoting Rapid Wound Healing, Biomacromolecules

PubMed
829 Feng, J.; Fu, S.; Luan, J., 2024, Harnessing fine fibers in decellularized adipose-derived matrix for enhanced adipose regeneration, Materials Today Bio

PubMed
830 Jiang, Z.; Clausen, J. D.; Jahn, D.; Wulsten, D.; ..., 2024, Ex vivo storage of human osteochondral allografts: Long‐term analysis over 300 days using a Ringer‐based solution, Journal of …

PubMed
831 Joyce, M.; Hodgkinson, T.; Intini, C.; Dixon, J. E.; ..., 2024, Gene activated reinforced scaffolds for SOX9 delivery to enhance repair of large load bearing articular cartilage defects, European Cells and …

PubMed
832 Tejeda-Mora, H.; Hartog, Y. den; Schurink, I. J.; ..., 2024, Endothelial Cell Replacement of Human Veins, Modeling Vascular Repair and Endothelial Cell Chimerism, Stem Cells and …

PubMed
833 Zakour, KEWB; Kaya, S.; Matros, J. C.; Hacker, M. C.; ..., 2024, Enhancement of lacrimal gland cell function by decellularized lacrimal gland derived hydrogel, …

PubMed
834 Gaspar-Pintiliescu, A.; Stefan, L. M.; Mihai, E.; Sanda, C.; ..., 2024, Antioxidant and antiproliferative effect of a glycosaminoglycan extract from Rapana venosa marine snail, Plos one

PubMed
835 Bhattacharyya, S.; Tobacman, J. K., 2024, SARS-CoV-2 spike protein-ACE2 interaction increases carbohydrate sulfotransferases and reduces N-acetylgalactosamine-4-sulfatase by p38 MAPK, Signal Transduction and Targeted …

PubMed
836 Quinteira, R.; Gimondi, S.; Monteiro, N. O.; ..., 2024, Decellularized Kidney Extracellular Matrix-Based Hydrogels for Renal Tissue Engineering, Acta Biomaterialia

PubMed
837 Bhattacharyya, S.; Insug, O.; Tu, J.; Chen, Z.; ..., 2024, Exogenous recombinant N-acetylgalactosamine-4-sulfatase (Arylsulfatase B; ARSB) inhibits progression of B16F10 cutaneous melanomas and modulates …, … et Biophysica Acta (BBA …

PubMed
838 Chen, J. G.; Zhang, E. C.; Wan, Y. Y.; Huang, T. Y.; ..., 2024, Engineered hsa‐miR‐455‐3p‐Abundant Extracellular Vesicles Derived from Three‐Dimensional‐Cultured Adipose Mesenchymal Stem Cells for Tissue‐engineering …, Advanced …

PubMed
839 Garcテュa-Gareta, E.; Calderテウn-Villalba, A.; ..., 2024, Physico-chemical characterization of the tumour microenvironment of pancreatic ductal adenocarcinoma, European Journal of 窶ヲ

PubMed
840 Rashidi, F.; Mohammadzadeh, M.; ..., 2024, Acellular carotid scaffold and evaluation the biological and biomechanical properties for tissue engineering, … of Cardiovascular and …

PubMed
841 Kasturi, M.; Vasanthan, K. S., 2024, Harvesting decellularized liver extracellular matrix from rodents for 3D scaffold fabrication, Artificial Cells, Nanomedicine, and …

PubMed
  • No.: 1
  • 文献情報:
    Agrawal, Parinita, and Krishna Pramanik. 2019. “Enhanced Chondrogenic Differentiation of Human Mesenchymal Stem Cells in Silk Fibroin/Chitosan/Glycosaminoglycan Scaffolds under Dynamic Culture Condition.” Differentiation 110: 36–48.

  • 備考:
  • 参照:
    PubMed
  • No.: 2
  • 文献情報:
    Ahmed, Ebtehal et al. 2019. “Micro and Ultrastructural Changes Monitoring during Decellularization for the Generation of a Biocompatible Liver.” Journal of Bioscience and Bioengineering 128(2): 218–25.

  • 備考:
  • 参照:
    PubMed
  • No.: 3
  • 文献情報:
    Akbarzadeh, Aram et al. 2019. “Preparation and Characterization of Human Size Whole Heart for Organ Engineering: Scaffold Microangiographic Imaging.” Regenerative Medicine 14(10): 939–54.

  • 備考:
  • 参照:
    PubMed
  • No.: 4
  • 文献情報:
    Aoki, Fabio G. et al. 2019. “De-Epithelialization of Porcine Tracheal Allografts as an Approach for Tracheal Tissue Engineering.” Scientific Reports 9(1).

  • 備考:
  • 参照:
    PubMed
  • No.: 5
  • 文献情報:
    Baek, Jihye, Martin K. Lotz, and Darryl D. D’Lima. 2019. “Core–Shell Nanofibrous Scaffolds for Repair of Meniscus Tears.” Tissue Engineering Part A: ten.tea.2018.0319.

  • 備考:
  • 参照:
    PubMed
  • No.: 6
  • 文献情報:
    Bai, Ming et al. 2019. “MiR-182-5p Overexpression Inhibits Chondrogenesis by down- Regulating PTHLH.” Cell Biology International 43(3): 222–32.

  • 備考:
  • 参照:
    PubMed
  • No.: 7
  • 文献情報:
    Bhattacharjee, Promita, Julia Fernández-Pérez, and Mark Ahearne. 2019. “Potential for Combined Delivery of Riboflavin and All-Trans Retinoic Acid, from Silk Fibroin for Corneal Bioengineering.” Materials Science and Engineering C 105.

  • 備考:
  • 参照:
    PubMed
  • No.: 8
  • 文献情報:
    Browe, David C. et al. 2019. “Glyoxal Cross-Linking of Solubilized Extracellular Matrix to Produce Highly Porous, Elastic, and Chondro-Permissive Scaffolds for Orthopedic Tissue Engineering.” Journal of Biomedical Materials Research - Part A 107(10): 2222

  • 備考:
  • 参照:
    PubMed
  • No.: 9
  • 文献情報:
    Brown, Wendy E., Grayson D. DuRaine, Jerry C. Hu, and Kyriacos A. Athanasiou. 2019. “Structure-Function Relationships of Fetal Ovine Articular Cartilage.” Acta Biomaterialia 87: 235–44.

  • 備考:
  • 参照:
    PubMed
  • No.: 10
  • 文献情報:
    Cai, Hanxu et al. 2019. “A Col I and BCP Ceramic Bi-Layer Scaffold Implant Promotes Regeneration in Osteochondral Defects.” RSC Advances 9(7): 3740–48.

  • 備考:
  • 参照:
    PubMed
  • No.: 11
  • 文献情報:
    Cao, Wanxu et al. 2019. “Dynamic Mechanical Loading Facilitated Chondrogenic Differentiation of Rabbit BMSCs in Collagen Scaffolds.” Regenerative Biomaterials 6(2): 99–106.

  • 備考:
  • 参照:
    PubMed
  • No.: 12
  • 文献情報:
    Chai, Y. et al. 2019. “Evaluation of Decellularization Protocols for Production of Porcine Small Intestine Submucosa for Use in Abdominal Wall Reconstruction.” Hernia.

  • 備考:
  • 参照:
    PubMed
  • No.: 13
  • 文献情報:
    Chen, Huanhuan Joyce, and Michael L. Shuler. 2019. “Engineering a Bioartificial Human Colon Model Through Decellularization and Recellularization.” In Methods in Molecular Biology, , 91–102.

  • 備考:
  • 参照:
    PubMed
  • No.: 14
  • 文献情報:
    Chen, Liyang, Gejun Liu, Wenjun Li, and Xing Wu. 2019. “Sonic Hedgehog Promotes Chondrogenesis of Rabbit Bone Marrow Stem Cells in a Rotary Cell Culture System.” BMC Developmental Biology 19(1): 18.

  • 備考:
  • 参照:
    PubMed
  • No.: 15
  • 文献情報:
    Chijimatsu, Ryota et al. 2019. “Effect of the Small Compound TD-198946 on Glycosaminoglycan Synthesis and Transforming Growth Factor Β3-Associated Chondrogenesis of Human Synovium-Derived Stem Cells in Vitro.” Journal of Tissue Engineering and Regenerativ

  • 備考:
  • 参照:
    PubMed
  • No.: 16
  • 文献情報:
    Choi, Doo Jin et al. 2019. “Cartilage Protective and Anti-Analgesic Effects of ALM16 on Monosodium Iodoacetate Induced Osteoarthritis in Rats.” BMC Complementary and Alternative Medicine 19(1): 325.

  • 備考:
  • 参照:
    PubMed
  • No.: 17
  • 文献情報:
    Curley, Clive J. et al. 2019. “An Injectable Alginate/Extra Cellular Matrix (ECM) Hydrogel towards Acellular Treatment of Heart Failure.” Drug Delivery and Translational Research 9(1): 1–13.

  • 備考:
  • 参照:
    PubMed
  • No.: 18
  • 文献情報:
    Daly, Andrew C., and Daniel J. Kelly. 2019. “Biofabrication of Spatially Organised Tissues by Directing the Growth of Cellular Spheroids within 3D Printed Polymeric Microchambers.” Biomaterials 197: 194–206.

  • 備考:
  • 参照:
    PubMed
  • No.: 19
  • 文献情報:
    Deng, Yuhao et al. 2019. “Enhancing Chondrogenesis and Mechanical Strength Retention in Physiologically Relevant Hydrogels with Incorporation of Hyaluronic Acid and Direct Loading of TGF-β.” Acta Biomaterialia 83: 167–76.

  • 備考:
  • 参照:
    PubMed
  • No.: 20
  • 文献情報:
    Endo, Kentaro, Naoki Fujita, Takayuki Nakagawa, and Ryohei Nishimura. 2019. “Effect of Fibroblast Growth Factor-2 and Serum on Canine Mesenchymal Stem Cell Chondrogenesis.” Tissue Engineering - Part A 25(11–12): 901–10.

  • 備考:
  • 参照:
    PubMed
  • No.: 21
  • 文献情報:
    Fujihara, Y et al. “Influence of Damage-Associated Molecular Patterns from Chondrocytes in Tissue-Engineered Cartilage.” liebertpub.com.

  • 備考:
  • 参照:
    PubMed
  • No.: 22
  • 文献情報:
    Fujihara, Yuko et al. 2019. “Influence of Damage-Associated Molecular Patterns from Chondrocytes in Tissue-Engineered Cartilage.” Tissue Engineering Part A: ten.TEA.2019.0185.

  • 備考:
  • 参照:
    PubMed
  • No.: 23
  • 文献情報:
    Graceffa, V., and D. I. Zeugolis. 2019. “Carrageenan Enhances Chondrogenesis and Osteogenesis in Human Bone Marrow Stem Cell Culture.” European cells & materials 37: 310–32.

  • 備考:
  • 参照:
    PubMed
  • No.: 24
  • 文献情報:
    Hao, Ruijuan et al. 2019. “Cloning and Characterization of O-Xylosyltransferase Gene from Pinctada Fucata Martensii.” Journal of Applied Animal Research 47(1): 408–16.

  • 備考:
  • 参照:
    PubMed
  • No.: 25
  • 文献情報:
    Hashimoto, Yasumasa et al. 2019. “Alteration of the Extracellular Matrix and Alpha-Gal Antigens in the Rat Lung Scaffold Reseeded Using Human Vascular and Adipogenic Stromal Cells.” Journal of Tissue Engineering and Regenerative Medicine 13(11): 2067–76.

  • 備考:
  • 参照:
    PubMed
  • No.: 26
  • 文献情報:
    Haudenschild, Anne K. et al. 2019. “Non-Destructive Detection of Matrix Stabilization Correlates with Enhanced Mechanical Properties of Self-Assembled Articular Cartilage.” Journal of Tissue Engineering and Regenerative Medicine 13(4): 637–48.

  • 備考:
  • 参照:
    PubMed
  • No.: 27
  • 文献情報:
    Hontani, Kazutoshi et al. 2019. “Chondrogenic Differentiation of Mouse Induced Pluripotent Stem Cells Using the Three-Dimensional Culture with Ultra-Purified Alginate Gel.” Journal of Biomedical Materials Research - Part A 107(5): 1086–93.

  • 備考:
  • 参照:
    PubMed
  • No.: 28
  • 文献情報:
    Hu, Yue et al. 2019. “Quercetin Alleviates Rat Osteoarthritis by Inhibiting Inflammation and Apoptosis of Chondrocytes, Modulating Synovial Macrophages Polarization to M2 Macrophages.” Free Radical Biology and Medicine 145: 146–60.

  • 備考:
  • 参照:
    PubMed
  • No.: 29
  • 文献情報:
    Hua, Jianming et al. 2019. “Small Molecule-Based Strategy Promotes Nucleus Pulposus Specific Differentiation of Adipose-Derived Mesenchymal Stem Cells.” Molecules and cells 42(9): 661–71.

  • 備考:
  • 参照:
    PubMed
  • No.: 30
  • 文献情報:
    Huang, Li Hao et al. 2019. “Interleukin-17 Drives Interstitial Entrapment of Tissue Lipoproteins in Experimental Psoriasis.” Cell Metabolism 29(2): 475-487.e7.

  • 備考:
  • 参照:
    PubMed
  • No.: 31
  • 文献情報:
    Ibsirlioglu, Tulin, Ayşe Eser Elçin, and Yaşar Murat Elçin. 2019. “Decellularized Biological Scaffold and Stem Cells from Autologous Human Adipose Tissue for Cartilage Tissue Engineering.” Methods.

  • 備考:
  • 参照:
    PubMed
  • No.: 32
  • 文献情報:
    Iglesias, Carla et al. 2019. “Obtaining the SGAG Distribution Profile in Articular Cartilage Color Images.” Biomedizinische Technik.

  • 備考:
  • 参照:
    PubMed
  • No.: 33
  • 文献情報:
    Jeong, Se Young, Mi Lan Kang, Jeong Won Park, and Gun Il Im. 2019. “Dual Functional Nanoparticles Containing SOX Duo and ANGPT4 ShRNA for Osteoarthritis Treatment.” Journal of Biomedical Materials Research - Part B Applied Biomaterials 108(1): 234–42.

  • 備考:
  • 参照:
    PubMed
  • No.: 34
  • 文献情報:
    Karnik, Tanvi et al. 2019. “Ionic Silver Functionalized Ovine Forestomach Matrix - A Non- Cytotoxic Antimicrobial Biomaterial for Tissue Regeneration Applications.” Biomaterials Research 23(1): 6.

  • 備考:
  • 参照:
    PubMed
  • No.: 35
  • 文献情報:
    Khader, Ateka, and Treena Livingston Arinzeh. 2019. “Biodegradable Zinc Oxide Composite Scaffolds Promote Osteochondral Differentiation of Mesenchymal Stem Cells.” Biotechnology and Bioengineering: bit.27173.

  • 備考:
  • 参照:
    PubMed
  • No.: 36
  • 文献情報:
    Kim, Hee Jung et al. 2019. “Intra-Articular Delivery of Synovium-Resident Mesenchymal Stem Cells via BMP-7-Loaded Fibrous PLGA Scaffolds for Cartilage Repair.” Journal of Controlled Release 302: 169–80.

  • 備考:
  • 参照:
    PubMed
  • No.: 37
  • 文献情報:
    Kim, MK et al. “Decellularized Extracellular Matrix-Based Bio-Ink with Enhanced 3D Printability and Mechanical Properties.” iopscience.iop.org.

  • 備考:
  • 参照:
    PubMed
  • No.: 38
  • 文献情報:
    Kimmerling, Kelly A., John P. McQuilling, Miranda C. Staples, and Katie C. Mowry. 2019. “Tenocyte Cell Density, Migration, and Extracellular Matrix Deposition with Amniotic Suspension Allograft.” Journal of Orthopaedic Research 37(2): 412–20.

  • 備考:
  • 参照:
    PubMed
  • No.: 39
  • 文献情報:
    Ko, Ji Yun et al. 2019. “SOX-6, 9-Transfected Adipose Stem Cells to Treat Surgically-Induced Osteoarthritis in Goats.” Tissue Engineering - Part A 25(13–14): 990–1000.

  • 備考:
  • 参照:
    PubMed
  • No.: 40
  • 文献情報:
    Kobolák, Julianna et al. 2019. “Modelling the Neuropathology of Lysosomal Storage Disorders through Disease-Specific Human Induced Pluripotent Stem Cells.” Experimental Cell Research 380(2): 216–33.

  • 備考:
  • 参照:
    PubMed
  • No.: 41
  • 文献情報:
    Koenig, Fabian, Marie Kilzer, Christian Hagl, and Nikolaus Thierfelder. 2019. “Successful Decellularization of Thick-Walled Tissue: Highlighting Pitfalls and the Need for a Multifactorial Approach.” International Journal of Artificial Organs 42(1): 17–24.

  • 備考:
  • 参照:
    PubMed
  • No.: 42
  • 文献情報:
    Kouroupis, Dimitrios et al. 2019. “Infrapatellar Fat Pad-Derived MSC Response to Inflammation and Fibrosis Induces an Immunomodulatory Phenotype Involving CD10- Mediated Substance P Degradation.” Scientific Reports 9(1).

  • 備考:
  • 参照:
    PubMed
  • No.: 43
  • 文献情報:
    Krueger, Simone et al. 2019. “Re-Differentiation Capacity of Human Chondrocytes in Vitro Following Electrical Stimulation with Capacitively Coupled Fields.” Journal of clinical medicine 8(11).

  • 備考:
  • 参照:
    PubMed
  • No.: 44
  • 文献情報:
    Kuang, Biao, Yuanheng Yang, and Hang Lin. 2019. “Infiltration and In-Tissue Polymerization of Photocross-Linked Hydrogel for Effective Fixation of Implants into Cartilage - An in Vitro Study.” ACS Omega 4(20): 18540–44.

  • 備考:
  • 参照:
    PubMed
  • No.: 45
  • 文献情報:
    Kwon, Heenam, Siobhan A. O’Leary, Jerry C. Hu, and Kyriacos A. Athanasiou. 2019. “Translating the Application of Transforming Growth Factor-Β1, Chondroitinase-ABC, and Lysyl Oxidase-like 2 for Mechanically Robust Tissue-Engineered Human Neocartilage.” Jou

  • 備考:
  • 参照:
    PubMed
  • No.: 46
  • 文献情報:
    Larson, Benjamin L. et al. 2019. “Chondrogenic, Hypertrophic, and Osteochondral Differentiation of Human Mesenchymal Stem Cells on Three-Dimensionally Woven Scaffolds.” Journal of Tissue Engineering and Regenerative Medicine 13(8): 1453–65.

  • 備考:
  • 参照:
    PubMed
  • No.: 47
  • 文献情報:
    Li, Tao et al. 2019. “Silk Fibroin/Carboxymethyl Chitosan Hydrogel with TunableBiomechanical Properties Has Application Potential as Cartilage Scaffold.”International Journal of Biological Macromolecules 137: 382–91.

  • 備考:
  • 参照:
    PubMed
  • No.: 48
  • 文献情報:
    Lin, Hang et al. 2019. “Optimization of Photocrosslinked Gelatin/Hyaluronic Acid Hybrid Scaffold for the Repair of Cartilage Defect.” Journal of Tissue Engineering and Regenerative Medicine 13(8): 1418–29.

  • 備考:
  • 参照:
    PubMed
  • No.: 49
  • 文献情報:
    Lin, Hung Jun et al. 2019. “Development of Decellularized Cornea by Organic Acid Treatment for Corneal Regeneration.” Tissue Engineering - Part A 25(7–8): 652–62.

  • 備考:
  • 参照:
    PubMed
  • No.: 50
  • 文献情報:
    Lin, Hung Jun et al. 2019. “Decellularized Lymph Node Scaffolding as a Carrier for Dendritic Cells to Induce Anti-Tumor Immunity.” Pharmaceutics 11(11).

  • 備考:
  • 参照:
    PubMed
  • No.: 51
  • 文献情報:
    Liu, Yanbo et al. 2019. “Development of an Injectable Thiolated Icariin Functionalized Collagen/Hyaluronic Hydrogel to Promote Cartilage Formation: In Vitro and in Vivo.” Journal of Materials Chemistry B 7(17): 2845–54.

  • 備考:
  • 参照:
    PubMed
  • No.: 52
  • 文献情報:
    Machino, Ryusuke et al. 2019. “Replacement of Rat Tracheas by Layered, Trachea-Like, Scaffold-Free Structures of Human Cells Using a Bio-3D Printing System.” Advanced Healthcare Materials 8(7): 1800983.

  • 備考:
  • 参照:
    PubMed
  • No.: 53
  • 文献情報:
    McQuilling, John P., Mary Rose Kammer, Kelly A. Kimmerling, and Katie C. Mowry. 2019. “Characterisation of Dehydrated Amnion Chorion Membranes and Evaluation of Fibroblast and Keratinocyte Responses in Vitro.” International Wound Journal 16(3): 827–40.

  • 備考:
  • 参照:
    PubMed
  • No.: 54
  • 文献情報:
    McQuilling, John P., Kelly A. Kimmerling, Miranda C. Staples, and Katie C. Mowry. 2019. “Evaluation of Two Distinct Placental-Derived Membranes and Their Effect on Tenocyte Responses in Vitro.” Journal of Tissue Engineering and Regenerative Medicine 13(8)

  • 備考:
  • 参照:
    PubMed
  • No.: 55
  • 文献情報:
    Miranda, Joana P. et al. 2019. “The Secretome Derived from 3D-Cultured Umbilical Cord Tissue MSCS Counteracts Manifestations Typifying Rheumatoid Arthritis.” Frontiers in Immunology 10(FEB).

  • 備考:
  • 参照:
    PubMed
  • No.: 56
  • 文献情報:
    Mohd Heikal, Mohd Yunus, Shuid Ahmad Nazrun, Kien Hui Chua, and Abd Ghafar Norzana. 2019. “Stichopus Chloronotus Aqueous Extract as a Chondroprotective Agent for Human Chondrocytes Isolated from Osteoarthitis Articular Cartilage in Vitro.” Cytotechnology

  • 備考:
  • 参照:
    PubMed
  • No.: 57
  • 文献情報:
    Mohiuddin, Omair A. et al. 2019. “Decellularized Adipose Tissue: Biochemical Composition, in Vivo Analysis and Potential Clinical Applications.”

  • 備考:
  • 参照:
    PubMed
  • No.: 58
  • 文献情報:
    Moser, Philipp Tobias et al. 2019. “Creation of Laryngeal Grafts from Primary Human Cells and Decellularized Laryngeal Scaffolds.” Tissue Engineering Part A (800): ten.TEA.2019.0128.

  • 備考:
  • 参照:
    PubMed
  • No.: 59
  • 文献情報:
    Munir, N, A McDonald, and A Callanan - Available at SSRN 3368802. “Integrational Technologies for Development of Three-Dimensional Scaffolds as Platforms in Cartilage Tissue Engineering.” papers.ssrn.com.

  • 備考:
  • 参照:
    PubMed
  • No.: 60
  • 文献情報:
    Murphy, Caroline A., Gráinne M. Cunniffe, Atul K. Garg, and Maurice N. Collins. 2019. “Regional Dependency of Bovine Meniscus Biomechanics on the Internal Structure and Glycosaminoglycan Content.” Journal of the Mechanical Behavior of Biomedical Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 61
  • 文献情報:
    Naffa, Rafea et al. 2019. “Molecular and Structural Insights into Skin Collagen Reveals Several Factors That Influence Its Architecture.” International Journal of Biological Macromolecules 128: 509–20.

  • 備考:
  • 参照:
    PubMed
  • No.: 62
  • 文献情報:
    Naik, Anish, Michelle F. Griffin, Matthew Szarko, and Peter E. Butler. 2019. “Optimizing the Decellularization Process of Human Maxillofacial Muscles for Facial Reconstruction Using a Detergent-Only Approach.” Journal of Tissue Engineering and Regenerativ

  • 備考:
  • 参照:
    PubMed
  • No.: 63
  • 文献情報:
    Nam, Hui Yin et al. 2019. “Uniaxial Cyclic Tensile Stretching at 8% Strain Exclusively Promotes Tenogenic Differentiation of Human Bone Marrow-Derived Mesenchymal Stromal Cells.” Stem Cells International 2019.

  • 備考:
  • 参照:
    PubMed
  • No.: 64
  • 文献情報:
    Ou, Li et al. 2019. “ZFN-Mediated In Vivo Genome Editing Corrects Murine Hurler Syndrome.” Molecular Therapy 27(1): 178–87.

  • 備考:
  • 参照:
    PubMed
  • No.: 65
  • 文献情報:
    Park, Do Young et al. 2019. “Cross‐linked Cartilage Acellular Matrix Film Decreases Postsurgical Peritendinous Adhesions.” Artificial Organs: aor.13591.

  • 備考:
  • 参照:
    PubMed
  • No.: 66
  • 文献情報:
    Pérez-Silos, Vanessa et al. 2019. “A Cellularized Biphasic Implant Based on a Bioactive Silk Fibroin Promotes Integration and Tissue Organization during Osteochondral Defect Repair in a Porcine Model.” International Journal of Molecular Sciences 20(20).

  • 備考:
  • 参照:
    PubMed
  • No.: 67
  • 文献情報:
    Rezaei Topraggaleh, Tohid, Mojtaba Rezazadeh Valojerdi, Leila Montazeri, and Hossein Baharvand. 2019. “A Testis-Derived Macroporous 3D Scaffold as a Platform for the Generation of Mouse Testicular Organoids.” Biomaterials Science 7(4): 1422–36.

  • 備考:
  • 参照:
    PubMed
  • No.: 68
  • 文献情報:
    Ruiz, Maxime et al. 2020. “TGFBI Secreted by Mesenchymal Stromal Cells Ameliorates Osteoarthritis and Is Detected in Extracellular Vesicles.” Biomaterials 226.

  • 備考:
  • 参照:
    PubMed
  • No.: 69
  • 文献情報:
    Samuel, Shani et al. 2019. “Platelet-Rich Concentrate in Serum-Free Medium Enhances Cartilage-Specific Extracellular Matrix Synthesis and Reduces Chondrocyte Hypertrophy of Human Mesenchymal Stromal Cells Encapsulated in Alginate.” Platelets 30(1): 66–74.

  • 備考:
  • 参照:
    PubMed
  • No.: 70
  • 文献情報:
    Sathy, Binulal N. et al. 2019. “Hypoxia Mimicking Hydrogels to Regulate the Fate of Transplanted Stem Cells.” Acta Biomaterialia 88: 314–24.

  • 備考:
  • 参照:
    PubMed
  • No.: 71
  • 文献情報:
    Sorrentino, Nicolina Cristina et al. 2019. “Enhancing the Therapeutic Potential of Sulfamidase for the Treatment of Mucopolysaccharidosis IIIA.” Molecular Therapy - Methods and Clinical Development 15: 333–42.

  • 備考:
  • 参照:
    PubMed
  • No.: 72
  • 文献情報:
    Su, Mingzhen et al. 2019. “Preparation of Decellularized Triphasic Hierarchical Bone- Fibrocartilage-Tendon Composite Extracellular Matrix for Enthesis Regeneration.” Advanced Healthcare Materials 8(19): 1900831.

  • 備考:
  • 参照:
    PubMed
  • No.: 73
  • 文献情報:
    Tarafder, Solaiman et al. 2019. “In Situ Tissue Engineering of the Tendon-to-Bone Interface by Endogenous Stem/Progenitor Cells.” Biofabrication 12(1): 015008.

  • 備考:
  • 参照:
    PubMed
  • No.: 74
  • 文献情報:
    Thej, Charan, and Pawan Kumar Gupta. 2019. “The Role of Mesenchymal Stromal Cells in the Management of Osteoarthritis of the Knee.” Mesenchymal Stem Cells [Working Title].

  • 備考:
  • 参照:
    PubMed
  • No.: 75
  • 文献情報:
    Trevisan, C, MEA Fallas, … E Maghin - Stem cells, and undefined 2019. “Generation of a Functioning and Self‐Renewing Diaphragmatic Muscle Construct.” Wiley Online Library.

  • 備考:
  • 参照:
    PubMed
  • No.: 76
  • 文献情報:
    Trevisan, Caterina et al. 2019. “Generation of a Functioning and Self-Renewing Diaphragmatic Muscle Construct.” Stem Cells Translational Medicine 8(8): 858–69.

  • 備考:
  • 参照:
    PubMed
  • No.: 77
  • 文献情報:
    Truong, Vu Anh et al. 2019. “CRISPRai for Simultaneous Gene Activation and Inhibition to Promote Stem Cell Chondrogenesis and Calvarial Bone Regeneration.” Nucleic acids research 47(13): e74.

  • 備考:
  • 参照:
    PubMed
  • No.: 78
  • 文献情報:
    Vander Beken, Seppe et al. 2019. “Newly Defined ATP-Binding Cassette Subfamily B Member 5 Positive Dermal Mesenchymal Stem Cells Promote Healing of Chronic Iron-Overload Wounds via Secretion of Interleukin-1 Receptor Antagonist.” Stem Cells 37(8): 1057–74

  • 備考:
  • 参照:
    PubMed
  • No.: 79
  • 文献情報:
    Varshosaz, Jaleh et al. 2019. “Atorvastatin Lipid Nanocapsules and Gold Nanoparticles Embedded in Injectable Thermo-Gelling Hydrogel Scaffold Containing Adipose Tissue Extracellular Matrix for Myocardial Tissue Regeneration.” IET Nanobiotechnology 13(9):

  • 備考:
  • 参照:
    PubMed
  • No.: 80
  • 文献情報:
    VeDepo, Mitchell C. et al. 2019. “Non-Physiologic Bioreactor Processing Conditions for Heart Valve Tissue Engineering.” Cardiovascular Engineering and Technology 10(4): 628–37.

  • 備考:
  • 参照:
    PubMed
  • No.: 81
  • 文献情報:
    Watanabe, Naoto et al. 2019. “Comparison of High-Hydrostatic-Pressure Decellularized Versus Freeze-Thawed Porcine Menisci.” Journal of Orthopaedic Research 37(11): 2466–75.

  • 備考:
  • 参照:
    PubMed
  • No.: 82
  • 文献情報:
    Wijburg, Frits A. et al. 2019. “Intrathecal Heparan-N-Sulfatase in Patients with Sanfilippo Syndrome Type A: A Phase IIb Randomized Trial.” Molecular Genetics and Metabolism 126(2): 121–30.

  • 備考:
  • 参照:
    PubMed
  • No.: 83
  • 文献情報:
    Willemse, Jorke et al. 2020. “Fast, Robust and Effective Decellularization of Whole Human Livers Using Mild Detergents and Pressure Controlled Perfusion.” Materials Science and Engineering C 108.

  • 備考:
  • 参照:
    PubMed
  • No.: 84
  • 文献情報:
    Wu, Jinglei et al. 2019. “Heart Valve Tissue-Derived Hydrogels: Preparation and Characterization of Mitral Valve Chordae, Aortic Valve, and Mitral Valve Gels.” Journal of Biomedical Materials Research - Part B Applied Biomaterials 107(5): 1732–40.

  • 備考:
  • 参照:
    PubMed
  • No.: 85
  • 文献情報:
    Wu, Linxiao et al. 2019. “Thermoresponsive Stiffness Softening of Hierarchically Porous Nanohybrid Membranes Promotes Niches for Mesenchymal Stem Cell Differentiation.” Advanced Healthcare Materials 8(10): 1801556.

  • 備考:
  • 参照:
    PubMed
  • No.: 86
  • 文献情報:
    Xie, Shanshan et al. 2019. “Book-Shaped Decellularized Tendon Matrix Scaffold Combined with Bone Marrow Mesenchymal Stem Cells-Sheets for Repair of Achilles Tendon Defect in Rabbit.” Journal of Orthopaedic Research 37(4): 887–97.

  • 備考:
  • 参照:
    PubMed
  • No.: 87
  • 文献情報:
    Xu, Chet C., and Ted Mau. 2019. “A Tissue-Specific, Injectable Acellular Gel for the Treatment of Chronic Vocal Fold Scarring.” Acta Biomaterialia 99: 141–53.

  • 備考:
  • 参照:
    PubMed
  • No.: 88
  • 文献情報:
    Xu, Jiaqi et al. 2019. “Decellularised Nucleus Pulposus as a Potential Biologic Scaffold for Disc Tissue Engineering.” Materials Science and Engineering C 99: 1213–25.

  • 備考:
  • 参照:
    PubMed
  • No.: 89
  • 文献情報:
    Yang, Yuanheng et al. 2019. “Condensation-Driven Chondrogenesis of Human Mesenchymal Stem Cells within Their Own Extracellular Matrix: Formation of Cartilage with Low Hypertrophy and Physiologically Relevant Mechanical Properties.” Advanced Biosystems: 19

  • 備考:
  • 参照:
    PubMed
  • No.: 90
  • 文献情報:
    Zhang, Shipin et al. 2019. “MSC Exosomes Alleviate Temporomandibular Joint Osteoarthritis by Attenuating Inflammation and Restoring Matrix Homeostasis.” Biomaterials 200: 35–47.

  • 備考:
  • 参照:
    PubMed
  • No.: 91
  • 文献情報:
    Jonsdottir-Buch, S. M.; Gunnarsdottir, K.; Sigurjonsson, O. E., 2020, Human Embryonic-Derived Mesenchymal Progenitor Cells (hES-MP Cells) are Fully Supported in Culture with Human Platelet Lysates, Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 92
  • 文献情報:
    Maloney, E.; Wang, Y. N.; Vohra, R.; Son, H.; ..., 2020, Magnetic resonance imaging biomarkers for pulsed focused ultrasound treatment of pancreatic ductal adenocarcinoma, World journal of 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 93
  • 文献情報:
    Salinas, E. Y.; Aryaei, A.; Paschos, N.; Berson, E.; ..., 2020, Shear stress induced by fluid flow produces improvements in tissue-engineered cartilage, 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 94
  • 文献情報:
    Almeida, B.; Wang, Y.; Shukla, A., 2020, Effects of nanoparticle properties on kartogenin delivery and interactions with mesenchymal stem cells, Annals of Biomedical Engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 95
  • 文献情報:
    Zhang, L.; Qiu, H.; Wang, D.; Miao, H.; ..., 2020, Enhanced vascularization and biocompatibility of rat pancreatic decellularized scaffolds loaded with platelet-rich plasma, Journal of 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 96
  • 文献情報:
    Ahmed, E.; Saleh, T.; Yu, L.; Song, S. H.; ..., 2020, Decellularized extracellular matrix窶甚ich hydrogel窶都ilver nanoparticle mixture as a potential treatment for acute liver failure model, 窶ヲ Research Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 97
  • 文献情報:
    Meran, L.; Massie, I.; Campinoti, S.; Weston, A. E.; ..., 2020, Engineering transplantable jejunal mucosal grafts using patient-derived organoids from children with intestinal failure, Nature medicine

  • 備考:
  • 参照:
    PubMed
  • No.: 98
  • 文献情報:
    Baumann, H. J.; Mahajan, G.; Ham, T. R.; Betonio, P.; ..., 2020, Softening of the chronic hemi-section spinal cord injury scar parallels dysregulation of cellular and extracellular matrix content, Journal of the 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 99
  • 文献情報:
    Liu, Y.; Zhou, W.; Chen, F. F.; Xiao, F.; Zhu, H. Y.; ..., 2020, Overexpression of LMP-1 Decreases Apoptosis in Human Nucleus Pulposus Cells via Suppressing the NF-ホコB Signaling Pathway, 窶ヲ Medicine and Cellular 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 100
  • 文献情報:
    Rorick, C. B.; Mitchell, J. A.; Bledsoe, R. H.; Floren, M. L.; ..., 2020, Cryopreserved, thin, laser-etched osteochondral allograft maintains the functional components of articular cartilage after 2 years of storage, Journal of Orthopaedic 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 101
  • 文献情報:
    Taniguchi, D.; Matsumoto, K.; Machino, R.; Takeoka, Y.; ..., 2020, Human lung microvascular endothelial cells as potential alternatives to human umbilical vein endothelial cells in bio-3D-printed trachea-like structures, Tissue and Cell

  • 備考:
  • 参照:
    PubMed
  • No.: 102
  • 文献情報:
    Wu, Y.; Yang, Z.; Denslin, V.; Ren, X. F.; ..., 2020, Repair of osteochondral defects with predifferentiated mesenchymal stem cells of distinct phenotypic character derived from a nanotopographic platform, 腦駈拾 American Journal of 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 103
  • 文献情報:
    Ventura, R. D.; Padalhin, A. R.; Lee, B. T., 2020, Functionalization of extracellular matrix (ECM) on multichannel biphasic calcium phosphate (BCP) granules for improved bone regeneration, Materials &Design

  • 備考:
  • 参照:
    PubMed
  • No.: 104
  • 文献情報:
    Capella-Monsonテュs, H.; Pieri, A. De; Peixoto, R.; ..., 2020, Extracellular matrix-based biomaterials as adipose-derived stem cell delivery vehicles in wound healing: a comparative study between a collagen scaffold 窶ヲ, Stem Cell Research & 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 105
  • 文献情報:
    Li, Y.; Chen, M.; Zhou, W.; Gao, S.; Luo, X.; Peng, L.; Yan, J.; ..., 2020, Cell-free 3D wet-electrospun PCL/silk fibroin/Sr2+ scaffold promotes successful total meniscus regeneration in a rabbit model, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 106
  • 文献情報:
    Ventura, R. D.; Padalhin, A. R.; Kim, B.; Park, M. K.; ..., 2020, Evaluation of bone regeneration potential of injectable extracellular matrix (ECM) from porcine dermis loaded with biphasic calcium phosphate (BCP) powder, Materials Science and 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 107
  • 文献情報:
    Lee, H.; Ju, Y. M.; Kim, I.; Elsangeedy, E.; Lee, J. H.; Yoo, J. J.; ..., 2020, A novel decellularized skeletal muscle-derived ECM scaffolding system for in situ muscle regeneration, Methods

  • 備考:
  • 参照:
    PubMed
  • No.: 108
  • 文献情報:
    Zhang, L.; Miao, H.; Wang, D.; Qiu, H.; Zhu, Y.; Yao, X.; ..., 2020, Pancreatic extracellular matrix and platelet窶甚ich plasma constructing injectable hydrogel for pancreas tissue engineering, Artificial 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 109
  • 文献情報:
    Hahn, O.; Kieb, M.; Jonitz-Heincke, A.; ..., 2020, Dose-dependent effects of platelet-rich plasma powder on chondrocytes in vitro, 腦駈拾 American Journal of 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 110
  • 文献情報:
    Allas, L.; Rochoux, Q.; Leclercq, S.; Boumテゥdiene, K.; ..., 2020, Development of a simple osteoarthritis model useful to predict in vitro the anti-hypertrophic action of drugs, Laboratory 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 111
  • 文献情報:
    Santi, L.; Ponti, G. De; Dina, G.; Pievani, A.; Corsi, A.; ..., 2020, Neonatal combination therapy improves some of the clinical manifestations in the Mucopolysaccharidosis type I murine model, Molecular Genetics and 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 112
  • 文献情報:
    Chen, Y.; Lee, K.; Kawazoe, N.; Yang, Y.; Chen, G., 2020, ECM scaffolds mimicking extracellular matrices of endochondral ossification for the regulation of mesenchymal stem cell differentiation, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 113
  • 文献情報:
    Entchev, E.; Jantzen, I.; Masson, P.; Bocart, S.; Bournique, B.; ..., 2020, Odiparcil, a potential glycosaminoglycans clearance therapy in mucopolysaccharidosis VI窶忍vidence from in vitro and in vivo models, PloS one

  • 備考:
  • 参照:
    PubMed
  • No.: 114
  • 文献情報:
    Okamura, G.; Ebina, K.; Hirao, M.; Chijimatsu, R.; ..., 2020, Promoting effect of basic fibroblast growth factor in synovial mesenchymal stem cell-based cartilage regeneration, International journal of 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 115
  • 文献情報:
    Li, J.; Sasaki, N.; Itaka, K.; Terpstra, M.; ..., 2020, Regulation of chondrocyte differentiation by changing intercellular distances using type II collagen microfibers, ACS Biomaterials 腦駈拾

  • 備考:
  • 参照:
    PubMed
  • No.: 116
  • 文献情報:
    Şeker, Ş; Elçin, A. E.; Elçin, Y. M., 2020, Macroporous elastic cryogels based on platelet lysate and oxidized dextran as tissue engineering scaffold: In vitro and in vivo evaluations, Materials Science and Engineering: C

  • 備考:
  • 参照:
    PubMed
  • No.: 117
  • 文献情報:
    Belviso, I.; Romano, V.; Sacco, A. M.; Ricci, G.; ..., 2020, Decellularized human dermal matrix as a biological scaffold for cardiac repair and regeneration, … in Bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 118
  • 文献情報:
    Lahrood, F. Nobakht; Saheli, M.; Farzaneh, Z.; ..., 2020, Generation of transplantable three-dimensional hepatic-patch to improve the functionality of hepatic cells in vitro and in vivo, Stem Cells and …

  • 備考:
  • 参照:
    PubMed
  • No.: 119
  • 文献情報:
    Goh, S. K.; Halfter, W.; Richardson, T.; Bertera, S.; ..., 2020, Organ-specific ECM arrays for investigating cell-ECM interactions during stem cell differentiation, …

  • 備考:
  • 参照:
    PubMed
  • No.: 120
  • 文献情報:
    Intartaglia, D.; Giamundo, G.; Marrocco, E.; ..., 2020, Retinal degeneration in MPS-IIIA mouse model, Frontiers in Cell and …

  • 備考:
  • 参照:
    PubMed
  • No.: 121
  • 文献情報:
    Moor, L. De; Beyls, E.; Declercq, H., 2020, Scaffold free microtissue formation for enhanced cartilage repair, Annals of biomedical engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 122
  • 文献情報:
    Wang, X.; Lu, Y.; Wang, W.; Wang, Q.; Liang, J.; ..., 2020, Effect of different aged cartilage ECM on chondrogenesis of BMSCs in vitro and in vivo, Regenerative …

  • 備考:
  • 参照:
    PubMed
  • No.: 123
  • 文献情報:
    Costa, J. B.; Park, J.; Jorgensen, A. M.; ..., 2020, 3D bioprinted highly elastic hybrid constructs for advanced fibrocartilaginous tissue regeneration, Chemistry of …

  • 備考:
  • 参照:
    PubMed
  • No.: 124
  • 文献情報:
    Parchehbaf-Kashani, M.; Sepantafar, M.; ..., 2020, Design and characterization of an electroconductive scaffold for cardiomyocytes based biomedical assays, Materials Science and …

  • 備考:
  • 参照:
    PubMed
  • No.: 125
  • 文献情報:
    Wang, Y.; Xiao, Y.; Long, S.; Fan, Y.; ..., 2020, Role of N-Cadherin in a Niche-Mimicking Microenvironment for Chondrogenesis of Mesenchymal Stem Cells In Vitro, ACS Biomaterials Science …

  • 備考:
  • 参照:
    PubMed
  • No.: 126
  • 文献情報:
    Kong, W.; Gao, Y.; Liu, Q.; Dong, L.; Guo, L.; Fan, H.; ..., 2020, The effects of chemical crosslinking manners on the physical properties and biocompatibility of collagen type I/hyaluronic acid composite hydrogels, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 127
  • 文献情報:
    Luo, C.; Xie, R.; Zhang, J.; Liu, Y.; Li, Z.; Zhang, Y.; ..., 2020, Low-temperature three-dimensional printing of tissue cartilage engineered with gelatin methacrylamide, … Engineering Part C …

  • 備考:
  • 参照:
    PubMed
  • No.: 128
  • 文献情報:
    Yun, H. W.; Choi, B. H.; Park, D. Y.; Jin, L. H.; Min, B. H., 2020, Inhibitory effect of topical cartilage acellular matrix suspension treatment on neovascularization in a rabbit corneal model, Tissue Engineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 129
  • 文献情報:
    Wei, L.; Cao, P.; Xu, C.; Zhong, H.; Wang, X.; Bai, M.; ..., 2020, Chondroitin synthase‐3 regulates nucleus pulposus degeneration through actin‐induced YAP signaling, The FASEB …

  • 備考:
  • 参照:
    PubMed
  • No.: 130
  • 文献情報:
    Xu, Q.; Xing, H.; Wu, J.; Chen, W.; Zhang, N., 2020, miRNA-141 induced pyroptosis in intervertebral disk degeneration by targeting ROS generation and activating TXNIP/NLRP3 signaling in nucleus pulpous …, Frontiers in Cell and …

  • 備考:
  • 参照:
    PubMed
  • No.: 131
  • 文献情報:
    Zhao, W.; Zou, T.; Cui, H.; Lv, Y.; Gao, D.; Ruan, C.; ..., 2020, Parathyroid hormone (1-34) promotes the effects of 3D printed scaffold-seeded bone marrow mesenchymal stem cells on meniscus regeneration, Stem Cell Research & …

  • 備考:
  • 参照:
    PubMed
  • No.: 132
  • 文献情報:
    Zhao, C.; Li, Y.; Peng, G.; Lei, X.; Zhang, G.; ..., 2020, Decellularized liver matrix-modified chitosan fibrous scaffold as a substrate for C3A hepatocyte culture, Journal of biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 133
  • 文献情報:
    Muir, E., 2020, Targeting chondroitinase ABC to axons enhances the ability of chondroitinase to promote neurite outgrowth and sprouting,

  • 備考:
  • 参照:
    PubMed
  • No.: 134
  • 文献情報:
    Qasim, M.; Le, N. X. T.; Nguyen, T. P. T.; Chae, D. S.; ..., 2020, Nanohybrid biodegradable scaffolds for TGF-β3 release for the chondrogenic differentiation of human mesenchymal stem cells, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 135
  • 文献情報:
    Saleh, T.; Ahmed, E.; Yu, L.; Song, S. H.; ..., 2020, Conjugating homogenized liver‐extracellular matrix into decellularized hepatic scaffold for liver tissue engineering, … Research Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 136
  • 文献情報:
    Wang, Y.; Duan, M.; Rahman, M.; Yang, M.; Zhao, W.; ..., 2020, Use of bioactive extracellular matrix fragments as a urethral bulking agent to treat stress urinary incontinence, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 137
  • 文献情報:
    Luo, Y.; Ma, L., 2020, Bioprosthetic heart valves with reduced immunogenic residuals using vacuum-assisted decellularization treatment, Biomedical Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 138
  • 文献情報:
    Vliet, DM van; Lin, Y.; Bale, N. J.; Koenen, M.; Villanueva, L.; ..., 2020, … gen. nov., sp. nov., and Pontiella sulfatireligans sp. nov., two marine anaerobes of the Pontiellaceae fam. nov. producing sulfated glycosaminoglycan-like …, Microorganisms

  • 備考:
  • 参照:
    PubMed
  • No.: 139
  • 文献情報:
    Yoon, K. H.; Park, J. Y.; Lee, J. Y.; Lee, E. A.; ..., 2020, Costal chondrocyte窶電erived pellet-type autologous chondrocyte implantation for treatment of articular cartilage defect, 窶ヲ American Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 140
  • 文献情報:
    Sturtivant, A.; Callanan, A., 2020, The use of antifreeze proteins to modify pore structure in directionally frozen alginate sponges for cartilage tissue engineering, Biomedical Physics &Engineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 141
  • 文献情報:
    Dehghan-Baniani, D.; Chen, Y.; Wang, D.; ..., 2020, Injectable in situ forming kartogenin-loaded chitosan hydrogel with tunable rheological properties for cartilage tissue engineering, Colloids and Surfaces B …

  • 備考:
  • 参照:
    PubMed
  • No.: 142
  • 文献情報:
    Hanai, H.; Jacob, G.; Nakagawa, S.; Tuan, R. S.; ..., 2020, Potential of soluble decellularized extracellular matrix for musculoskeletal tissue engineering窶田omparison of various mesenchymal tissues, Frontiers in Cell and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 143
  • 文献情報:
    Ba, R.; Kong, L.; Wu, G.; Liu, S.; Dong, Y.; Li, B.; ..., 2020, Increased expression of Sox9 during balance of BMSCs/chondrocyte bricks in platelet-rich plasma promotes construction of a stable 3-D chondrogenesis …, Stem Cells …

  • 備考:
  • 参照:
    PubMed
  • No.: 144
  • 文献情報:
    Louis, F.; Fujii, N.; Katsuyama, M.; Okumoto, S.; ..., 2020, Effects of radiofrequency and ultrasound on the turnover rate of skin aging components (skin extracellular matrix and epidermis) via HSP47-induced stimulation, Biochemical and …

  • 備考:
  • 参照:
    PubMed
  • No.: 145
  • 文献情報:
    Wang, Y.; Nakajima, T.; Diao, P.; Yamada, Y.; ..., 2020, Polyunsaturated fatty acid deficiency affects sulfatides and other sulfated glycans in lysosomes through autophagy‐mediated degradation, The FASEB …

  • 備考:
  • 参照:
    PubMed
  • No.: 146
  • 文献情報:
    Wang, Z.; Han, L.; Sun, T.; Ma, J.; Sun, S.; Ma, L.; Wu, B., 2020, Extracellular matrix derived from allogenic decellularized bone marrow mesenchymal stem cell sheets for the reconstruction of osteochondral defects in rabbits, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 147
  • 文献情報:
    Lin, Y. M.; Lam, A. T. L.; Lee, J.; Leng, T. K.; Sim, E.; Jian, L.; ..., 2020, Human early mesenchymal stromal cells delivered on porous lightweight biodegradable polycaprolactone-based microcarriers result in improved cartilage formation, Materialia

  • 備考:
  • 参照:
    PubMed
  • No.: 148
  • 文献情報:
    Putri, N. R. E.; Wang, X.; Chen, Y.; Li, X.; Kawazoe, N.; ..., 2020, Preparation of PLGA-collagen hybrid scaffolds with controlled pore structures for cartilage tissue engineering, Progress in Natural …

  • 備考:
  • 参照:
    PubMed
  • No.: 149
  • 文献情報:
    Laker, L.; Dohmen, P. M.; Smit, F. E., 2020, The sequential effects of a multifactorial detergent based decellularization process on bovine pericardium, Biomedical Physics & …

  • 備考:
  • 参照:
    PubMed
  • No.: 150
  • 文献情報:
    Shalaby, S.; Simioni, P.; Campello, E.; ..., 2020, Endothelial damage of the portal vein is associated with heparin-like effect in advanced stages of cirrhosis, Thrombosis and …

  • 備考:
  • 参照:
    PubMed
  • No.: 151
  • 文献情報:
    Raftery, R. M.; Vazquez, AG Gonzalez; ..., 2020, Activation of the SOX‐5, SOX‐6, and SOX‐9 trio of transcription factors using a gene‐activated scaffold stimulates mesenchymal stromal cell chondrogenesis and …, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 152
  • 文献情報:
    Dテュaz-Payno, P. J.; Browe, D. C.; Cunniffe, G. M.; ..., 2020, The identification of articular cartilage and growth plate extracellular matrix-specific proteins supportive of either osteogenesis or stable chondrogenesis of 窶ヲ, 窶ヲ and Biophysical Research 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 153
  • 文献情報:
    Derkacz, A.; Olczyk, P.; Jura-Poltorak, A.; ..., 2020, Clinical significance of uri-nary glycosaminoglycan excretion in inflammatory bowel disease patients, J. Physiol …

  • 備考:
  • 参照:
    PubMed
  • No.: 154
  • 文献情報:
    Ryu, J. S.; Seo, S. Y.; Jeong, E. J.; Kim, J. Y.; Koh, Y. G.; ..., 2020, Ganglioside GM3 up-regulate chondrogenic differentiation by transform growth factor receptors, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 155
  • 文献情報:
    Chin, L. K.; Theise, N. D.; Loneker, A. E.; ..., 2020, Lipid droplets disrupt mechanosensing in human hepatocytes, American Journal …

  • 備考:
  • 参照:
    PubMed
  • No.: 156
  • 文献情報:
    Hamamoto, S.; Chijimatsu, R.; Shimomura, K.; ..., 2020, Enhancement of chondrogenic differentiation supplemented by a novel small compound for chondrocyte-based tissue engineering, Journal of experimental …

  • 備考:
  • 参照:
    PubMed
  • No.: 157
  • 文献情報:
    Mohamed, H. T.; Untereiner, V.; Cinque, G.; Ibrahim, S. A.; ..., 2020, Infrared microspectroscopy and imaging analysis of inflammatory and non-inflammatory breast cancer cells and their GAG secretome, Molecules

  • 備考:
  • 参照:
    PubMed
  • No.: 158
  • 文献情報:
    Liu, B.; Zhang, S.; Wang, W.; Yun, Z.; Lv, L.; ..., 2020, Matrisome provides a supportive microenvironment for skin functions of diverse species, ACS Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 159
  • 文献情報:
    Chen, Y.; Ma, M.; Teng, Y.; Cao, H.; Yang, Y.; ..., 2020, Efficient manufacturing of tissue engineered cartilage in vitro by a multiplexed 3D cultured method, Journal of materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 160
  • 文献情報:
    Jung, S. Y.; Tran, A. N. T.; Kim, H. Y.; Choi, E.; Lee, S. J.; ..., 2020, Development of acellular respiratory mucosal matrix using porcine tracheal mucosa, Tissue Engineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 161
  • 文献情報:
    Tan, F.; Wang, D.; Yuan, Z., 2020, The fibroblast-like synoviocyte derived exosomal long non-coding RNA H19 alleviates osteoarthritis progression through the miR-106b-5p/TIMP2 axis, Inflammation

  • 備考:
  • 参照:
    PubMed
  • No.: 162
  • 文献情報:
    Wang, Q.; Li, X.; Wang, P.; Yao, Y.; Xu, Y.; Chen, Y.; ..., 2020, Bionic composite hydrogel with a hybrid covalent/noncovalent network promoting phenotypic maintenance of hyaline cartilage, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 163
  • 文献情報:
    Kushioka, J.; Kaito, T.; Chijimatsu, R.; Okada, R.; ..., 2020, The small compound, TD-198946, protects against intervertebral degeneration by enhancing glycosaminoglycan synthesis in nucleus pulposus cells, Scientific reports

  • 備考:
  • 参照:
    PubMed
  • No.: 164
  • 文献情報:
    Chen, S.; Qin, L.; Wu, X.; Fu, X.; Lin, S.; Chen, D.; ..., 2020, Moderate fluid shear stress regulates heme oxygenase-1 expression to promote autophagy and ECM homeostasis in the nucleus pulposus cells, Frontiers in cell and …

  • 備考:
  • 参照:
    PubMed
  • No.: 165
  • 文献情報:
    Lan, X.; Zhao, Q.; Zhang, J.; Lei, Y.; Wang, Y., 2020, A combination of hydrogen bonding and chemical covalent crosslinking to fabricate a novel swim-bladder-derived dry heart valve material yields advantageous …, Biomedical Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 166
  • 文献情報:
    Day, P.; Alves, N.; Daniell, E.; Dasgupta, D.; Ogborne, R.; ..., 2020, Targeting chondroitinase ABC to axons enhances the ability of chondroitinase to promote neurite outgrowth and sprouting, PloS one

  • 備考:
  • 参照:
    PubMed
  • No.: 167
  • 文献情報:
    Guillot-Ferriols, M.; Rodriguez-Hernandez, J. C.; ..., 2020, Poly (vinylidene) fluoride membranes coated by heparin/collagen layer-by-layer, smart biomimetic approaches for mesenchymal stem cell culture, Materials Science and …

  • 備考:
  • 参照:
    PubMed
  • No.: 168
  • 文献情報:
    Martino, C.; Kellman, B. P.; Sandoval, D. R.; Clausen, T. M.; ..., 2020, Bacterial modification of the host glycosaminoglycan heparan sulfate modulates SARS-CoV-2 infectivity, BioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 169
  • 文献情報:
    Nayakawde, N. B.; Methe, K.; Banerjee, D.; ..., 2020, In Vitro Regeneration of Decellularized Pig Esophagus Using Human Amniotic Stem Cells, BioResearch Open …

  • 備考:
  • 参照:
    PubMed
  • No.: 170
  • 文献情報:
    Kanemitsu, M.; Nakasa, T.; Shirakawa, Y.; ..., 2020, Role of vasoactive intestinal peptide in the progression of osteoarthritis through bone sclerosis and angiogenesis in subchondral bone, Journal of Orthopaedic …

  • 備考:
  • 参照:
    PubMed
  • No.: 171
  • 文献情報:
    Li, J.; Cai, Z.; Cheng, J.; Wang, C.; Fang, Z.; ..., 2020, Characterization of a heparinized decellularized scaffold and its effects on mechanical and structural properties, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 172
  • 文献情報:
    Chen, D.; Smith, L. R.; Khandekar, G.; Patel, P.; Yu, C. K.; ..., 2020, Distinct effects of different matrix proteoglycans on collagen fibrillogenesis and cell-mediated collagen reorganization, Scientific reports

  • 備考:
  • 参照:
    PubMed
  • No.: 173
  • 文献情報:
    Hussey, G. S.; Nascari, D. G.; Saldin, L. T.; Kolich, B.; Lee, Y. C.; ..., 2020, Ultrasonic cavitation to prepare ECM hydrogels, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 174
  • 文献情報:
    Christensen, C.; Jonsdottir-Buch, S. M.; Sigurjonsson, O. E., 2020, Effects of amotosalen treatment on human platelet lysate bioactivity: A proof-of-concept study, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 175
  • 文献情報:
    Boleij, M.; Kleikamp, H.; Pabst, M.; Neu, T. R.; ..., 2020, Decorating the anammox house: sialic acids and sulfated glycosaminoglycans in the extracellular polymeric substances of anammox granular sludge, … science &technology

  • 備考:
  • 参照:
    PubMed
  • No.: 176
  • 文献情報:
    Pieri, A. De; Rana, S.; Korntner, S.; Zeugolis, D. I., 2020, Seaweed polysaccharides as macromolecular crowding agents, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 177
  • 文献情報:
    Gao, Y.; Liu, Q.; Kong, W.; Wang, J.; He, L.; Guo, L.; ..., 2020, Activated hyaluronic acid/collagen composite hydrogel with tunable physical properties and improved biological properties, International journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 178
  • 文献情報:
    Kang, H.; Sun, A.; Wu, Q.; Yang, J.; ..., 2020, Atherogenic diet-diminished endothelial glycocalyx contributes to impaired vasomotor properties in rat, American Journal …

  • 備考:
  • 参照:
    PubMed
  • No.: 179
  • 文献情報:
    Felz, S.; Neu, T. R.; Loosdrecht, MCM van; Lin, Y., 2020, Aerobic granular sludge contains Hyaluronic acid-like and sulfated glycosaminoglycans-like polymers, Water research

  • 備考:
  • 参照:
    PubMed
  • No.: 180
  • 文献情報:
    Delbaere, S.; Damme, T. Van; Syx, D.; Symoens, S.; ..., 2020, Hypomorphic zebrafish models mimic the musculoskeletal phenotype of 硫4GalT7-deficient Ehlers-Danlos syndrome, Matrix Biology

  • 備考:
  • 参照:
    PubMed
  • No.: 181
  • 文献情報:
    Lee, J. S.; Park, H. S.; Jung, H.; Lee, H.; Hong, H.; Lee, Y. J.; ..., 2020, 3D-printable photocurable bioink for cartilage regeneration of tonsil-derived mesenchymal stem cells, Additive …

  • 備考:
  • 参照:
    PubMed
  • No.: 182
  • 文献情報:
    Casal-Beiroa, P.; Balboa-Barreiro, V.; ..., 2020, Raman spectroscopy for osteoarthritis severity and cartilage degradation assessment-defining optical biomarkers using an ex vivo model, Osteoarthritis and …

  • 備考:
  • 参照:
    PubMed
  • No.: 183
  • 文献情報:
    Rooney, P.; Ryan, C.; McDermott, B. J.; Dev, K.; ..., 2020, Effect of Glycosaminoglycan Replacement on Markers of Interstitial Cystitis In Vitro, Frontiers in …

  • 備考:
  • 参照:
    PubMed
  • No.: 184
  • 文献情報:
    Hatami-Marbini, H.; Pachenari, M., 2020, On influence of sulfated glycosaminoglycans on tensile properties of posterior sclera, Mechanics of Soft Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 185
  • 文献情報:
    Keller, S.; Liedek, A.; Shendi, D.; Bach, M.; Tovar, G. E. M.; ..., 2020, Eclectic characterisation of chemically modified cell-derived matrices obtained by metabolic glycoengineering and re-assessment of commonly used methods, RSC …

  • 備考:
  • 参照:
    PubMed
  • No.: 186
  • 文献情報:
    Beiroa, P. Casal, 2020, Biomarcadores 坦pticos para el diagn坦stico de la osteoartritis utilizando la espectroscop鱈a Raman,

  • 備考:
  • 参照:
    PubMed
  • No.: 187
  • 文献情報:
    Cramer, C., 2020, Charakterisierung der biomechanischen Eigenschaften und extrazellul辰ren Matrix bei BAV-assoziierten Aortopathien,

  • 備考:
  • 参照:
    PubMed
  • No.: 188
  • 文献情報:
    邹彤; 赵雯; 吕阳欧; 高登科; 阮晨梅; 张霞; 张翊华, 2020, 钻孔法增加犬半月板脱细胞基质支架孔隙率的可行性分析, 畜牧兽医学报

  • 備考:
  • 参照:
    PubMed
  • No.: 189
  • 文献情報:
    Svatić, R., 2020, Probir na mukopolisaharidoze iz uzorka suhe kapi mokraće,

  • 備考:
  • 参照:
    PubMed
  • No.: 190
  • 文献情報:
    Miara, A., 2020, Ocena wydalania glikozoaminoglikanów z moczem osób chorych na twardzinę układową,

  • 備考:
  • 参照:
    PubMed
  • No.: 191
  • 文献情報:
    Melo, P., 2020, Additive manufacturing of bioceramic and biocomposite devices for bone repair,

  • 備考:
  • 参照:
    PubMed
  • No.: 192
  • 文献情報:
    조연진, 2020, Extraction of Polysaccharide from Achatina fulica Using Compressed Hot Water and Development of Bioactive Polysaccharide Derivatives by Chemical Modification,

  • 備考:
  • 参照:
    PubMed
  • No.: 193
  • 文献情報:
    Duda, M., 2020, Wydalanie glikozoaminoglikanów z moczem u otyłych chorych na cukrzycę typu 2 leczonych insuliną detemir,

  • 備考:
  • 参照:
    PubMed
  • No.: 194
  • 文献情報:
    Sevrain, L. C.; Verdier-Sevrain, S. Y., 2020, Methods and compositions for repair of cartilage using an in vivo bioreactor, US Patent 10,806,824

  • 備考:
  • 参照:
    PubMed
  • No.: 195
  • 文献情報:
    Nulty, J., 2020, THE DEVELOPMENT OF A NOVEL 3D BIOPRINTING STRATEGY TO DRIVE VASCULARISATION, AND ITS APPLICATION FOR BONE TISSUE …,

  • 備考:
  • 参照:
    PubMed
  • No.: 196
  • 文献情報:
    Jin-Hwan, K.; Han, M. S., 2020, Composition for preventing or treating osteoarthritis containing an extract of Angelica gigas Nakai, US Patent 10,688,144

  • 備考:
  • 参照:
    PubMed
  • No.: 197
  • 文献情報:
    Mohiuddin, O. A., 2020, Characterization of Decellularized Adipose Tissue Hydrogel and Analysis of Its Regenerative Potential in Mouse Femoral Defect Model,

  • 備考:
  • 参照:
    PubMed
  • No.: 198
  • 文献情報:
    TUBERT, MFB; HAURIGOT, VA; ..., 2020, Adenoassociated virus vectors for the treatment of mucopolysaccharidoses, US Patent 10,617,771

  • 備考:
  • 参照:
    PubMed
  • No.: 199
  • 文献情報:
    Gansau, J., 2020, On the Effect of Primed Cellular Microcapsules and pH Neutralizing Biomaterials to Augment Regeneration of the Intervertebral Disc,

  • 備考:
  • 参照:
    PubMed
  • No.: 200
  • 文献情報:
    Kadir, N. D. B., 2020, Engineering Mesenchymal Stem Cell Paracrine Signaling for Cartilage Regeneration,

  • 備考:
  • 参照:
    PubMed
  • No.: 201
  • 文献情報:
    Echols, J.; Siddiqui, A.; Dai, Y.; Havasi, V.; ..., 2020, A regulated NMD mouse model supports NMD inhibition as a viable therapeutic option to treat genetic diseases, Disease models & …

  • 備考:
  • 参照:
    PubMed
  • No.: 202
  • 文献情報:
    Scheurer, S., 2020, 3D Bioprinting of anatomically accurate Implants for Meniscus Tissue Engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 203
  • 文献情報:
    Giuliani, N.; Lovati, A. B.; Ferroni, M.; Ferrari, L.; ..., 2020, Use of an optimized automatic procedure for measuring the hydraulic permeability of articular cartilage, … GNB2020, June 10th …

  • 備考:
  • 参照:
    PubMed
  • No.: 204
  • 文献情報:
    Payno, P. J. D., 2020, The development of biomimetic scaffolds for osteochondral tissue engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 205
  • 文献情報:
    Maghin, E., 2020, Study of extracellular matrix in healthy and pathological condition,

  • 備考:
  • 参照:
    PubMed
  • No.: 206
  • 文献情報:
    Huber, A.; Taghavie-Moghadam, P., 2020, Cartilage matrix, US Patent App. 16/631,942

  • 備考:
  • 参照:
    PubMed
  • No.: 207
  • 文献情報:
    David, S., 2020, Stem Cell and Tissue-Based Therapies for Male Infertility,

  • 備考:
  • 参照:
    PubMed
  • No.: 208
  • 文献情報:
    Arinzeh, T. L.; Khader, A., 2020, System and method for insulin-mimetic of cartilage, bone, or osteochondral repair and piezoelectric composite scaffold, US Patent 10,772,909

  • 備考:
  • 参照:
    PubMed
  • No.: 209
  • 文献情報:
    Li, P., 2020, The roles of extracellular matrix molecules matrilins and aggrecan in bone development and articular cartilage functions,

  • 備考:
  • 参照:
    PubMed
  • No.: 210
  • 文献情報:
    Keong, L. C., 2020, Dermal Delivery of Berberine for Suppression of Pain and Inflammation in Knee Osteoarthritis,

  • 備考:
  • 参照:
    PubMed
  • No.: 211
  • 文献情報:
    Munir, N.; McDonald, A.; Callanan, A., 2020, Integrational technologies for the development of three-dimensional scaffolds as platforms in cartilage tissue engineering, Acs Omega

  • 備考:
  • 参照:
    PubMed
  • No.: 212
  • 文献情報:
    Schipani, R.; Scheurer, S.; Florentin, R.; Critchley, S. E.; ..., 2020, Reinforcing interpenetrating network hydrogels with 3D printed polymer networks to engineer cartilage mimetic composites, …

  • 備考:
  • 参照:
    PubMed
  • No.: 213
  • 文献情報:
    Higuita, M. L., 2020, Xenogeneic Small Diameter Vein Extracellular Matrix Scaffolds for Use in Vascular Diseases,

  • 備考:
  • 参照:
    PubMed
  • No.: 214
  • 文献情報:
    Jahanbakhsh, A.; Nourbakhsh, M. S.; Bonakdar, S.; ..., 2020, Evaluation of alginate modification effect on cell-matrix interaction, mechanotransduction and chondrogenesis of encapsulated MSCs, Cell and tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 215
  • 文献情報:
    Settembre, C.; Cinque, L.; Bartolomeo, R.; ..., 2020, Treatment of bone growth disorders, US Patent App. 15 …

  • 備考:
  • 参照:
    PubMed
  • No.: 216
  • 文献情報:
    Hong, H.; Seo, Y. B.; Lee, J. S.; Lee, Y. J.; Lee, H.; Ajiteru, O.; ..., 2020, Digital light processing 3D printed silk fibroin hydrogel for cartilage tissue engineering, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 217
  • 文献情報:
    Bielajew, B.; Hu, J.; Athanasiou, K.; Gonzalez-Leon, E., 2020, Engineering self-assembled neomenisci through combination of matrix augmentation and directional remodeling.,

  • 備考:
  • 参照:
    PubMed
  • No.: 218
  • 文献情報:
    Higuita, M. L.; Griffiths, L., 2020, Effect of extracellular matrix scaffold generation method on function of small diameter venous valved conduits, Available at SSRN 3509327

  • 備考:
  • 参照:
    PubMed
  • No.: 219
  • 文献情報:
    Baumann, H., 2020, Molecular investigation into spinal cord injury regeneration barriers and therapeutic strategies,

  • 備考:
  • 参照:
    PubMed
  • No.: 220
  • 文献情報:
    Badylak, S. F.; Freytes, D., 2020, Extracellular matrix-derived gels and related methods, US Patent 10,729,813

  • 備考:
  • 参照:
    PubMed
  • No.: 221
  • 文献情報:
    Fischer, I., 2020, Extracellular Matrix-and Pluripotent Stem Cell-based Tissue Engineering of the Kidney,

  • 備考:
  • 参照:
    PubMed
  • No.: 222
  • 文献情報:
    Tiemann, T. T.; Padma, A. M.; Sehic, E.; ..., 2020, Towards uterus tissue engineering: a comparative study of sheep uterus decellularisation, Molecular human …

  • 備考:
  • 参照:
    PubMed
  • No.: 223
  • 文献情報:
    Helgeland, E., 2020, Scaffold-Based Temporomandibular Joint Cartilage Regeneration: Using Bone Marrow-Derived Mesenchymal Stem Cells,

  • 備考:
  • 参照:
    PubMed
  • No.: 224
  • 文献情報:
    Li, P.; Fleischhauer, L.; Nicolae, C.; Prein, C.; ..., 2020, Mice lacking the matrilin family of extracellular matrix proteins develop mild skeletal abnormalities and are susceptible to age-associated osteoarthritis, International journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 225
  • 文献情報:
    Sumitran-Holgersson, S.; Rosales, A.; ..., 2020, Bioengineered allogeneic valve, US Patent App. 16 …

  • 備考:
  • 参照:
    PubMed
  • No.: 226
  • 文献情報:
    Weisgrab, G.; Guillaume, O.; Guo, Z.; Heimel, P.; ..., 2020, 3D Printing of large-scale and highly porous biodegradable tissue engineering scaffolds from poly (trimethylene-carbonate) using two-photon-polymerization, …

  • 備考:
  • 参照:
    PubMed
  • No.: 227
  • 文献情報:
    Son, Y. S.; Lee, J. S.; Lee, E. K.; Lee, J. Y., 2020, Artificial cartilage containing chondrocytes obtained from costal cartilage and preparation process thereof, US Patent 10,583,157

  • 備考:
  • 参照:
    PubMed
  • No.: 228
  • 文献情報:
    V箪born箪, K., 2020, Development of extracellular-matrix scaffolds for CNS repair,

  • 備考:
  • 参照:
    PubMed
  • No.: 229
  • 文献情報:
    Gonzalez-Leon, E. A.; Bielajew, B. J.; Hu, J. C.; ..., 2020, Engineering self-assembled neomenisci through combination of matrix augmentation and directional remodeling, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 230
  • 文献情報:
    Naffa, R.; Zhang, Y.; Mansel, B.; Zhang, W.; ..., 2020, Chemical and structural composition of alpaca (vicugna pacos) skin with a focus on collagen crosslinks, Small ruminant …

  • 備考:
  • 参照:
    PubMed
  • No.: 231
  • 文献情報:
    Weissenberger, M.; Weissenberger, M. H.; Gilbert, F.; ..., 2020, Reduced hypertrophy in vitro after chondrogenic differentiation of adult human mesenchymal stem cells following adenoviral SOX9 gene delivery, BMC musculoskeletal …

  • 備考:
  • 参照:
    PubMed
  • No.: 232
  • 文献情報:
    Critchley, S.; Sheehy, E. J.; Cunniffe, G.; Diaz-Payno, P.; ..., 2020, 3D printing of fibre-reinforced cartilaginous templates for the regeneration of osteochondral defects, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 233
  • 文献情報:
    Salinas, E. Y., 2020, Using mechanical stimulation to improve tissue-engineered articular cartilage for implantation in the knee joint,

  • 備考:
  • 参照:
    PubMed
  • No.: 234
  • 文献情報:
    Klinder, A.; Kussauer, S.; Hiemer, B.; Wree, A.; ..., 2020, Influence of conditioned media on the re-differentiation capacity of human chondrocytes in 3D spheroid cultures, Journal of Clinical …

  • 備考:
  • 参照:
    PubMed
  • No.: 235
  • 文献情報:
    El-Jawhari, J.; Ilas, D.; Jones, W.; Cuthbert, R.; ..., 2020, Enrichment and preserved functionality of multipotential stromal cells in bone marrow concentrate processed by vertical centrifugation, European Cells and …

  • 備考:
  • 参照:
    PubMed
  • No.: 236
  • 文献情報:
    Higuita, M. L.; Griffiths, L. G., 2020, Antigen removal process preserves function of small diameter venous valved conduits, whereas SDS-decellularization results in significant valvular insufficiency, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 237
  • 文献情報:
    Bhattacharjee, P.; Cavanagh, B. L.; Ahearne, M., 2020, Effect of substrate topography on the regulation of human corneal stromal cells, Colloids and Surfaces B …

  • 備考:
  • 参照:
    PubMed
  • No.: 238
  • 文献情報:
    Zouhair, S.; Sasso, E. Dal; Tuladhar, S. R.; Fidalgo, C.; ..., 2020, A comprehensive comparison of bovine and porcine decellularized pericardia: new insights for surgical applications, Biomolecules

  • 備考:
  • 参照:
    PubMed
  • No.: 239
  • 文献情報:
    Parmaksiz, M.; El巽in, A. E.; El巽in, Y. M., 2020, Decellularized cell culture ECMs act as cell differentiation inducers, Stem Cell Reviews and Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 240
  • 文献情報:
    Yu, J. J.; Lee, S. J.; Choi, S.; Kim, K. K.; Ryu, B.; Kim, C. Y.; ..., 2020, Fabrication of a polycaprolactone/alginate bipartite hybrid scaffold for osteochondral tissue using a three-dimensional bioprinting system, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 241
  • 文献情報:
    Oudot, M.; Shir, I. B.; Schmidt, A.; Plasseraud, L.; ..., 2020, A nature's curiosity: the argonaut “shell” and its organic content, Crystals

  • 備考:
  • 参照:
    PubMed
  • No.: 242
  • 文献情報:
    Vieira, J. T. S., 2020, Decellularized matrices as platforms for studying cancer cells,

  • 備考:
  • 参照:
    PubMed
  • No.: 243
  • 文献情報:
    Kim, M. J.; Lee, J. H.; Kim, J. S.; Kim, H. Y.; Lee, H. C.; ..., 2020, Intervertebral disc regeneration using stem cell/growth factor-loaded porous particles with a leaf-stacked structure, …

  • 備考:
  • 参照:
    PubMed
  • No.: 244
  • 文献情報:
    Gruber, S. M. S., 2020, A platform technology for concurrent 3D printing of decellularized matrices and polycaprolactone for regeneration in homogenous and heterogeneous tissues,

  • 備考:
  • 参照:
    PubMed
  • No.: 245
  • 文献情報:
    Pandit, A.; Krishna, V.; Ismail, S.; ..., 2020, Hyaluronan compositions, and uses thereof in treatment of interstitial cystitis, US Patent App. 16/339,512

  • 備考:
  • 参照:
    PubMed
  • No.: 246
  • 文献情報:
    ANSARI, TI; SIBBONS, PD, 2020, Implant and method of producing an implant by decellularising an tissue by perfusion under negative pressure,

  • 備考:
  • 参照:
    PubMed
  • No.: 247
  • 文献情報:
    Baba, O.; Elvington, A.; Szpakowska, M.; Sultan, D.; Heo, G. S.; ..., 2020, CXCR4-binding PET tracers link monocyte recruitment and endothelial injury in murine atherosclerosis, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 248
  • 文献情報:
    Zubillaga, V.; Alonso-Varona, A.; Fernandes, S. C. M.; ..., 2020, Adipose-derived mesenchymal stem cell chondrospheroids cultured in hypoxia and a 3D porous chitosan/chitin nanocrystal scaffold as a platform for cartilage …, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 249
  • 文献情報:
    McNeill, E. P.; Zeitouni, S.; Pan, S.; Haskell, A.; ..., 2020, Characterization of a pluripotent stem cell-derived matrix with powerful osteoregenerative capabilities, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 250
  • 文献情報:
    Yamashita, T.; Fujii, T.; Yamauchi, I.; Ueda, Y.; ..., 2020, C-type natriuretic peptide restores growth impairment under enzyme replacement in mice with mucopolysaccharidosis VII, …

  • 備考:
  • 参照:
    PubMed
  • No.: 251
  • 文献情報:
    Yang, J.; Xiao, Y.; Tang, Z.; Luo, Z.; Li, D.; Wang, Q.; ..., 2020, The negatively charged microenvironment of collagen hydrogels regulates the chondrogenic differentiation of bone marrow mesenchymal stem cells in vitro and in …, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 252
  • 文献情報:
    Bordbar, S.; Bakhshaiesh, N. Lotfi; ..., 2020, Production and evaluation of decellularized extracellular matrix hydrogel for cartilage regeneration derived from knee cartilage, … Research Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 253
  • 文献情報:
    Liu, J.; Li, B.; Jing, H.; Wu, Y.; Kong, D.; ..., 2020, Swim bladder as a novel biomaterial for cardiovascular materials with anti‐calcification properties, Advanced Healthcare …

  • 備考:
  • 参照:
    PubMed
  • No.: 254
  • 文献情報:
    Salonius, E.; Kontturi, L.; Laitinen, A.; ..., 2020, Chondrogenic differentiation of human bone marrow‐derived mesenchymal stromal cells in a three‐dimensional environment, Journal of Cellular …

  • 備考:
  • 参照:
    PubMed
  • No.: 255
  • 文献情報:
    Khader, A.; Arinzeh, T. L., 2020, Biodegradable zinc oxide composite scaffolds promote osteochondral differentiation of mesenchymal stem cells, Biotechnology and Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 256
  • 文献情報:
    Moser, P. T.; Gerli, M.; Diercks, G. R.; ..., 2020, Creation of laryngeal grafts from primary human cells and decellularized laryngeal scaffolds, … Engineering Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 257
  • 文献情報:
    Shen, H.; Lin, H.; Sun, A. X.; Song, S.; Wang, B.; Yang, Y.; Dai, J.; ..., 2020, Acceleration of chondrogenic differentiation of human mesenchymal stem cells by sustained growth factor release in 3D graphene oxide incorporated hydrogels, Acta Biomateriali

  • 備考:
  • 参照:
    PubMed
  • No.: 258
  • 文献情報:
    Bhattacharjee, P.; Cavanagh, B. L.; Ahearne, M., 2020, Influence of micropatterned substrates on keratocyte phenotype, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 259
  • 文献情報:
    Moncada-Palazuelos, L. T., 2020, Canine Osteochondritis Dissecans Surgical Fragments as a Cell Source for Scaffold-Free Cartilage Tissue Engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 260
  • 文献情報:
    Kao, C. Y.; Nguyen, H. Q. D.; Weng, Y. C., 2020, Characterization of porcine urinary bladder matrix hydrogels from sodium dodecyl sulfate decellularization method, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 261
  • 文献情報:
    Parate, D.; Kadir, N. D.; Celik, C.; Lee, E. H.; Hui, J. H. P.; ..., 2020, Pulsed electromagnetic fields potentiate the paracrine function of mesenchymal stem cells for cartilage regeneration, Stem cell research & …

  • 備考:
  • 参照:
    PubMed
  • No.: 262
  • 文献情報:
    Mony, M. P.; Anilkumar, T. V., 2020, Controlled cross‐linking of porcine cholecyst extracellular matrix for preparing tissue engineering scaffold, Journal of Biomedical Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 263
  • 文献情報:
    Lee, J. M.; Ko, J. Y.; Park, J. W.; Lee, W. K.; ..., 2020, KLF10 is a modulatory factor of chondrocyte hypertrophy in developing skeleton, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 264
  • 文献情報:
    Li, X. G.; Park, I. S.; Choi, B. H.; Kim, U. J.; Min, B. H., 2020, In Vivo Bioreactor Using Cellulose Membrane Benefit Engineering Cartilage by Improving the Chondrogenesis and Modulating the Immune Response, Tissue Engineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 265
  • 文献情報:
    Zhou, X.; Zhang, F.; Wang, D.; Wang, J.; ..., 2020, Micro fragmented adipose tissue promotes the matrix synthesis function of nucleus pulposus cells and regenerates degenerated intervertebral disc in a pig model, Cell …

  • 備考:
  • 参照:
    PubMed
  • No.: 266
  • 文献情報:
    McDermott, A. M.; Eastburn, E. A.; Kelly, D. J.; Boerckel, J. D., 2020, Effects of chondrogenic priming duration on mechanoregulation of engineered cartilage anlagen, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 267
  • 文献情報:
    Jana, S.; Lerman, A., 2020, Trilayered tissue construct mimicking the orientations of three layers of a native heart valve leaflet, Cell and tissue research

  • 備考:
  • 参照:
    PubMed
  • No.: 268
  • 文献情報:
    Hatami-Marbini, H.; Pachenari, M., 2020, The contribution of sGAGs to stress-controlled tensile response of posterior porcine sclera, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 269
  • 文献情報:
    Ansari, T.; Southgate, A.; Obiri-Yeboa, I.; ..., 2020, Development and characterization of a porcine liver scaffold, Stem Cells and …

  • 備考:
  • 参照:
    PubMed
  • No.: 270
  • 文献情報:
    Alshaikh, A. B.; Padma, A. M.; Dehlin, M.; Akouri, R.; ..., 2020, Decellularization and recellularization of the ovary for bioengineering applications; studies in the mouse, Reproductive Biology …

  • 備考:
  • 参照:
    PubMed
  • No.: 271
  • 文献情報:
    Yu, S. H.; Kim, H. J.; Jeon, S. Y.; Kim, M. R.; Lee, B. S.; ..., 2020, Anti-inflammatory and anti-nociceptive activities of Alpinia oxyphylla Miquel extracts in animal models, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 272
  • 文献情報:
    Yao, Y.; Wang, P.; Li, X.; Xu, Y.; Lu, G.; Jiang, Q.; Sun, Y.; Fan, Y.; ..., 2020, A di-self-crosslinking hyaluronan-based hydrogel combined with type I collagen to construct a biomimetic injectable cartilage-filling scaffold, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 273
  • 文献情報:
    Weissenberger, M.; Weissenberger, M. H.; ..., 2020, Different types of cartilage neotissue fabricated from collagen hydrogels and mesenchymal stromal cells via SOX9, TGFB1 or BMP2 gene transfer, PLoS …

  • 備考:
  • 参照:
    PubMed
  • No.: 274
  • 文献情報:
    Lu, Y.; Wang, Y.; Zhang, H.; Tang, Z.; Cui, X.; ..., 2021, Solubilized cartilage ECM facilitates the recruitment and chondrogenesis of endogenous BMSCs in collagen scaffolds for enhancing microfracture treatment, … Applied Materials & …

  • 備考:
  • 参照:
    PubMed
  • No.: 275
  • 文献情報:
    Lee, K.; Chen, Y.; Li, X.; Kawazoe, N.; Yang, Y.; ..., 2021, Influence of viscosity on chondrogenic differentiation of mesenchymal stem cells during 3D culture in viscous gelatin solution-embedded hydrogels, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 276
  • 文献情報:
    Dabaghi, M.; Saraei, N.; Carpio, M. B.; Nanduri, V.; ..., 2021, A robust protocol for decellularized human lung bioink generation amenable to 2D and 3D lung cell culture, Cells

  • 備考:
  • 参照:
    PubMed
  • No.: 277
  • 文献情報:
    Xie, Y.; Lee, K.; Wang, X.; Yoshitomi, T.; ..., 2021, Interconnected collagen porous scaffolds prepared with sacrificial PLGA sponge templates for cartilage tissue engineering, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 278
  • 文献情報:
    Gryadunova, A.; Kasamkattil, J.; Gay, M. H. P.; Dasen, B.; ..., 2021, Nose to spine: Spheroids generated by human nasal chondrocytes for scaffold-free nucleus pulposus augmentation, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 279
  • 文献情報:
    Russell, T.; Watad, A.; Bridgewood, C.; Rowe, H.; Khan, A.; ..., 2021, IL-17A and TNF modulate normal human spinal entheseal bone and soft tissue mesenchymal stem cell osteogenesis, adipogenesis, and stromal function, Cells

  • 備考:
  • 参照:
    PubMed
  • No.: 280
  • 文献情報:
    Jin, R.; Cui, Y.; Chen, H.; Zhang, Z.; Weng, T.; Xia, S.; Yu, M.; ..., 2021, Three-dimensional bioprinting of a full-thickness functional skin model using acellular dermal matrix and gelatin methacrylamide bioink, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 281
  • 文献情報:
    Marinkovic, M.; Sridharan, R.; Santarella, F.; ..., 2021, Optimization of extracellular matrix production from human induced pluripotent stem cell‐derived fibroblasts for scaffold fabrication for application in wound healing, … Research Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 282
  • 文献情報:
    Helgeland, E.; Rashad, A.; Campodoni, E.; ..., 2021, Dual-crosslinked 3D printed gelatin scaffolds with potential for temporomandibular joint cartilage regeneration, Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 283
  • 文献情報:
    Kwon, H.; Brown, W. E.; O'Leary, S. A.; Hu, J. C.; ..., 2021, Rejuvenation of extensively passaged human chondrocytes to engineer functional articular cartilage, …

  • 備考:
  • 参照:
    PubMed
  • No.: 284
  • 文献情報:
    Zabolian, A. H.; Rostami, M.; Eftekharzadeh, S.; ..., 2021, In Vivo Colon Regeneration: from Decellularization to In Vivo Implantation in a Rat Model Using the Body as a Natural Bioreactor, Regenerative …

  • 備考:
  • 参照:
    PubMed
  • No.: 285
  • 文献情報:
    Fern叩ndez-P辿rez, J.; Madden, P. W.; Brady, R. T.; ..., 2021, The effect of prior long-term recellularization with keratocytes of decellularized porcine corneas implanted in a rabbit anterior lamellar keratoplasty model, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 286
  • 文献情報:
    Auriol, D.; Chajra, H.; Lefevre, F., 2021, Skin restoration product, US Patent 11,026,875

  • 備考:
  • 参照:
    PubMed
  • No.: 287
  • 文献情報:
    Lee, H.; Kim, W. J.; Lee, J. U.; Park, K. S.; Yoo, J. J.; ..., 2021, Self-aligned myofibers in 3D bioprinted extracellular matrix-based construct accelerate skeletal muscle function restoration, Applied physics …

  • 備考:
  • 参照:
    PubMed
  • No.: 288
  • 文献情報:
    Casal-Beiroa, P.; Balboa-Barreiro, V.; Oreiro, N.; ..., 2021, Optical biomarkers for the diagnosis of osteoarthritis through raman spectroscopy: radiological and biochemical validation using ex vivo human cartilage …, Diagnostics

  • 備考:
  • 参照:
    PubMed
  • No.: 289
  • 文献情報:
    Varinelli, L.; Guaglio, M.; Brich, S.; Zanutto, S.; Belfiore, A.; ..., 2021, Decellularized Normal and Tumor Extracellular Matrix as Scaffold for Cancer Organoid Cultures of Colorectal Peritoneal Metastases, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 290
  • 文献情報:
    Kim, S. H.; Hong, H.; Ajiteru, O.; Sultan, M. T.; Lee, Y. J.; ..., 2021, 3D bioprinted silk fibroin hydrogels for tissue engineering, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 291
  • 文献情報:
    Burdis, R.; Chariyev-Prinz, F.; Kelly, D. J., 2021, Bioprinting of biomimetic self-organised cartilage with a supporting joint fixation device, Biofabrication

  • 備考:
  • 参照:
    PubMed
  • No.: 292
  • 文献情報:
    Al‐Qurayshi, Z.; Wafa, E. I.; Hoffman, H.; ..., 2021, Tissue‐engineering the larynx: Effect of decellularization on human laryngeal framework and the cricoarytenoid joint, … Research Part B …

  • 備考:
  • 参照:
    PubMed
  • No.: 293
  • 文献情報:
    Liu, J.; Lu, Y.; Xing, F.; Liang, J.; Wang, Q.; Fan, Y.; ..., 2021, Cell-free scaffolds functionalized with bionic cartilage acellular matrix microspheres to enhance the microfracture treatment of articular cartilage defects, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 294
  • 文献情報:
    Fell, C. W.; Hagelkruys, A.; Cicvaric, A.; Horrer, M.; Liu, L.; ..., 2021, FIBCD1 is a conserved receptor for chondroitin sulphate proteoglycans of the brain extracellular matrix and a candidate gene for a complex neurodevelopmental …, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 295
  • 文献情報:
    Kang, Y. M.; Shin, E. J.; Lee, B. H.; Yang, J. H.; Lee, H. M.; ..., 2021, Hypoxia regulates the extracellular matrix via mitogen-activated protein kinases pathway in cells retrieved from the human intervertebral disc, Yonsei medical …

  • 備考:
  • 参照:
    PubMed
  • No.: 296
  • 文献情報:
    Tsuyuguchi, Y.; Nakasa, T.; Ishikawa, M.; Miyaki, S.; ..., 2021, The benefit of minced cartilage over isolated chondrocytes in atelocollagen gel on chondrocyte proliferation and migration, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 297
  • 文献情報:
    Ebrahim, N.; Badr, O. A. M.; Yousef, M. M.; Hassouna, A.; ..., 2021, Functional recellularization of acellular rat liver scaffold by induced pluripotent stem cells: Molecular evidence for wnt/b-catenin upregulation, Cells

  • 備考:
  • 参照:
    PubMed
  • No.: 298
  • 文献情報:
    Uzieliene, I.; Bagdonas, E.; Hoshi, K.; Sakamoto, T.; ..., 2021, Different phenotypes and chondrogenic responses of human menstrual blood and bone marrow mesenchymal stem cells to activin A and TGF-β3, Stem Cell Research & …

  • 備考:
  • 参照:
    PubMed
  • No.: 299
  • 文献情報:
    Risi, M. De; Tufano, M.; Alvino, F. G.; Ferraro, M. G.; ..., 2021, Altered heparan sulfate metabolism during development triggers dopamine-dependent autistic-behaviours in models of lysosomal storage disorders, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 300
  • 文献情報:
    Kim, S. J.; Jung, S. Y.; Lee, M. J.; Bae, J. H.; ..., 2021, Porcine tracheal mucosa-derived decellularized patch to prevent septal perforation in a rabbit model, American journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 301
  • 文献情報:
    Tang, Z.; Lu, Y.; Zhang, S.; Wang, J.; Wang, Q.; ..., 2021, Chondrocyte secretome enriched microparticles encapsulated with the chondrocyte membrane to facilitate the chondrogenesis of BMSCs and reduce hypertrophy, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 302
  • 文献情報:
    Ercan, H.; El巽in, A. E.; El巽in, Y. M., 2021, Preliminary assessment of an injectable extracellular matrix from decellularized bovine myocardial tissue, Zeitschrift f端r Naturforschung C

  • 備考:
  • 参照:
    PubMed
  • No.: 303
  • 文献情報:
    Li, H.; Li, J.; Yu, S.; Wu, C.; Zhang, W., 2021, The mechanical properties of tibiofemoral and patellofemoral articular cartilage in compression depend on anatomical regions, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 304
  • 文献情報:
    Mahon, O. R.; Browe, D. C.; Diaz-Payno, P. J.; ..., 2021, Extracellular matrix scaffolds derived from different musculoskeletal tissues drive distinct macrophage phenotypes and direct tissue-specific cellular …, Journal of Immunology …

  • 備考:
  • 参照:
    PubMed
  • No.: 305
  • 文献情報:
    Shin, Y. H.; Yun, H. W.; Park, S. Y.; Choi, S. J.; ..., 2021, Effect of glutaraldehyde‐crosslinked cartilage acellular matrix film on anti‐adhesion and nerve regeneration in a rat sciatic nerve injury model, Journal of tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 306
  • 文献情報:
    Houreh, A. B.; Masaeli, E.; Nasr-Esfahani, M. H., 2021, Chitosan/polycaprolactone multilayer hydrogel: A sustained Kartogenin delivery model for cartilage regeneration, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 307
  • 文献情報:
    Qin, X.; He, R.; Chen, H.; Fu, D.; Peng, Y.; ..., 2021, Methacrylated pullulan/polyethylene (glycol) diacrylate composite hydrogel for cartilage tissue engineering, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 308
  • 文献情報:
    Yaldiz, B.; Saglam-Metiner, P.; Cam, S. B.; ..., 2021, Effect of sterilization methods on the mechanical stability and extracellular matrix constituents of decellularized brain tissues, The Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 309
  • 文献情報:
    Al-Qurayshi, Z.; Wafa, E. I.; Meyer, MK Rossi; ..., 2021, Tissue engineering the pinna: comparison and characterization of human decellularized auricular biological scaffolds, ACS applied bio …

  • 備考:
  • 参照:
    PubMed
  • No.: 310
  • 文献情報:
    Lテウpez-Martテュnez, S.; Campo, H.; ..., 2021, A Natural Xenogeneic Endometrial Extracellular Matrix Hydrogel Toward Improving Current Human in vitro Models and Future in vivo Applications, 窶ヲ in Bioengineering and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 311
  • 文献情報:
    Wang, D.; Zhu, Y.; Huang, Y.; Zhu, J.; Zhu, B.; ..., 2021, Pancreatic extracellular matrix/alginate hydrogels provide a supportive microenvironment for insulin-producing cells, ACS Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 312
  • 文献情報:
    Bose, S. K.; White, B. M.; Kashyap, M. V.; Dave, A.; ..., 2021, In utero adenine base editing corrects multi-organ pathology in a lethal lysosomal storage disease, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 313
  • 文献情報:
    Maumus, M.; Fonteneau, G.; Ruiz, M.; Assou, S.; ..., 2021, Neuromedin B promotes chondrocyte differentiation of mesenchymal stromal cells via calcineurin and calcium signaling, Cell &Bioscience

  • 備考:
  • 参照:
    PubMed
  • No.: 314
  • 文献情報:
    Chen, Z.; Zhang, B.; Shu, J.; Wang, H.; Han, Y.; ..., 2021, Human decellularized adipose matrix derived hydrogel assists mesenchymal stem cells delivery and accelerates chronic wound healing, … Research Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 315
  • 文献情報:
    Zhai, W.; Tan, J.; Russell, T.; Chen, S.; McGonagle, D.; ..., 2021, Multi-pronged approach to human mesenchymal stromal cells senescence quantification with a focus on label-free methods, Scientific reports

  • 備考:
  • 参照:
    PubMed
  • No.: 316
  • 文献情報:
    Dehghan‐Baniani, D.; Mehrjou, B.; ..., 2021, A biomimetic nano‐engineered platform for functional tissue engineering of cartilage superficial zone, Advanced Healthcare …

  • 備考:
  • 参照:
    PubMed
  • No.: 317
  • 文献情報:
    Fang, R.; Jiang, Q.; Guan, Y.; Gao, P.; Zhang, R.; Zhao, Z.; ..., 2021, Golgi apparatus-synthesized sulfated glycosaminoglycans mediate polymerization and activation of the cGAMP sensor STING, Immunity

  • 備考:
  • 参照:
    PubMed
  • No.: 318
  • 文献情報:
    Jeannerat, A.; Peneveyre, C.; Armand, F.; Chiappe, D.; ..., 2021, Hypoxic incubation conditions for optimized manufacture of tenocyte-based active pharmaceutical ingredients of homologous standardized transplant …, Cells

  • 備考:
  • 参照:
    PubMed
  • No.: 319
  • 文献情報:
    Parmaksiz, M., 2021, Development of a Nanofibrous Scaffold Based on Bovine Tissue-derived ECM and Poly (竜-caprolactone) for Tissue Engineering Applications, Hittite Journal of Science and Engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 320
  • 文献情報:
    Padalhin, A.; Ventura, R.; Kim, B.; Sultana, T.; ..., 2021, Boosting osteogenic potential and bone regeneration by co-cultured cell derived extracellular matrix incorporated porous electrospun scaffold, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 321
  • 文献情報:
    Weng, J.; Chen, B.; Xie, M.; Wan, X.; Wang, P.; Zhou, X.; ..., 2021, Rabbit thyroid extracellular matrix as a 3D bioscaffold for thyroid bioengineering: a preliminary in vitro study, BioMedical Engineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 322
  • 文献情報:
    Wu, Z.; Korntner, S. H.; Mullen, A. M.; Skoufos, I.; ..., 2021, In the quest of the optimal tissue source (porcine male and female articular, tracheal and auricular cartilage) for the development of collagen sponges for …, Biomedical Engineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 323
  • 文献情報:
    Autissier, R.; Mazuel, L.; Maubert, E.; ..., 2021, Simultaneous proteoglycans and hypoxia mapping of chondrosarcoma environment by frequency selective CEST MRI, Magnetic …

  • 備考:
  • 参照:
    PubMed
  • No.: 324
  • 文献情報:
    Russell, T.; Rowe, H.; Bridgewood, C.; Cuthbert, R. J.; ..., 2021, Tofacitinib Blocks Entheseal Lymphocyte Activation and Modulates MSC Adipogenesis, But Does Not Directly Affect Chondro-and Osteogenesis, Immuno

  • 備考:
  • 参照:
    PubMed
  • No.: 325
  • 文献情報:
    Dong, L.; Liu, Q.; Gao, Y.; Jia, H.; Dai, W.; Guo, L.; ..., 2021, The effect of collagen hydrogels on chondrocyte behaviors through restricting the contraction of cell/hydrogel constructs, Regenerative …

  • 備考:
  • 参照:
    PubMed
  • No.: 326
  • 文献情報:
    Song, Y. H.; Maynes, M. A.; Hlavac, N.; Visosevic, D.; ..., 2021, Development of novel apoptosis-assisted lung tissue decellularization methods, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 327
  • 文献情報:
    Fu, C. Y.; Chuang, W. T.; Hsu, S., 2021, A biodegradable chitosan-polyurethane cryogel with switchable shape memory, ACS Applied Materials &Interfaces

  • 備考:
  • 参照:
    PubMed
  • No.: 328
  • 文献情報:
    Li, Y.; Chen, M.; Yan, J.; Zhou, W.; Gao, S.; Liu, S.; Li, Q.; ..., 2021, Tannic acid/Sr2+-coated silk/graphene oxide-based meniscus scaffold with anti-inflammatory and anti-ROS functions for cartilage protection and delaying …, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 329
  • 文献情報:
    Abusharkh, H. A.; Reynolds, O. M.; Mendenhall, J.; ..., 2021, Combining stretching and gallic acid to decrease inflammation indices and promote extracellular matrix production in osteoarthritic human articular chondrocytes, Experimental cell …

  • 備考:
  • 参照:
    PubMed
  • No.: 330
  • 文献情報:
    Gテウmez-Cid, L.; Lテウpez-Donaire, M. L.; Velasco, D.; ..., 2021, Cardiac extracellular matrix hydrogel enriched with polyethylene glycol presents improved gelation time and increased on-target site retention of extracellular 窶ヲ, International Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 331
  • 文献情報:
    Nieto-Nicolau, N.; Lテウpez-Chicテウn, P.; Fariテアas, O.; ..., 2021, Effective decellularization of human nerve matrix for regenerative medicine with a novel protocol, Cell and Tissue 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 332
  • 文献情報:
    Lin, C. H.; Hsia, K.; Su, C. K.; Chen, C. C.; Yeh, C. C.; Ma, H.; Lu, J. H., 2021, Sonication-assisted method for decellularization of human umbilical artery for small-caliber vascular tissue engineering, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 333
  • 文献情報:
    Li, B.; Jing, H.; Sun, Z.; Wang, X.; Kong, D.; Liu, J.; ..., 2021, Comprehensive analyses and prioritization of various swim bladder-derived extracellular matrix in the application of heart valve prosthesis, Smart Materials in …

  • 備考:
  • 参照:
    PubMed
  • No.: 334
  • 文献情報:
    Neidlinger-Wilke, C.; Ekkerlein, A.; ..., 2021, Mesenchymal stem cell secretome decreases the inflammatory response in annulus fibrosus organ cultures, eCells and Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 335
  • 文献情報:
    Almeida, H. V.; Tenreiro, M. F.; Louro, A. F.; ..., 2021, Human extracellular-matrix functionalization of 3D hiPSC-based cardiac tissues improves cardiomyocyte maturation, ACS applied bio …

  • 備考:
  • 参照:
    PubMed
  • No.: 336
  • 文献情報:
    Jana, S.; Franchi, F.; Lerman, A., 2021, Fibrous heart valve leaflet substrate with native-mimicked morphology, Applied materials today

  • 備考:
  • 参照:
    PubMed
  • No.: 337
  • 文献情報:
    Abusharkh, H. A.; Mallah, A. H.; Amr, M. M.; ..., 2021, Enhanced matrix production by cocultivated human stem cells and chondrocytes under concurrent mechanical strain, In Vitro Cellular & …

  • 備考:
  • 参照:
    PubMed
  • No.: 338
  • 文献情報:
    Chae, S.; Sun, Y.; Choi, Y. J.; Ha, D. H.; Jeon, I.; Cho, D. W., 2021, 3D cell-printing of tendon-bone interface using tissue-derived extracellular matrix bioinks for chronic rotator cuff repair, Biofabrication

  • 備考:
  • 参照:
    PubMed
  • No.: 339
  • 文献情報:
    Chae, S.; Lee, S. S.; Choi, Y. J.; Gao, G.; Wang, J. H.; Cho, D. W., 2021, 3D cell-printing of biocompatible and functional meniscus constructs using meniscus‐derived bioink, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 340
  • 文献情報:
    Lee, J.; Jang, S.; Kwon, J. P.; Oh, T. I.; Lee, E. A., 2021, Comparative evaluation of synovial multipotent stem cells and meniscal chondrocytes for capability of fibrocartilage reconstruction, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 341
  • 文献情報:
    Gaffke, L.; Pierzynowska, K.; Rintz, E.; Cyske, Z.; ..., 2021, Gene expression-related changes in morphologies of organelles and cellular component organization in mucopolysaccharidoses, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 342
  • 文献情報:
    Nedunchezian, S.; Banerjee, P.; Lee, C. Y.; Lee, S. S.; ..., 2021, Generating adipose stem cell-laden hyaluronic acid-based scaffolds using 3D bioprinting via the double crosslinked strategy for chondrogenesis, Materials Science and …

  • 備考:
  • 参照:
    PubMed
  • No.: 343
  • 文献情報:
    Hampton, J. D.; Peterson, E. J.; Katner, S. J.; Turner, T. H.; ..., 2021, Exploitation of sulfated glycosaminoglycan status for precision medicine of platinums in triple-negative breast cancer, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 344
  • 文献情報:
    Francテゥs-Herrero, E.; Miguel-Gテウmez, L. De; ..., 2021, Development of decellularized oviductal hydrogels as a support for rabbit embryo culture, Reproductive 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 345
  • 文献情報:
    Xie, M.; Fritch, M.; He, Y.; Fu, H.; Hong, Y.; Lin, H., 2021, Dynamic loading enhances chondrogenesis of human chondrocytes within a biodegradable resilient hydrogel, Biomaterials Science

  • 備考:
  • 参照:
    PubMed
  • No.: 346
  • 文献情報:
    Orfei, C. Perucca; Bowles, A. C.; Kouroupis, D.; ..., 2021, Human Tendon Stem/Progenitor Cell Features and Functionality Are Highly Influenced by in vitro Culture Conditions, … in bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 347
  • 文献情報:
    Hwang, H. S.; Lee, M. H.; Go, D. J.; Kim, H. A., 2021, Norepinephrine modulates IL-1硫-induced catabolic response of human chondrocytes, BMC Musculoskeletal Disorders

  • 備考:
  • 参照:
    PubMed
  • No.: 348
  • 文献情報:
    Monteiro, M. V.; Gaspar, V. M.; Mendes, L.; Duarte, I. F.; ..., 2021, Stratified 3D microtumors as organotypic testing platforms for screening pancreatic cancer therapies, Small …

  • 備考:
  • 参照:
    PubMed
  • No.: 349
  • 文献情報:
    Li, Y.; Wu, Q.; Li, L.; Chen, F.; Bao, J.; ..., 2021, Decellularization of porcine whole lung to obtain a clinical‐scale bioengineered scaffold, Journal of Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 350
  • 文献情報:
    Galicka, A.; Sutkowska-Skolimowska, J., 2021, The beneficial effect of rosmarinic acid on benzophenone-3-induced alterations in human skin fibroblasts, International Journal of Molecular …

  • 備考:
  • 参照:
    PubMed
  • No.: 351
  • 文献情報:
    Levingstone, T. J.; Moran, C.; Almeida, H. V.; Kelly, D. J.; ..., 2021, Layer-specific stem cell differentiation in tri-layered tissue engineering biomaterials: Towards development of a single-stage cell-based approach for …, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 352
  • 文献情報:
    Espinosa, M. G.; Otarola, G. A.; Hu, J. C.; ..., 2021, Vibrometry as a noncontact alternative to dynamic and viscoelastic mechanical testing in cartilage, Journal of the Royal …

  • 備考:
  • 参照:
    PubMed
  • No.: 353
  • 文献情報:
    Yang, J.; Tang, Z.; Liu, Y.; Luo, Z.; Xiao, Y.; Zhang, X., 2021, Comparison of chondro-inductivity between collagen and hyaluronic acid hydrogel based on chemical/physical microenvironment, International journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 354
  • 文献情報:
    Kobayashi, M.; Chijimatsu, R.; Hart, D. A.; ..., 2021, Evidence that TD‐198946 enhances the chondrogenic potential of human synovium‐derived stem cells through the NOTCH3 signaling pathway, Journal of Tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 355
  • 文献情報:
    Sun, F.; Lu, Y.; Wang, Z.; Zhang, B.; Shen, Z.; Yuan, L.; ..., 2021, Directly construct microvascularization of tissue engineering trachea in orthotopic transplantation, Materials Science and …

  • 備考:
  • 参照:
    PubMed
  • No.: 356
  • 文献情報:
    Wang, H.; Xu, Y.; Wang, P.; Ma, J.; Wang, P.; Han, X.; Fan, Y.; ..., 2021, Cell-mediated injectable blend hydrogel-BCP ceramic scaffold for in situ condylar osteochondral repair, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 357
  • 文献情報:
    Yang, Y.; Zhu, Z.; Gao, R.; Yuan, J.; Zhang, J.; Li, H.; Xie, Z.; ..., 2021, Controlled release of MSC-derived small extracellular vesicles by an injectable Diels-Alder crosslinked hyaluronic acid/PEG hydrogel for osteoarthritis improvement, Acta Biomater

  • 備考:
  • 参照:
    PubMed
  • No.: 358
  • 文献情報:
    Seifer, P.; Hay, E.; Fleischhauer, L.; Heilig, J.; Bloch, W.; ..., 2021, The Matrilin-3 T298M mutation predisposes for post-traumatic osteoarthritis in a knock-in mouse model, Osteoarthritis and …

  • 備考:
  • 参照:
    PubMed
  • No.: 359
  • 文献情報:
    Cao, H.; Wang, X.; Chen, M.; Liu, Y.; Cui, X.; ..., 2021, Childhood cartilage ECM enhances the chondrogenesis of endogenous cells and subchondral bone repair of the unidirectional collagen窶電ECM scaffolds in 窶ヲ, 窶ヲ Applied Materials & 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 360
  • 文献情報:
    Russell, T.; Watad, A.; Bridgewood, C.; Rowe, H.; Khan, A.; ..., 2021, IL-17A and TNF modulate normal human spinal entheseal bone and soft tissue mesenchymal stem cell osteogenesis, adipogenesis, and stromal function. Cells …,

  • 備考:
  • 参照:
    PubMed
  • No.: 361
  • 文献情報:
    Pierzynowska, K.; Podlacha, M.; ナ「szczek, D.; Rintz, E.; ..., 2021, Hair dysmorphology in the r6/1 and r6/2 mouse models of huntington's disease, Gene

  • 備考:
  • 参照:
    PubMed
  • No.: 362
  • 文献情報:
    Ferreira, L. P.; Gaspar, V. M.; Mendes, L.; Duarte, I. F.; Mano, J. F., 2021, Organotypic 3D decellularized matrix tumor spheroids for high-throughput drug screening, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 363
  • 文献情報:
    Espinosa, M. G.; Otarola, G. A.; Hu, J. C.; ..., 2021, Cartilage assessment requires a surface characterization protocol: roughness, friction, and function, … Engineering Part C …

  • 備考:
  • 参照:
    PubMed
  • No.: 364
  • 文献情報:
    Joung, S.; Yoon, D. S.; Cho, S.; Ko, E. A.; Lee, K. M.; ..., 2021, Downregulation of MicroRNA-495 alleviates IL-1β responses among chondrocytes by preventing SOX9 reduction, Yonsei medical …

  • 備考:
  • 参照:
    PubMed
  • No.: 365
  • 文献情報:
    Choi, M.; Sultana, T.; Park, M.; Lee, B. T., 2021, Fibroblast cell derived extracellular matrix containing electrospun scaffold as a hybrid biomaterial to promote in vitro endothelial cell expansion and functionalization, Materials Science and Engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 366
  • 文献情報:
    Willemse, J.; Roos, F. J. M.; Voogt, I. J.; ..., 2021, Scaffolds obtained from decellularized human extrahepatic bile ducts support organoids to establish functional biliary tissue in a dish, Biotechnology and …

  • 備考:
  • 参照:
    PubMed
  • No.: 367
  • 文献情報:
    Uto, S.; Hikita, A.; Sakamoto, T.; Mori, D.; Yano, F.; ..., 2021, Ear cartilage reconstruction combining induced pluripotent stem cell-derived cartilage and three-dimensional shape-memory scaffold, … Engineering Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 368
  • 文献情報:
    Jeong, W.; Kim, M. K.; Kang, H. W., 2021, Effect of detergent type on the performance of liver decellularized extracellular matrix-based bio-inks, Journal of tissue engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 369
  • 文献情報:
    Visscher, D. O.; Lee, H.; Zuijlen, PPM van; Helder, M. N.; ..., 2021, A photo-crosslinkable cartilage-derived extracellular matrix bioink for auricular cartilage tissue engineering, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 370
  • 文献情報:
    Aydトアn, N.; Karaismailoト殕u, B.; ..., 2021, Gene expression profiling of primary fibrochondrocyte cultures in traumatic and degenerative meniscus lesions, Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 371
  • 文献情報:
    Sobreiro-Almeida, R.; Gテウmez-Florit, M.; Quinteira, R.; ..., 2021, Decellularized kidney extracellular matrix bioinks recapitulate renal 3D microenvironment in vitro, 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 372
  • 文献情報:
    Sun, B.; Han, Y.; Jiang, W.; Dai, K., 2021, 3D Printing Bioink Preparation and Application in Cartilage Tissue Reconstruction in Vitro, Journal of Shanghai Jiaotong University …

  • 備考:
  • 参照:
    PubMed
  • No.: 373
  • 文献情報:
    Tenreiro, M. F.; Almeida, H. V.; Calmeiro, T.; Fortunato, E.; ..., 2021, Interindividual heterogeneity affects the outcome of human cardiac tissue decellularization, Scientific reports

  • 備考:
  • 参照:
    PubMed
  • No.: 374
  • 文献情報:
    Li, W.; Bai, Y.; Cao, J.; Gao, S.; Xu, P.; Feng, G.; Wang, L.; ..., 2021, Highly interconnected inverse opal extracellular matrix scaffolds enhance stem cell therapy in limb ischemia, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 375
  • 文献情報:
    Sulaiman, N. S.; Bond, A. R.; Bruno, V. D.; ..., 2021, Effective decellularisation of human saphenous veins for biocompatible arterial tissue engineering applications: Bench optimisation and feasibility in vivo testing, Journal of Tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 376
  • 文献情報:
    Mesquita, F. C. P.; Morrissey, J.; Lee, P. F.; Monnerat, G.; ..., 2021, Cues from human atrial extracellular matrix enrich the atrial differentiation of human induced pluripotent stem cell-derived cardiomyocytes, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 377
  • 文献情報:
    Li, X.; Bian, S.; Zhao, M.; Han, X.; Liang, J.; Wang, K.; Jiang, Q.; ..., 2021, Stimuli-responsive biphenyl-tripeptide supramolecular hydrogels as biomimetic extracellular matrix scaffolds for cartilage tissue engineering, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 378
  • 文献情報:
    P辿rez, M. L.; Castells-Sala, C.; L坦pez-Chic坦n, P.; ..., 2021, Fast protocol for the processing of split-thickness skin into decellularized human dermal matrix, Tissue and Cell

  • 備考:
  • 参照:
    PubMed
  • No.: 379
  • 文献情報:
    Elder, S. H.; Mosher, M. L.; Jarquin, P.; ..., 2021, Effects of short‐duration treatment of cartilage with punicalagin and genipin and the implications for treatment of osteoarthritis, … Research Part B …

  • 備考:
  • 参照:
    PubMed
  • No.: 380
  • 文献情報:
    Kr端ger, S., 2021, Untersuchungen zur biologischen Antwort humaner Chondrozyten auf kapazitiv gekoppelte elektrische Wechselfelder,

  • 備考:
  • 参照:
    PubMed
  • No.: 381
  • 文献情報:
    Staa, M. van, 2021, Ein neuer Kreuzbandersatz-Tissue Engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 382
  • 文献情報:
    Paya, JC Marin, 2021, 3D Culture o Multiple Myeloma Cell Line Using Microgel Environments,

  • 備考:
  • 参照:
    PubMed
  • No.: 383
  • 文献情報:
    Agost, M. Garc鱈a, 2021, Obtenci坦n de soportes biomim辿ticos para la expansi坦n de c辿lulas madre mesenquimales,

  • 備考:
  • 参照:
    PubMed
  • No.: 384
  • 文献情報:
    Briega, MI Garc鱈a, 2021, Desarrollo de microgeles basados en microc叩psulas huecas para generar modelos de enfermedad de mieloma m炭ltiple,

  • 備考:
  • 参照:
    PubMed
  • No.: 385
  • 文献情報:
    Gouardères, S., 2021, Réponses cellulaires et tissulaires de la peau humaine à l'application d'un champ électrique externe de type électroporation,

  • 備考:
  • 参照:
    PubMed
  • No.: 386
  • 文献情報:
    Salom, J. Pl叩, 2021, Obtenci坦n de microesferas de dextrano funcionalizadas como medio de cultivo tridimensional en un modelo de Mieloma M炭ltiple,

  • 備考:
  • 参照:
    PubMed
  • No.: 387
  • 文献情報:
    Brownell, L. A.; Chu, M.; Hong, M. F.; Eu-Jin, H.; Jia, Q.; ..., 2021, Compositions and methods for joint health, US Patent …

  • 備考:
  • 参照:
    PubMed
  • No.: 388
  • 文献情報:
    Amann, E. V. M., 2021, Natural-origin biopolymers and stem cells in chondral and osteochondral repair,

  • 備考:
  • 参照:
    PubMed
  • No.: 389
  • 文献情報:
    Russell, T. J. W., 2021, The effects of innate lymphocyte derived cytokines on spinal bone and entheses derived mesenchymal stem cells,

  • 備考:
  • 参照:
    PubMed
  • No.: 390
  • 文献情報:
    Katrekar, D., 2021, Engineering a programmable RNA editing toolset for correction of point mutations in vivo,

  • 備考:
  • 参照:
    PubMed
  • No.: 391
  • 文献情報:
    Ayoub, S.; Howsmon, D. P.; Lee, C. H.; Sacks, M. S., 2021, On the role of predicted in vivo mitral valve interstitial cell deformation on its biosynthetic behavior, Biomechanics and modeling …

  • 備考:
  • 参照:
    PubMed
  • No.: 392
  • 文献情報:
    Varinelli, L., 2021, Decellularised Normal and Tumour Scaffolds for Cancer Organoid Cultures as a Model of Colorectal Peritoneal Metastases,

  • 備考:
  • 参照:
    PubMed
  • No.: 393
  • 文献情報:
    Hahn, O., 2021, Proliferation and differentiation potential of human primary mesenchymal (stem/stromal) cells,

  • 備考:
  • 参照:
    PubMed
  • No.: 394
  • 文献情報:
    TUBERT, MFB; MENDOÇA, MVH; ..., 2021, Adenoassociated virus vectors for the treatment of lysosomal storage disorders, US Patent …

  • 備考:
  • 参照:
    PubMed
  • No.: 395
  • 文献情報:
    Ramer, M.; Badylak, S. F.; Keane, T., 2021, Method and composition for treating inflammatory bowel disease, US Patent App. 16/922,765

  • 備考:
  • 参照:
    PubMed
  • No.: 396
  • 文献情報:
    Mallah, A., 2021, Mechanistic Investigation of Articular Cartilage Development Representative of Diseased, Healthy, and Induced Inflammation States,

  • 備考:
  • 参照:
    PubMed
  • No.: 397
  • 文献情報:
    Santos, A.; Pedrosa, S.; Branquinho, M.; ..., 2021, Compositions for use in the treatment of musculoskeletal conditions and methods for producing the same leveraging the synergistic activity of two different types of …, US Patent App. 16 …

  • 備考:
  • 参照:
    PubMed
  • No.: 398
  • 文献情報:
    Hariri, R. J.; Bhatia, M., 2021, Extracellular matrix composition beads for cell culture, US Patent App. 17/025,124

  • 備考:
  • 参照:
    PubMed
  • No.: 399
  • 文献情報:
    Alshaikh, A. B., 2021, Principles of scaffold generation for bioengineering of the ovary and uterus: a study focusing on decellularization,

  • 備考:
  • 参照:
    PubMed
  • No.: 400
  • 文献情報:
    Yen, J. J., 2021, RNA Editing via Recruitment of Endogenous ADARs using Circular Antisense Guide RNAs,

  • 備考:
  • 参照:
    PubMed
  • No.: 401
  • 文献情報:
    Lee, K., 2021, Influence of Solution Viscosity on Cell Functions in 3D Culture System Using Gelatin Biphasic Hydrogels,

  • 備考:
  • 参照:
    PubMed
  • No.: 402
  • 文献情報:
    Kyriakides, T.; Morris, A., 2021, Compositions and methods useful in regenerative medicine, US Patent App. 16/757,811

  • 備考:
  • 参照:
    PubMed
  • No.: 403
  • 文献情報:
    Jia, W., 2021, Cell-derived Extracellular Matrix in Lymphangiogenesis and Cardiac Patch Engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 404
  • 文献情報:
    Hausmanns, S.; Oesser, S.; Dolle, F.; ..., 2021, Collagen hydrolysate for use with skin disorders and intestinal disorders, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 405
  • 文献情報:
    Wu, Z.; Korntner, S. H.; Mullen, A. M.; Zeugolis, D. I., 2021, In the quest of the optimal chondrichthyan for the development of collagen sponges for articular cartilage, Journal of Science: Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 406
  • 文献情報:
    Peck, S. H.; Lau, Y. K.; Kang, J. L.; Lin, M.; Arginteanu, T.; ..., 2021, Progression of vertebral bone disease in mucopolysaccharidosis VII dogs from birth to skeletal maturity, Molecular genetics and …

  • 備考:
  • 参照:
    PubMed
  • No.: 407
  • 文献情報:
    Ikeya, M.; Nakajima, T., 2021, Stepwise method of producing various types of cells from pluripotent stem cells, US Patent App. 16/979,956

  • 備考:
  • 参照:
    PubMed
  • No.: 408
  • 文献情報:
    Gansau, J.; Buckley, C. T., 2021, Priming as a strategy to overcome detrimental PH effects on cells for intervertebral disc regeneration, Eur Cells Mater

  • 備考:
  • 参照:
    PubMed
  • No.: 409
  • 文献情報:
    Toguchida, J.; Ikeya, M.; Ohta, A.; Hino, K., 2021, Therapeutic agent for fibrodysplasia ossificans progressiva, US Patent 11,207,303

  • 備考:
  • 参照:
    PubMed
  • No.: 410
  • 文献情報:
    Katrekar, D.; Yen, J.; Xiang, Y.; Saha, A.; Meluzzi, D.; ..., 2021, Robust RNA editing via recruitment of endogenous ADARs using circular guide RNAs, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 411
  • 文献情報:
    Carroll, S. F.; Buckley, C. T.; Kelly, D. J., 2021, Measuring and modeling oxygen transport and consumption in 3D hydrogels containing chondrocytes and stem cells of different tissue origins, Frontiers in Bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 412
  • 文献情報:
    Kamaraj, A.; Kyriacou, H.; Seah, K. T. M.; Khan, W. S., 2021, Use of human induced pluripotent stem cells for cartilage regeneration in vitro and within chondral defect models of knee joint cartilage in vivo: a Preferred Reporting …, Cytotherapy

  • 備考:
  • 参照:
    PubMed
  • No.: 413
  • 文献情報:
    Brown, W. E.; Huang, B. J.; Hu, J. C., 2021, Engineering large, anatomically shaped osteochondral constructs with robust interfacial, NPJ Regenerative medicine, 6 (1 …

  • 備考:
  • 参照:
    PubMed
  • No.: 414
  • 文献情報:
    Baei, P.; Daemi, H.; Mostafaei, F.; Sayahpour, F. A.; ..., 2021, A tough polysaccharide-based cell-laden double-network hydrogel promotes articular cartilage tissue regeneration in rabbits, Chemical Engineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 415
  • 文献情報:
    Kadir, N. D.; Yang, Z.; Hassan, A.; Denslin, V.; ..., 2021, Electrospun fibers enhanced the paracrine signaling of mesenchymal stem cells for cartilage regeneration, Stem Cell Research & …

  • 備考:
  • 参照:
    PubMed
  • No.: 416
  • 文献情報:
    McDermott, A. M.; Eastburn, E. A.; Kelly, D. J.; ..., 2021, Effects of chondrogenic priming duration on mechanoregulation of engineered cartilage, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 417
  • 文献情報:
    Tamaddon, M.; Blunn, G.; Xu, W.; ..., 2021, Sheep condyle model evaluation of bone marrow cell concentrate combined with a scaffold for repair of large osteochondral defects, Bone &Joint …

  • 備考:
  • 参照:
    PubMed
  • No.: 418
  • 文献情報:
    Trinh, K. T. L.; Le, N. X. T.; Lee, N. Y., 2021, Microfluidic-based fabrication of alginate microparticles for protein delivery and its application in the in vitro chondrogenesis of mesenchymal stem cells, Journal of Drug Delivery Science and …

  • 備考:
  • 参照:
    PubMed
  • No.: 419
  • 文献情報:
    Chin, A. R.; Taboas, J. M.; Almarza, A. J., 2021, Regenerative Potential of Mandibular Condyle Cartilage and Bone Cells Compared to Costal Cartilage Cells When Seeded in Novel Gelatin Based Hydrogels, Annals of biomedical engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 420
  • 文献情報:
    Kao, C. Y.; Nguyen, H. Q. D.; Weng, Y. C.; Hung, Y. H.; Lo, C. M., 2021, Evaluating the Effect of Tissue Selection on the Characteristics of Extracellular Matrix Hydrogels from Decellularized Porcine Bladders, Applied Sciences

  • 備考:
  • 参照:
    PubMed
  • No.: 421
  • 文献情報:
    Piening, L., 2021, Development and Characterization of a Decellularized Neuroinhibitory Scaffold Containing Matrix Bound Nanovesicles,

  • 備考:
  • 参照:
    PubMed
  • No.: 422
  • 文献情報:
    Parmaksiz, M.; Lalegül-Ülker, Ö; Vurat, M. T.; ..., 2021, Magneto-sensitive decellularized bone matrix with or without low frequency-pulsed electromagnetic field exposure for the healing of a critical-size bone defect, Materials Science and …

  • 備考:
  • 参照:
    PubMed
  • No.: 423
  • 文献情報:
    Chiera, S., 2021, A model scaffold for Anterior Cruciate Ligament tissue engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 424
  • 文献情報:
    Ribeiro, S.; Pugliese, E.; Korntner, S. H.; ..., 2021, Modulation of stem cell response using biodegradable polyester films with different stiffness, Biomedical Engineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 425
  • 文献情報:
    Chen, D., 2021, Versican/Collagen Interactions in Tissue Structure and Mechanics,

  • 備考:
  • 参照:
    PubMed
  • No.: 426
  • 文献情報:
    Zhu, M.; Qin, B.; Yi, Y.; Yang, J.; Gu, L., 2021, TGFβ1 Improves the Proliferation of Decellularized and Aligned Skeletal Muscle in Extracellular Matrix Hydrogels by m6A Modification-Mediated Integrin Through …,

  • 備考:
  • 参照:
    PubMed
  • No.: 427
  • 文献情報:
    Brown, W. E.; Huang, B. J.; Hu, J. C.; ..., 2021, Engineering large, anatomically shaped osteochondral constructs with robust interfacial shear properties, NPJ Regenerative …

  • 備考:
  • 参照:
    PubMed
  • No.: 428
  • 文献情報:
    Yeo, M.; Kim, G. H., 2021, Electrohydrodynamic-direct-printed cell-laden microfibrous structure using alginate-based bioink for effective myotube formation, Carbohydrate Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 429
  • 文献情報:
    Lee, J. H.; Kwon, Y. S.; Jung, D. Y.; Kim, N. Y.; Lim, H.; ..., 2021, Viscum album and Its Constituents Downregulate Mmp-13 Expression in Chondrocytes and Protect Cartilage Degradation, Natural Product …

  • 備考:
  • 参照:
    PubMed
  • No.: 430
  • 文献情報:
    Oyadomari, S.; Brown, W. E.; Kwon, H.; ..., 2021, In vitro effects of bupivacaine on the viability and mechanics of native and engineered cartilage grafts, … American journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 431
  • 文献情報:
    Mallah, A. H.; Amr, M.; Abusharkh, H. A.; Wie, B. Van; ..., 2021, Sex-specific reduction in inflammation of osteoarthritic human chondrocytes and nutraceutical-dependent extracellular matrix formation, Journal of immunology …

  • 備考:
  • 参照:
    PubMed
  • No.: 432
  • 文献情報:
    Mousavi, M. S.; Amoabediny, G.; Mahfouzi, S. H.; ..., 2021, Enhanced articular cartilage decellularization using a novel perfusion-based bioreactor method, Journal of the Mechanical …

  • 備考:
  • 参照:
    PubMed
  • No.: 433
  • 文献情報:
    Ji, W.; Wen, J.; Lin, W.; He, P.; Hou, B.; ..., 2022, Comparing the characteristics of amniotic membrane-, endometrium-, and urinary-derived ECMs and their effects on endometrial regeneration in a rat uterine …, Frontiers in Bioengineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 434
  • 文献情報:
    Wu, G. X.; Chen, C. Y.; Wu, C. S.; Hwang, L. C.; Yang, S. W.; ..., 2022, Restoration of the phenotype of dedifferentiated rabbit chondrocytes by sesquiterpene farnesol, Pharmaceutics

  • 備考:
  • 参照:
    PubMed
  • No.: 435
  • 文献情報:
    Gonzalez-Leon, E. A.; Hu, J. C.; ..., 2022, Yucatan minipig knee meniscus regional biomechanics and biochemical structure support its suitability as a large animal model for translational research, … in Bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 436
  • 文献情報:
    Zhang, X.; Chai, Z.; Dobbins, A. L.; Itano, M. S.; Askew, C.; ..., 2022, Customized blood-brain barrier shuttle peptide to increase AAV9 vector crossing the BBB and augment transduction in the brain, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 437
  • 文献情報:
    Fiordalisi, M. F.; Ferreira, J. R.; Pinto, M. L.; ..., 2022, The impact of matrix age on intervertebral disc regeneration, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 438
  • 文献情報:
    Sarviya, N.; Basu, S. M.; Mani, R.; Chauhan, M.; ..., 2022, Biomimicking nanofibrous gelatin microspheres recreating the stem cell niche for their ex-vivo expansion and in-vivo like differentiation for injectable stem cell …, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 439
  • 文献情報:
    Faggioli, M.; Moro, A.; Butt, S.; Todesco, M.; Sandrin, D.; ..., 2022, A new decellularization protocol of porcine aortic valves using tergitol to characterize the scaffold with the biocompatibility profile using human bone marrow …, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 440
  • 文献情報:
    Zhu, X.; Li, Y.; Yang, Y.; He, Y.; Gao, M.; Peng, W.; Wu, Q.; ..., 2022, Ordered micropattern arrays fabricated by lung-derived dECM hydrogels for chemotherapeutic drug screening, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 441
  • 文献情報:
    Kim, H.; Choi, K. H.; Sung, S. C.; Kim, Y. S., 2022, Effect of ethanol washing on porcine pulmonary artery wall decellularization using sodium dodecyl sulfate, Artificial Organs

  • 備考:
  • 参照:
    PubMed
  • No.: 442
  • 文献情報:
    Pachenari, M., 2022, The Role of Glycosaminoglycans in the Mechanical Properties of the Sclera,

  • 備考:
  • 参照:
    PubMed
  • No.: 443
  • 文献情報:
    Bains, A. K., 2022, Amanpreet Kaur Bains1, Lena Behrens Wu2, Jennifer Riviティre3, Sandra Rother4, Valentina Magno5, Jens Friedrichs5, Carsten Werner5, Martin 窶ヲ,

  • 備考:
  • 参照:
    PubMed
  • No.: 444
  • 文献情報:
    Min, K.; Kong, J. S.; Kim, J.; Kim, J.; Gao, G.; ..., 2022, Three-dimensional microfilament printing of a decellularized extracellular matrix (dECM) bioink using a microgel printing bath for nerve graft fabrication and the …, ACS Applied Bio …

  • 備考:
  • 参照:
    PubMed
  • No.: 445
  • 文献情報:
    Rashidi, N.; Tamaddon, M.; Liu, C.; ..., 2022, A Bilayer Osteochondral Scaffold with Self‐Assembled Monomeric Collagen Type‐I, Type‐II, and Polymerized Chondroitin Sulfate Promotes Chondrogenic and …, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 446
  • 文献情報:
    Ergun, C.; Parmaksiz, M.; Vurat, M. T.; Elテァin, A. E.; ..., 2022, Decellularized liver ECM-based 3D scaffolds: compositional, physical, chemical, rheological, thermal, mechanical, and in vitro biological evaluations, International Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 447
  • 文献情報:
    Jura-PテウナUorak, A.; Olczyk, P.; ChaナBs-Lipka, A.; ..., 2022, Urinary sulphated glycosaminoglycans excretion in obese patients with type 2 diabetes mellitus treated with metformin, 窶ヲ of Physiology and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 448
  • 文献情報:
    Martin, M.; Wells, S.; Chen, J., 2022, MITRAL VALVE CHORDAE TENDINEAE DEVELOP INDEPENDENTLY FROM LEAFLET TISSUE DURING FETAL DEVELOPMENT, Canadian Journal of Cardiology

  • 備考:
  • 参照:
    PubMed
  • No.: 449
  • 文献情報:
    Lin, Z.; Zhang, X.; Fritch, M. R.; Li, Z.; Kuang, B.; Alexander, P. G.; ..., 2022, Engineering pre-vascularized bone-like tissue from human mesenchymal stem cells through simulating endochondral ossification, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 450
  • 文献情報:
    Sanada, Y.; Ikuta, Y.; Ding, C.; Shinohara, M.; ..., 2022, Senescence-accelerated mice prone 8 (SAMP8) in male as a spontaneous osteoarthritis model, Arthritis Research & …

  • 備考:
  • 参照:
    PubMed
  • No.: 451
  • 文献情報:
    Intini, C.; Hodgkinson, T.; Casey, S. M.; Gleeson, J. P.; ..., 2022, Highly porous type II collagen-containing scaffolds for enhanced cartilage repair with reduced hypertrophic cartilage formation, Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 452
  • 文献情報:
    Chiesa-Estomba, C. M.; Hernテ。ez-Moya, R.; Rodiテアo, C.; ..., 2022, Ex Vivo Maturation of 3D-Printed, Chondrocyte-Laden, Polycaprolactone-Based Scaffolds Prior to Transplantation Improves Engineered Cartilage Substitute 窶ヲ, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 453
  • 文献情報:
    Ahn, J.; Arai, Y.; Kim, B. J.; Seo, Y. K.; Moon, J. J.; Shin, D. A.; ..., 2022, Combinatorial physicochemical stimuli in the three-dimensional environment of a hyaluronic acid hydrogel amplify chondrogenesis by stimulating …, NPG Asia …

  • 備考:
  • 参照:
    PubMed
  • No.: 454
  • 文献情報:
    Marsh, S.; Constantin-Teodosiu, T.; ..., 2022, In vitro Exposure to Inflammatory Mediators Affects the Differentiation of Mesenchymal Progenitors, … in Bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 455
  • 文献情報:
    Wang, D.; Xue, X.; Gunn, G.; Du, M.; Siddiqui, A.; ..., 2022, Ataluren suppresses a premature termination codon in an MPS IH mouse, Journal of Molecular …

  • 備考:
  • 参照:
    PubMed
  • No.: 456
  • 文献情報:
    Luo, L.; Foster, N. C.; Man, K. L.; Brunet, M.; ..., 2022, Hydrostatic pressure promotes chondrogenic differentiation and microvesicle release from human embryonic and bone marrow stem cells, Biotechnology …

  • 備考:
  • 参照:
    PubMed
  • No.: 457
  • 文献情報:
    Thowsen, I. M.; Karlsen, T. V.; Nikpey, E.; ..., 2022, Na+ is shifted from the extracellular to the intracellular compartment and is not inactivated by glycosaminoglycans during high salt conditions in rats, The Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 458
  • 文献情報:
    Salinas, E. Y.; Donahue, R. P.; Herrera, J. M.; ..., 2022, The functionality and translatability of neocartilage constructs are improved with the combination of fluid-induced shear stress and bioactive factors, … : official publication of …

  • 備考:
  • 参照:
    PubMed
  • No.: 459
  • 文献情報:
    Kobayashi-Miura, M.; Osago, H.; Hamasaki, Y.; ..., 2022, Decrease in Glycosaminoglycan with Aging in Normal Rat Articular Cartilage Is Greater in Females than in Males, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 460
  • 文献情報:
    Yoon, D. S.; Lee, K. M.; Choi, Y.; Ko, E. A.; Lee, N. H.; ..., 2022, TLR4 downregulation by the RNA-binding protein PUM1 alleviates cellular aging and osteoarthritis, Cell Death & …

  • 備考:
  • 参照:
    PubMed
  • No.: 461
  • 文献情報:
    Li, R.; Liu, J.; Ma, J.; Sun, X.; Wang, Y.; Yan, J.; Yu, Q.; Diao, J.; ..., 2022, Fibrinogen improves liver function via promoting cell aggregation and fibronectin assembly in hepatic spheroids, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 462
  • 文献情報:
    Yoon, J.; Yoon, D.; Lee, H.; Lee, J. U.; Jo, S. Y.; Kym, D.; ..., 2022, Wound healing ability of acellular fish skin and bovine collagen grafts for split-thickness donor sites in burn patients: Characterization of acellular grafts and clinical …, Internat

  • 備考:
  • 参照:
    PubMed
  • No.: 463
  • 文献情報:
    Piening, L. M.; Lillyman, D. J.; Lee, F. S.; Lozano, A. M.; ..., 2022, Injectable decellularized nucleus pulposus tissue exhibits neuroinhibitory properties, JOR …

  • 備考:
  • 参照:
    PubMed
  • No.: 464
  • 文献情報:
    Intini, C.; Lemoine, M.; Hodgkinson, T.; Casey, S.; ..., 2022, A highly porous type II collagen containing scaffold for the treatment of cartilage defects enhances MSC chondrogenesis and early cartilaginous matrix deposition, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 465
  • 文献情報:
    Teo, K. Y. W.; Sevencan, C.; Cheow, Y. A.; Zhang, S.; ..., 2022, Macrophage Polarization as a Facile Strategy to Enhance Efficacy of Macrophage Membrane‐Coated Nanoparticles in Osteoarthritis, Small …

  • 備考:
  • 参照:
    PubMed
  • No.: 466
  • 文献情報:
    Otarola, G. A.; Hu, J. C.; Athanasiou, K. A., 2022, Ion modulatory treatments toward functional self-assembled neocartilage, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 467
  • 文献情報:
    Fang, Y.; Han, Y.; Wang, S.; Chen, J.; Dai, K.; Xiong, Y.; ..., 2022, Three-dimensional printing bilayer membranous nanofiber scaffold for inhibiting scar hyperplasia of skin, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 468
  • 文献情報:
    Otani, S.; Kanamoto, T.; Oyama, S.; Yamakawa, S.; Shi, W.; ..., 2022, Meniscus surface texture is associated with degenerative changes in biological and biomechanical properties, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 469
  • 文献情報:
    Nordberg, R. C.; Kim, A. N.; Hight, J. M.; Meka, R. S.; ..., 2022, Biochemical and biomechanical characterization of the cervical, thoracic, and lumbar facet joint cartilage in the Yucatan minipig, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 470
  • 文献情報:
    Pieri, A. De; Korntner, S. H.; Capella-Monsonis, H.; ..., 2022, Macromolecular crowding transforms regenerative medicine by enabling the accelerated development of functional and truly three-dimensional cell …, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 471
  • 文献情報:
    Zeng, J.; Huang, L.; Xiong, H.; Li, Q.; Wu, C.; ..., 2022, Injectable decellularized cartilage matrix hydrogel encapsulating urine-derived stem cells for immunomodulatory and cartilage defect regeneration, NPJ Regenerative …

  • 備考:
  • 参照:
    PubMed
  • No.: 472
  • 文献情報:
    Tateiwa, D.; Kaito, T.; Hashimoto, K.; Okada, R.; ..., 2022, Selective retinoic acid receptor γ antagonist 7C is a potent enhancer of BMP-induced ectopic endochondral bone formation, Frontiers in Cell and …

  • 備考:
  • 参照:
    PubMed
  • No.: 473
  • 文献情報:
    Bruin, S. De; Vasquez-Cardenas, D.; Sarbu, S. M.; ..., 2022, Sulfated glycosaminoglycan-like polymers are present in an acidophilic biofilm from a sulfidic cave, Science of the Total …

  • 備考:
  • 参照:
    PubMed
  • No.: 474
  • 文献情報:
    Browe, D. C.; D鱈az-Payno, P. J.; Freeman, F. E.; Schipani, R.; ..., 2022, Bilayered extracellular matrix derived scaffolds with anisotropic pore architecture guide tissue organization during osteochondral defect repair, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 475
  • 文献情報:
    Hampton, J. D.; Peterson, E. J.; Katner, S. J.; Turner, T. H.; ..., 2022, Exploitation of sulfated glycosaminoglycan status for precision medicine of triplatin in triple-negative breast cancer, Molecular cancer …

  • 備考:
  • 参照:
    PubMed
  • No.: 476
  • 文献情報:
    Normoyle, K. P.; Lillis, K. P.; Egawa, K.; McNally, M. A.; ..., 2022, Displacement of extracellular chloride by sulfated glycosaminoglycans of the brain extracellular matrix, BioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 477
  • 文献情報:
    Kuナコnik-Trocha, K.; Winsz-Szczotka, K.; ..., 2022, Plasma and urine levels of glycosaminoglycans in patients with systemic sclerosis and their relationship to selected interleukins and marker of early kidney 窶ヲ, Journal of Clinical 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 478
  • 文献情報:
    Bains, A. K.; Wu, L. Behrens; Riviティre, J.; Rother, S.; ..., 2022, Bone marrow mesenchymal stromal cell-derived extracellular matrix displays altered glycosaminoglycan structure and impaired functionality in 窶ヲ, Frontiers in 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 479
  • 文献情報:
    Chen, C. W.; Wang, Y., 2022, Compositions Comprising Extracellular Matrix of Primitive Animal Species and Related Methods, US Patent App. 17/739,466

  • 備考:
  • 参照:
    PubMed
  • No.: 480
  • 文献情報:
    Yang, S. W.; Chen, Y. J.; Chen, C. J.; Liu, J. T.; Yang, C. Y.; Tsai, J. H.; ..., 2022, High-Density Horizontal Stacking of Chondrocytes via the Synergy of Biocompatible Magnetic Gelatin Nanocarriers and Internal Magnetic Navigation for …, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 481
  • 文献情報:
    Harmatz, P.; Prada, C. E.; Burton, B. K.; Lau, H.; Kessler, C. M.; ..., 2022, First-in-human in vivo genome editing via AAV-zinc-finger nucleases for mucopolysaccharidosis I/II and hemophilia B, Molecular Therapy

  • 備考:
  • 参照:
    PubMed
  • No.: 482
  • 文献情報:
    Briat, A.; Jacques, C.; Malige, M.; Sudre, L.; Nourissat, G.; ..., 2022, 99mTc-NTP 15-5 is a companion radiotracer for assessing joint functional response to sprifermin (rhFGF-18) in a murine osteoarthritis model, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 483
  • 文献情報:
    Brito, M. Martinho de; Bundeleva, I.; Marin, F.; Vennin, E.; ..., 2022, Effect of Culture pH on Properties of Exopolymeric Substances from Synechococcus PCC7942: Implications for Carbonate Precipitation, Geosciences

  • 備考:
  • 参照:
    PubMed
  • No.: 484
  • 文献情報:
    Kim, D.; Lee, H.; Lee, G. H.; Hoang, T. H.; ..., 2022, Fabrication of bone‐derived decellularized extracellular matrix/ceramic‐based biocomposites and their osteo/odontogenic differentiation ability for dentin regeneration, Bioengineering & …

  • 備考:
  • 参照:
    PubMed
  • No.: 485
  • 文献情報:
    Dufour, A.; Gallostra, X. B.; O'keeffe, C.; Eichholz, K.; ..., 2022, Integrating melt electrowriting and inkjet bioprinting for engineering structurally organized articular cartilage, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 486
  • 文献情報:
    Zambaiti, E., 2022, Organoidi gastrointestinali pediatrici e fetali: modello di cultura tridimensionale in vitro,

  • 備考:
  • 参照:
    PubMed
  • No.: 487
  • 文献情報:
    Lin, J.; Hu, W.; Gao, T.; Bao, B.; Li, X.; Huang, T.; Sun, Y.; ..., 2022, ε-Poly-l-lysine as an efficient cartilage penetrating and residing drug carrier with high intraarticular injection safety for treating osteoarthritis, Chemical Engineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 488
  • 文献情報:
    Nedunchezian, S.; Wu, C. W.; Wu, S. C.; Chen, C. H.; Chang, J. K.; ..., 2022, Characteristic and chondrogenic differentiation analysis of hybrid hydrogels comprised of Hyaluronic Acid Methacryloyl (HAMA), Gelatin Methacryloyl (GelMA) …, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 489
  • 文献情報:
    Browe, D. C.; Burdis, R.; D鱈az-Payno, P. J.; Freeman, F. E.; ..., 2022, Promoting endogenous articular cartilage regeneration using extracellular matrix scaffolds, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 490
  • 文献情報:
    Athanasiou, K. A.; Hu, J. C.; Brown, W. E., 2022, Methods and systems for improving cells for use in therapy, US Patent App. 17/496,391

  • 備考:
  • 参照:
    PubMed
  • No.: 491
  • 文献情報:
    Chen, T. C.; Wong, C. W.; Hsu, S., 2022, Three-dimensional printing of chitosan cryogel as injectable and shape recoverable scaffolds, Carbohydrate Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 492
  • 文献情報:
    Haudenschild, A. K.; Sherlock, B. E.; Zhou, X.; Sheaff, C. S.; ..., 2022, Non-destructive, continuous monitoring of biochemical, mechanical, and structural maturation in engineered tissue, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 493
  • 文献情報:
    Martino, C.; Kellman, B.; Lewis, N.; Knight, R.; Esko, J. D.; ..., 2022, Application of microbial glycosidase as an anti-viral therapeutic, prognostic, and diagnostic,

  • 備考:
  • 参照:
    PubMed
  • No.: 494
  • 文献情報:
    Vapniarsky, N.; Moncada, L.; Garrity, C.; Wong, A.; ..., 2022, Tissue engineering of canine cartilage from surgically debrided osteochondritis dissecans fragments, Annals of biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 495
  • 文献情報:
    Huang, Z.; Wang, X.; Ryzhuk, V.; Gao, W., 2022, Preparation and use of tissue matrix derived powder, US Patent App. 17/727,804

  • 備考:
  • 参照:
    PubMed
  • No.: 496
  • 文献情報:
    Pandit, A.; Kanala, V. K.; Ismail, S.; ..., 2022, Hyaluronan compositions, and uses thereof in treatment of interstitial cystitis, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 497
  • 文献情報:
    Wang, B.; Chariyev-Prinz, F.; Burdis, R.; Eichholz, K.; ..., 2022, Additive manufacturing of cartilage-mimetic scaffolds as off-the-shelf implants for joint regeneration, …

  • 備考:
  • 参照:
    PubMed
  • No.: 498
  • 文献情報:
    Pitrolino, K. A.; Felfel, R. M.; Pellizzeri, L. M.; McLaren, J.; ..., 2022, Development and in vitro assessment of a bi-layered chitosan-nano-hydroxyapatite osteochondral scaffold, Carbohydrate …

  • 備考:
  • 参照:
    PubMed
  • No.: 499
  • 文献情報:
    Katrekar, D.; Yen, J.; Xiang, Y.; Saha, A.; Meluzzi, D.; ..., 2022, Efficient in vitro and in vivo RNA editing via recruitment of endogenous ADARs using circular guide RNAs, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 500
  • 文献情報:
    Xiang, S.; Lin, Z.; Makarcyzk, M. J.; ..., 2022, Differences in the intrinsic chondrogenic potential of human mesenchymal stromal cells and iPSC‐derived multipotent cells, Clinical and …

  • 備考:
  • 参照:
    PubMed
  • No.: 501
  • 文献情報:
    Gao, M.; Zhu, X.; Peng, W.; He, Y.; Li, Y.; Wu, Q.; Zhou, Y.; ..., 2022, Kidney ECM pregel nanoarchitectonics for microarrays to accelerate harvesting gene-edited porcine primary monoclonal spheres, ACS …

  • 備考:
  • 参照:
    PubMed
  • No.: 502
  • 文献情報:
    Otarola, G. A.; Hu, J. C.; Athanasiou, K. A., 2022, Intracellular calcium and sodium modulation of self-assembled neocartilage using costal chondrocytes, Tissue Engineering Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 503
  • 文献情報:
    Jahr, H.; Windt, AE van der; Timur, U. T.; Baart, E. B.; ..., 2022, Physosmotic induction of chondrogenic maturation is TGF-β dependent and enhanced by calcineurin inhibitor FK506, International journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 504
  • 文献情報:
    Mosher, M. L., 2022, Development of a crosslinked osteochondral xenograft and a collagen stabilizing intra-articular injection to remediate cartilage focal lesions to prevent …,

  • 備考:
  • 参照:
    PubMed
  • No.: 505
  • 文献情報:
    MacIver, M. A.; Dobson, L. K.; Gregory, C. A.; Muneoka, K.; ..., 2022, A three-dimensional (3D), serum-free, Collagen Type I system for chondrogenesis of canine bone marrow-derived multipotent stromal cells (cMSCs), Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 506
  • 文献情報:
    Manon, J.; Evrard, R.; Maistriaux, L.; Fievテゥ, L.; ..., 2022, Periosteum and fascia lata: Are they so different?, 窶ヲ in bioengineering and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 507
  • 文献情報:
    Wang, S.; Yan, H.; Fang, B.; Gu, C.; Guo, J.; Qiu, P.; Song, N.; ..., 2022, A myogenic niche with a proper mechanical stress environment improves abdominal wall muscle repair by modulating immunity and preventing fibrosis, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 508
  • 文献情報:
    Smith, M. C., 2022, Gene Therapy for Mucopolysaccharidosis Type II,

  • 備考:
  • 参照:
    PubMed
  • No.: 509
  • 文献情報:
    Burdis, R.; Chariyev-Prinz, F.; Browe, D. C.; Freeman, F. E.; ..., 2022, Spatial patterning of phenotypically distinct microtissues to engineer osteochondral grafts for biological joint resurfacing, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 510
  • 文献情報:
    Rossetti, D., 2022, Early Biological Response of Articular Cartilage to Hemiarthroplasty Wear,

  • 備考:
  • 参照:
    PubMed
  • No.: 511
  • 文献情報:
    Tran, N. T.; Park, I. S.; Truong, M. D.; Park, D. Y.; Park, S. H.; ..., 2022, Conditioned media derived from human fetal progenitor cells improves skin regeneration in burn wound healing, Cell and tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 512
  • 文献情報:
    Barcel坦, X.; Eichholz, K. F.; Garcia, O.; Kelly, D. J., 2022, Tuning the degradation rate of alginate-based bioinks for bioprinting functional cartilage tissue, Biomedicines

  • 備考:
  • 参照:
    PubMed
  • No.: 513
  • 文献情報:
    Endo, K.; Miura, Y.; Komori, K.; Sekiya, I., 2022, Clearance of senescent cells with ABT-263 improves biological functions of synovial mesenchymal stem cells from osteoarthritis patients,

  • 備考:
  • 参照:
    PubMed
  • No.: 514
  • 文献情報:
    Dテュaz-Payno, P. J.; Browe, D. C.; Freeman, F. E.; ..., 2022, Gremlin-1 Suppresses Hypertrophy of Engineered Cartilage In Vitro but Not Bone Formation In Vivo, 窶ヲ Engineering Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 515
  • 文献情報:
    Bhattacharjee, P.; Ahearne, M., 2022, Silk fibroin based interpenetrating network hydrogel for corneal stromal regeneration, International Journal of Biological …

  • 備考:
  • 参照:
    PubMed
  • No.: 516
  • 文献情報:
    Ercan, H.; El巽in, A. E.; El巽in, Y. M., 2022, Assessment of dopamine-conjugated decellularized bovine tendon extracellular matrix as a bioadhesive, Materials Today Communications

  • 備考:
  • 参照:
    PubMed
  • No.: 517
  • 文献情報:
    Tang, W.; Qi, J.; Wang, Q.; Qu, Y.; Fu, S.; ..., 2022, Investigating the adipogenic effects of different tissue-derived decellularized matrices, Frontiers in Bioengineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 518
  • 文献情報:
    Lima, EC de; Bezerra, T. F.; ..., 2022, Cosmetic composition and its use, dermocosmetic formulation, US Patent …

  • 備考:
  • 参照:
    PubMed
  • No.: 519
  • 文献情報:
    Lee, C. K.; Zhang, S.; Venkatesan, G.; Chong, S. Y.; ..., 2022, Enhanced skin penetration of berberine from proniosome gel attenuates pain and inflammation in a mouse model of osteoarthritis, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 520
  • 文献情報:
    Lassila, R., 2022, Therapeutic APAC Molecule comprising Heparin Conjugated to a Plasma Protein, US Patent App. 17/855,932

  • 備考:
  • 参照:
    PubMed
  • No.: 521
  • 文献情報:
    Reis, D. P.; Domingues, B.; Fidalgo, C.; Reis, R. L.; ..., 2022, Bioinks enriched with ECM components obtained by supercritical extraction, Biomolecules

  • 備考:
  • 参照:
    PubMed
  • No.: 522
  • 文献情報:
    Wト冱ierska, M.; Nowicka, W.; Kloska, A.; ..., 2022, Murine fibroblasts and primary hepatocytes as tools when studying the efficacy of potential therapies for mucopolysaccharidosis type I, International Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 523
  • 文献情報:
    Kim, A.; Hight, J.; Meka, R.; Elder, B.; Hu, J.; Athanasiou, K.; ..., 2022, Biochemical and biomechanical characterization of the cervical, thoracic, and lumbar facet joint cartilage in the Yucatan minipig.,

  • 備考:
  • 参照:
    PubMed
  • No.: 524
  • 文献情報:
    Long, S.; Huang, D.; Ma, Z.; Shi, S.; Xiao, Y.; ..., 2022, A sonication-induced silk-collagen hydrogel for functional cartilage regeneration, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 525
  • 文献情報:
    Kawecki, F.; Gluais, M.; Claverol, S.; Dusserre, N.; ..., 2022, Inter-donor variability of extracellular matrix production in long-term cultures of human fibroblasts, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 526
  • 文献情報:
    Samuel, S.; McDonnell, E. E.; Buckley, C. T., 2022, Effects of growth factor combinations TGFβ3, GDF5 and GDF6 on the matrix synthesis of nucleus Pulposus and Nasoseptal chondrocyte self-assembled …, Applied Sciences

  • 備考:
  • 参照:
    PubMed
  • No.: 527
  • 文献情報:
    AHMED, H.; Fazal, N.; Ahmad, M. R.; Ijaz, B.; Bilal, A. Z.; ..., 2022, S-ALLYL-L-CYSTEINE-INDUCED ANTI-INFLAMMATORY AND ANTI-APOPTOTIC EFFECTS IN CHONDROCYTES IS ASSOCIATED WITH SUPPRESSION OF THE …, Biological and Clinical …

  • 備考:
  • 参照:
    PubMed
  • No.: 528
  • 文献情報:
    Makhija, E.; Zheng, Y.; Wang, J.; Leong, H. R.; Othman, R. B.; ..., 2022, Topological defects govern mesenchymal condensations, offering a morphology-based tool to predict cartilage differentiation, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 529
  • 文献情報:
    Zhi, D.; Cheng, Q.; Midgley, A. C.; Zhang, Q.; Wei, T.; Li, Y.; ..., 2022, Mechanically reinforced biotubes for arterial replacement and arteriovenous grafting inspired by architectural engineering, Science …

  • 備考:
  • 参照:
    PubMed
  • No.: 530
  • 文献情報:
    Wang, Y.; Xu, L.; Zhao, J.; Liang, J.; Zhang, Z.; Li, Q.; Zhang, J.; ..., 2022, Reconstructing auto tissue engineering lamellar cornea with aspartic acid modified acellular porcine corneal stroma and preconditioned limbal stem cell for corneal …, Biomater

  • 備考:
  • 参照:
    PubMed
  • No.: 531
  • 文献情報:
    Capuozzo, A.; Montefusco, S.; Cacace, V.; Sofia, M.; ..., 2022, Fluoxetine ameliorates mucopolysaccharidosis type IIIA, Molecular Therapy

  • 備考:
  • 参照:
    PubMed
  • No.: 532
  • 文献情報:
    Blanco-Fernandez, B.; Rey-Vinolas, S.; ..., 2022, Bioprinting decellularized breast tissue for the development of three-dimensional breast cancer models, … applied materials & …

  • 備考:
  • 参照:
    PubMed
  • No.: 533
  • 文献情報:
    Behan, K.; Dufour, A.; Garcia, O.; Kelly, D., 2022, Methacrylated cartilage ECM-based hydrogels as injectables and bioinks for cartilage tissue engineering, Biomolecules

  • 備考:
  • 参照:
    PubMed
  • No.: 534
  • 文献情報:
    Nasiri, N.; Hosseini, S.; Reihani-Sabet, F.; ..., 2022, Targeted mesenchymal stem cell therapy equipped with a cell-tissue nanomatchmaker attenuates osteoarthritis progression, Scientific reports

  • 備考:
  • 参照:
    PubMed
  • No.: 535
  • 文献情報:
    Xu, L.; Wang, H.; Luo, L.; Deng, J.; Chen, F.; Wang, Y.; ..., 2022, Aspartic acid and epidermal growth factor modified decellularized rabbit conjunctiva for conjunctival reconstruction, Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 536
  • 文献情報:
    Ribeiro, S.; Pugliese, E.; Korntner, S. H.; ..., 2022, Assessing the combined effect of surface topography and substrate rigidity in human bone marrow stem cell cultures, Engineering in Life …

  • 備考:
  • 参照:
    PubMed
  • No.: 537
  • 文献情報:
    Kuna, V. K.; Lundgren, A.; Anerillas, L. O.; Kelk, P.; ..., 2022, Efficacy of Nerve-Derived Hydrogels to Promote Axon Regeneration Is Influenced by the Method of Tissue Decellularization, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 538
  • 文献情報:
    Deus, I. A.; Santos, S. C.; Cust坦dio, C. A.; Mano, J. F., 2022, Designing highly customizable human based platforms for cell culture using proteins from the amniotic membrane, Biomaterials Advances

  • 備考:
  • 参照:
    PubMed
  • No.: 539
  • 文献情報:
    Braunlin, E.; Abrahante, J. E.; McElmurry, R.; ..., 2022, Contribution of the innate and adaptive immune systems to aortic dilation in murine mucopolysaccharidosis type I, Molecular genetics and …

  • 備考:
  • 参照:
    PubMed
  • No.: 540
  • 文献情報:
    Baysan, G.; Gunes, O. C.; Akokay, P.; Husemoglu, R. B.; ..., 2022, Loofah-chitosan and poly (− 3-hydroxybutyrate-co-3-hydroxyvalerate)(PHBV) based hydrogel scaffolds for meniscus tissue engineering applications, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 541
  • 文献情報:
    Li, M.; Zheng, C.; Wu, B.; Ding, K.; Zhang, S.; ..., 2022, Glycidyl methacrylate-crosslinked fish swim bladder as a novel cardiovascular biomaterial with improved antithrombotic and anticalcification properties, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 542
  • 文献情報:
    Palmosi, T.; Tolomeo, A. M.; Cirillo, C.; Sandrin, D.; ..., 2022, Small intestinal submucosa-derived extracellular matrix as a heterotopic scaffold for cardiovascular applications, … in Bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 543
  • 文献情報:
    Bテシyテシk, Nトー; Tテシfekテァi, K.; Cumbul, A.; ..., 2022, A novel method for providing scaffold: Decellularization of parathyroid capsule, Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 544
  • 文献情報:
    Yuan, P.; Li, Z.; Shao, B.; Zeng, T.; Wu, X.; Wang, Y.; Zhao, Y.; ..., 2022, Extracellular vesicles derived from starving BMSCs enhance survival of chondrocyte aggregates in grafts by attenuating chondrocyte apoptosis and enabling stable …, Acta Biomateri

  • 備考:
  • 参照:
    PubMed
  • No.: 545
  • 文献情報:
    Yuan, Z.; Liu, S.; Song, W.; Liu, Y.; Bi, G.; Xie, R.; ..., 2022, Galactose Enhances Chondrogenic Differentiation of ATDC5 and Cartilage Matrix Formation by Chondrocytes, Frontiers in Molecular …

  • 備考:
  • 参照:
    PubMed
  • No.: 546
  • 文献情報:
    Sparn, C.; Dimou, E.; Meyer, A.; Saleppico, R.; ..., 2022, Glypican-1 drives unconventional secretion of fibroblast growth factor 2, Elife

  • 備考:
  • 参照:
    PubMed
  • No.: 547
  • 文献情報:
    Tzankov, A.; Bhattacharyya, S.; Kotlo, K.; Tobacman, J. K., 2022, Increase in chondroitin sulfate and decline in Arylsulfatase B may contribute to pathophysiology of COVID-19 respiratory failure, Pathobiology

  • 備考:
  • 参照:
    PubMed
  • No.: 548
  • 文献情報:
    Li, H.; Li, J.; Li, T.; Wu, C.; Zhang, W., 2022, Macroporous polyvinyl alcohol-tannic acid hydrogel with high strength and toughness for cartilage replacement, Journal of Materials Science

  • 備考:
  • 参照:
    PubMed
  • No.: 549
  • 文献情報:
    Miura, Y.; Endo, K.; Komori, K.; Sekiya, I., 2022, Clearance of senescent cells with ABT-263 improves biological functions of synovial mesenchymal stem cells from osteoarthritis patients, Stem Cell Research &Therapy

  • 備考:
  • 参照:
    PubMed
  • No.: 550
  • 文献情報:
    Guagliano, G.; Volpini, C.; Sardelli, L.; ..., 2022, Hep3Gel: a shape-shifting extracellular matrix-based, three-dimensional liver model adaptable to different culture systems, ACS biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 551
  • 文献情報:
    Wu, G. X.; Chen, C. Y.; Wu, C. S.; Hwang, L. C.; Yang, S. W.; ..., 2022, Restoration of the Phenotype of Dedifferentiated Rabbit Chondrocytes by Sesquiterpene Farnesol. Pharmaceutics 2022, 14, 186,

  • 備考:
  • 参照:
    PubMed
  • No.: 552
  • 文献情報:
    Giang, N. N.; Trinh, X. T.; Han, J.; Chien, P. N.; ..., 2022, Effective decellularization of human skin tissue for regenerative medicine by supercritical carbon dioxide technique, Journal of Tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 553
  • 文献情報:
    Shologu, N.; Gurdal, M.; Szegezdi, E.; FitzGerald, U.; ..., 2022, Macromolecular crowding in the development of a three-dimensional organotypic human breast cancer model, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 554
  • 文献情報:
    Nieto-Nicolau, N.; López-Chicón, P.; Torrico, C.; ..., 2022, “Off-the-Shelf” nerve matrix preservation, Biopreservation and …

  • 備考:
  • 参照:
    PubMed
  • No.: 555
  • 文献情報:
    Hill, C. N.; Coombs, M. C.; Cisewski, S. E.; Durham, E. L.; ..., 2022, Structure-function relationships of TMJ lateral capsule-ligament complex, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 556
  • 文献情報:
    Smith, M. C.; Belur, L. R.; Karlen, A. D.; Erlanson, O.; ..., 2022, Phenotypic Correction of Murine Mucopolysaccharidosis Type II by Engraftment of Ex Vivo Lentiviral Vector-Transduced Hematopoietic Stem and Progenitor Cells, Human gene …

  • 備考:
  • 参照:
    PubMed
  • No.: 557
  • 文献情報:
    Akbarzadeh, A.; Tafti, S. H. A.; Sabetkish, S.; ..., 2022, Coronary-Based Right Heart Flap Recellularization by Rat Neonatal Whole Cardiac Cells: A Viable Sheep Cardiac Patch Model for Possible Management of Heart …, Regenerative …

  • 備考:
  • 参照:
    PubMed
  • No.: 558
  • 文献情報:
    Dehghan-Baniani, D.; Mehrjou, B.; Wang, D.; ..., 2022, A dual functional chondro-inductive chitosan thermogel with high shear modulus and sustained drug release for cartilage tissue engineering, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 559
  • 文献情報:
    Qiu, H.; Zhang, L.; Wang, D.; Miao, H., 2022, Silver Nanoparticles Improve the Biocompatibility and Reduce the Immunogenicity of Xenogeneic Scaffolds Derived from Decellularized Pancreas, Cellular Reprogramming

  • 備考:
  • 参照:
    PubMed
  • No.: 560
  • 文献情報:
    Kim, M.; Ahn, J.; Lee, J.; Song, S.; Lee, S.; Lee, S.; ..., 2022, Combined mesenchymal stem cells and cartilage acellular matrix injection therapy for osteoarthritis in goats, Tissue Engineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 561
  • 文献情報:
    Parmaksiz, M., 2022, Decellularized tendon-based heparinized nanocomposite scaffolds for prospective regenerative applications: Chemical, physical, thermal, mechanical and in vitro …, Journal of the Mechanical Behavior of Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 562
  • 文献情報:
    Park, H. H.; Kim, Y. M.; Kim, H. S.; Kim, S. H.; Jin, X.; Hwang, D. H.; ..., 2022, Dual-functional hydrogel system for spinal cord regeneration with sustained release of arylsulfatase B alleviates fibrotic microenvironment and promotes …, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 563
  • 文献情報:
    Garriboli, M.; Deguchi, K.; Totonelli, G.; ..., 2022, Development of a porcine acellular bladder matrix for tissue-engineered bladder reconstruction, Pediatric Surgery …

  • 備考:
  • 参照:
    PubMed
  • No.: 564
  • 文献情報:
    Xie, X.; Wu, S.; Mou, S.; Guo, N.; Wang, Z.; ..., 2022, Microtissue‐based bioink as a chondrocyte microshelter for DLP bioprinting, Advanced Healthcare …

  • 備考:
  • 参照:
    PubMed
  • No.: 565
  • 文献情報:
    Otsuka, T.; Kan, H. M.; Mason, T. D.; Nair, L. S.; ..., 2022, Overexpression of NDST1 Attenuates Fibrotic Response in Murine Adipose-Derived Stem Cells, Stem Cells and …

  • 備考:
  • 参照:
    PubMed
  • No.: 566
  • 文献情報:
    Shimizu, R.; Asawa, Y.; Komura, M.; Hoshi, K.; Hikita, A., 2022, Superior stemness of a rapidly growing subgroup of isolated human auricular chondrocytes and the potential for use in cartilage regenerative therapy, Regenerative Therapy

  • 備考:
  • 参照:
    PubMed
  • No.: 567
  • 文献情報:
    Sant, N. J.; Proffen, B. L.; Murray, M. M., 2022, Effects of radiation dose and nitrogen purge on collagen scaffold properties, Journal of Biomaterials …

  • 備考:
  • 参照:
    PubMed
  • No.: 568
  • 文献情報:
    Gaffke, L.; SzczudナP, Z.; Podlacha, M.; Cyske, Z.; ..., 2022, Impaired ion homeostasis as a possible associate factor in mucopolysaccharidosis pathogenesis: Transcriptomic, cellular and animal studies, Metabolic brain 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 569
  • 文献情報:
    Pierzynowska, K.; ナサabiナгka, M.; Gaffke, L.; Cyske, Z.; ..., 2022, Changes in expression of signal transduction-related genes, and formation of aggregates of GPER1 and OXTR receptors in mucopolysaccharidosis cells, European Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 570
  • 文献情報:
    Dong, Z.; Chen, S.; Wang, L.; Qi, P.; Wei, L., 2022, Fabrication of Flower-stacked structured microparticles encapsulated with Stem cells and Growth Factor to the potential treatment of Intervertebral Disc Degeneration, Process Biochemistry

  • 備考:
  • 参照:
    PubMed
  • No.: 571
  • 文献情報:
    Huang, Z.; Zhang, Y.; Liu, R.; Li, Y.; Rafique, M.; Midgley, A. C.; ..., 2022, Cobalt loaded electrospun poly (竜-caprolactone) grafts promote antibacterial activity and vascular regeneration in a diabetic rat model, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 572
  • 文献情報:
    Liu, Q.; Dai, W.; Gao, Y.; Dong, L.; Jia, H.; Li, S.; Guo, L.; Fan, Y.; ..., 2022, The synergistic regulation of chondrogenesis by collagen-based hydrogels and cell co-culture, Acta biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 573
  • 文献情報:
    Xie, M.; Zhang, Y.; Xiong, Z.; Hines, S.; Shang, J.; Clark, K. L.; ..., 2022, Generation of hyaline-like cartilage tissue from human mesenchymal stromal cells within the self-generated extracellular matrix, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 574
  • 文献情報:
    Wee, A. S.; Lim, C. K.; Tan, S. L.; Ahmad, T. S.; ..., 2022, TGF-β1 and-β3 for Mesenchymal Stem Cells Chondrogenic Differentiation on Poly (Vinyl Alcohol)-Chitosan-Poly (Ethylene Glycol) Scaffold, Tissue Engineering Part …

  • 備考:
  • 参照:
    PubMed
  • No.: 575
  • 文献情報:
    Ota, T.; Iwai, R.; Kitaguchi, Y.; Takarada, T.; ..., 2022, Fabrication of scaffold-free mesenchyme tissue bands by cell self-aggregation technique for potential use in tissue regeneration, Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 576
  • 文献情報:
    Choi, M.; Yang, Y. B.; Park, S.; Rahaman, S.; Tripathi, G.; ..., 2022, Effect of Co-culture of mesenchymal stem cell and glomerulus endothelial cell to promote endothelialization under optimized perfusion flow rate in whole renal …, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 577
  • 文献情報:
    Knight, K. M.; King, G. E.; Palcsey, S. L.; Artsen, A. M.; ..., 2022, A soft elastomer alternative to polypropylene for pelvic organ prolapse repair: a preliminary study, International …

  • 備考:
  • 参照:
    PubMed
  • No.: 578
  • 文献情報:
    Heintzsch, M., 2022, Analyse von Proteinen der extrazellul辰ren Matrix indezellularisiertem tierischenGewebe,

  • 備考:
  • 参照:
    PubMed
  • No.: 579
  • 文献情報:
    Mテシller, S. V., 2022, Systematische Optimierung bestehender Dezellularisierungsmethoden von Pulmonalarterien mithilfe von physikalischen, prozeduralen und enzymatischen 窶ヲ,

  • 備考:
  • 参照:
    PubMed
  • No.: 580
  • 文献情報:
    Siurkus, J.; Peciura, R., 2022, Topical composition with active compounds from Cannabis sativa and Calendula officinalis for reduction of skin lesions, US Patent 11,364,273

  • 備考:
  • 参照:
    PubMed
  • No.: 581
  • 文献情報:
    Sidney, L.; Hopkinson, A.; McIntosh, O., 2022, Corneal tissue, US Patent App. 17/776,990

  • 備考:
  • 参照:
    PubMed
  • No.: 582
  • 文献情報:
    김은채; 강내운; 박지우; 곽소정; 이승재, 2022, 연골 재생을 위한 압축률 조절이 가능한 동적 압축 자극 바이오리액터 개발, 대한기계학회 논문집 B 권

  • 備考:
  • 参照:
    PubMed
  • No.: 583
  • 文献情報:
    秦晓平; 李涛; 陈诚; 杨柳, 2022, 负载抗炎肽的锆-金属有机框架封装于水凝胶促进软骨细胞外基质生成,

  • 備考:
  • 参照:
    PubMed
  • No.: 584
  • 文献情報:
    Frank, M. H.; Kluth, M. A.; Ganss, C., 2022, Highly functional manufactured abcb5+ mesenchymal stem cells, US Patent App. 17/598,848

  • 備考:
  • 参照:
    PubMed
  • No.: 585
  • 文献情報:
    Hausmanns, S.; Frech, H. U.; Oesser, S.; ..., 2022, Synthetic and recombinant collagen peptides having biological activity, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 586
  • 文献情報:
    Ramer, M.; Badylak, S. F.; Keane, T., 2022, Method and composition for treating inflammatory bowel disease, US Patent 11,389,566

  • 備考:
  • 参照:
    PubMed
  • No.: 587
  • 文献情報:
    Gonzalez-Leon, E., 2022, Enhancing Functional Properties of Self-Assembled Neomenisci and Neocartilage toward Their Implantation in a Suitable Preclinical Large Animal Model,

  • 備考:
  • 参照:
    PubMed
  • No.: 588
  • 文献情報:
    Lin, H.; Tuan, R. S. C.; Yang, Y., 2022, Cartilage material having minimal hypertrophy and robust integration capacity, and uses therefor, US Patent 11,471,562

  • 備考:
  • 参照:
    PubMed
  • No.: 589
  • 文献情報:
    Bhatia, M. B.; Lugo, C.; Ye, Q.; Edinger, J. W., 2022, Human placental collagen compositions and methods of making and using the same, US Patent App. 17/302,831

  • 備考:
  • 参照:
    PubMed
  • No.: 590
  • 文献情報:
    Tremmel, D. M., 2022, Reconstructing the Islet Extracellular Niche,

  • 備考:
  • 参照:
    PubMed
  • No.: 591
  • 文献情報:
    Chen, C. W.; Wang, Y., 2022, Compositions comprising extracellular matrix of primitive animal species and related methods, US Patent 11,331,348

  • 備考:
  • 参照:
    PubMed
  • No.: 592
  • 文献情報:
    Al-Hejailan, R.; Weigel, T.; Schテシrlein, S.; Berger, C.; ..., 2022, Decellularization of full heart窶俳ptimizing the classical sodium-dodecyl-sulfate-based decellularization protocol, Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 593
  • 文献情報:
    Jin, X.; Su, J.; Zhao, Q.; Li, R.; Xiao, J.; Zhong, X.; ..., 2022, Liver-directed gene therapy corrects neurologic disease in a murine model of mucopolysaccharidosis type I-Hurler, … Therapy-Methods & …

  • 備考:
  • 参照:
    PubMed
  • No.: 594
  • 文献情報:
    Badylak, S. F.; Jr, TJ Keane; Turner, N. J.; ..., 2022, Methods for Preparation of a Terminally Sterilized Hydrogel Derived from Extracellular Matrix, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 595
  • 文献情報:
    Badylak, S. F.; Dearth, C. L.; Jr, TJ Keane; ..., 2022, Methods for preparation of a terminally sterilized hydrogel derived from extracellular matrix, US Patent …

  • 備考:
  • 参照:
    PubMed
  • No.: 596
  • 文献情報:
    Zeng, T.; Yuan, P.; Liang, L.; Zhang, X.; Zhang, H.; ..., 2022, Cartilaginous extracellular matrix enriched with human gingival mesenchymal stem cells derived “matrix bound extracellular vesicles” enabled functional …, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 597
  • 文献情報:
    Lassila, R., 2022, Therapeutic APAC molecule comprising heparin conjugated to a plasma protein, US Patent 11,446,361

  • 備考:
  • 参照:
    PubMed
  • No.: 598
  • 文献情報:
    Badylak, S. F.; Hussey, G. S., 2022, Acoustic extracellular matrix hydrogels and their use, US Patent App. 17/434,925

  • 備考:
  • 参照:
    PubMed
  • No.: 599
  • 文献情報:
    Entchev, E.; Antonelli, S.; Mauro, V.; Cimbolini, N.; ..., 2022, MPS VI associated ocular phenotypes in an MPS VI murine model and the therapeutic effects of odiparcil treatment, Molecular Genetics and …

  • 備考:
  • 参照:
    PubMed
  • No.: 600
  • 文献情報:
    Trujillo, S. Clara, 2022, Development of a 3D in vitro disease model for multiple myeloma,

  • 備考:
  • 参照:
    PubMed
  • No.: 601
  • 文献情報:
    Adil, A.; Xu, M.; Haykal, S., 2022, Recellularization of bioengineered scaffolds for vascular composite allotransplantation, Frontiers in Surgery

  • 備考:
  • 参照:
    PubMed
  • No.: 602
  • 文献情報:
    Pitacco, P., 2022, 3D Bioprinted Cartilaginous Templates as Developmentally Inspired Implants for Large Bone Defect Regeneration,

  • 備考:
  • 参照:
    PubMed
  • No.: 603
  • 文献情報:
    Lemoine, M., 2022, Reinforced collagen based scaffolds for musculoskeletal tissue engineering,

  • 備考:
  • 参照:
    PubMed
  • No.: 604
  • 文献情報:
    Truong, V. A.; Lin, Y. H.; Nguyen, N. T. K.; Hsu, M. N.; Pham, N. N.; ..., 2022, Bi-directional gene activation and repression promote ASC differentiation and enhance bone healing in osteoporotic rats, Molecular Therapy

  • 備考:
  • 参照:
    PubMed
  • No.: 605
  • 文献情報:
    Fujii, S.; Endo, K.; Matsuta, S.; Komori, K.; Sekiya, I., 2022, Comparison of the yields and properties of dedifferentiated fat cells and mesenchymal stem cells derived from infrapatellar fat pads, Regenerative Therapy

  • 備考:
  • 参照:
    PubMed
  • No.: 606
  • 文献情報:
    Coppi, P. De; Elvassore, N.; Giobbe, G. G.; ..., 2022, Extracellular Matrix Gels, and Organoid Cultures Comprising the Same, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 607
  • 文献情報:
    Pezzani, GA Otarola, 2022, Development of novel tissue engineering strategies toward the translation of articular cartilage implants,

  • 備考:
  • 参照:
    PubMed
  • No.: 608
  • 文献情報:
    Pezzani, G. A. O., 2022, Development of Novel Tissue Engineering Strategies toward the Translation of Articular Cartilage Implants,

  • 備考:
  • 参照:
    PubMed
  • No.: 609
  • 文献情報:
    Intini, C., 2022, Innovative biomimetic collagen-based scaffolds for enhanced and longer lasting cartilage repair,

  • 備考:
  • 参照:
    PubMed
  • No.: 610
  • 文献情報:
    Haghshenas, M.; Tavana, S.; Zand, E.; ..., 2022, Mouse ovarian follicle growth in an amniotic membrane-based hydrogel, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 611
  • 文献情報:
    Liu, H. W.; Su, W. T.; Liu, C. Y.; Huang, C. C., 2022, Highly organized porous gelatin-based scaffold by microfluidic 3D-foaming technology and dynamic culture for cartilage tissue engineering, International journal of molecular …

  • 備考:
  • 参照:
    PubMed
  • No.: 612
  • 文献情報:
    Kawai, S.; Takashima, S.; Ando, M.; Shintaku, S.; ..., 2023, Discovery of Novel Chromenopyridine Derivatives as Readthrough-Inducing Drugs, Chemical and …

  • 備考:
  • 参照:
    PubMed
  • No.: 613
  • 文献情報:
    Tondato, S.; Moro, A.; Butt, S.; Todesco, M.; Sandrin, D.; ..., 2023, Tergitol Based Decellularization Protocol Improves the Prerequisites for Pulmonary Xenografts: Characterization and Biocompatibility Assessment. Polymers …,

  • 備考:
  • 参照:
    PubMed
  • No.: 614
  • 文献情報:
    Guillaume, O.; Kopinski-Gr端nwald, O.; Weisgrab, G.; ..., 2023, Hybrid spheroid microscaffolds as modular tissue units to build macro-tissue assemblies for tissue engineering, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 615
  • 文献情報:
    Han, S.; Kim, J.; Kim, S. H.; Youn, W.; Kim, J.; Ji, G. Y.; Yang, S.; ..., 2023, In vitro induction of in vivo窶途elevant stellate astrocytes in 3D brain-derived, decellularized extracellular matrices, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 616
  • 文献情報:
    Intini, C.; Ferreras, L. B.; Casey, S.; Dixon, J. E.; ..., 2023, An Innovative miR‐Activated Scaffold for the Delivery of a miR‐221 Inhibitor to Enhance Cartilage Defect Repair, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 617
  • 文献情報:
    Liang, L.; Zhang, F.; Feng, N.; Kuang, B.; Fan, M.; ..., 2023, IRE1α protects against osteoarthritis by regulating progranulin-dependent XBP1 splicing and collagen homeostasis, … & Molecular Medicine

  • 備考:
  • 参照:
    PubMed
  • No.: 618
  • 文献情報:
    Zhang, D.; Fu, Q.; Fu, H.; Zeng, J.; Jia, L.; ..., 2023, 3D-bioprinted human lipoaspirate-derived cell-laden skin constructs for healing of full-thickness skin defects, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 619
  • 文献情報:
    Du, H.; Zhang, W.; Shi, Y.; Sun, W.; Liu, G.; Liu, H., 2023, Decellularized extracellular matrix tissues from human gastric cancer tissues as a three-dimensional model for cancer cell growth and drug treatments,

  • 備考:
  • 参照:
    PubMed
  • No.: 620
  • 文献情報:
    Chiu, K. H.; Karpat, M.; Hahn, J.; Chang, K. Y.; ..., 2023, Cyclic Stretching Triggers Cell Orientation and Extracellular Matrix Remodeling in a Periodontal Ligament 3D In Vitro Model, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 621
  • 文献情報:
    Tommasini, F.; Benoist, T.; Shibuya, S.; Woodall, M. N. J.; ..., 2023, Lung viral infection modelling in a bioengineered whole-organ, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 622
  • 文献情報:
    Hatala, P.; Lajos, A.; Mackei, M.; Sebナ遡, C.; Trテ。j, P.; ..., 2023, Feline Uroepithelial cell culture as a novel model of idiopathic cystitis: investigations on the effects of norepinephrine on inflammatory response, oxidative 窶ヲ, Veterinary 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 623
  • 文献情報:
    Fackler, N. P.; Yareli-Salinas, E.; ..., 2023, In vitro effects of triamcinolone and methylprednisolone on the viability and mechanics of native articular cartilage, … American Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 624
  • 文献情報:
    Chen, T. A.; Sharma, D.; Jia, W.; Ha, D.; Man, K.; Zhang, J.; ..., 2023, Detergent-Based Decellularization for Anisotropic Cardiac-Specific Extracellular Matrix Scaffold Generation, Biomimetics

  • 備考:
  • 参照:
    PubMed
  • No.: 625
  • 文献情報:
    Zhu, W.; Ou, L.; Zhang, L.; Clark, I. H.; Zhang, Y.; Zhu, X. H.; ..., 2023, Mapping brain networks in MPS I mice and their restoration following gene therapy, Scientific reports

  • 備考:
  • 参照:
    PubMed
  • No.: 626
  • 文献情報:
    Maeda, S.; Segawa, K.; Konishi, H.; Iwamoto, K.; ..., 2023, Development of scaffold-free tissue-engineered constructs with serum-free media from mesenchymal stem cell-derived cells for cartilage repair and long-term …,

  • 備考:
  • 参照:
    PubMed
  • No.: 627
  • 文献情報:
    Yoshida, Y.; Inubushi, T.; Yokoyama, M.; Nag, P.; Oka, A.; ..., 2023, SLC26A2-mediated sulfate metabolism is essential for the tooth development, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 628
  • 文献情報:
    Nguyen, N. T. K.; Lee, S. S.; Chen, P. H.; Chang, Y. H.; Pham, N. N.; ..., 2023, Enhanced Calvarial Bone Repair Using ASCs Engineered with RNA‐Guided Split dCas12a System that Co‐Activates Sox 5, Sox6, and Long Non‐Coding RNA H19, Small

  • 備考:
  • 参照:
    PubMed
  • No.: 629
  • 文献情報:
    Maeda, S.; Matsumoto, M.; Segawa, K.; Iwamoto, K., 2023, Development of scaffold-free tissue-engineered constructs derived from mesenchymal stem cells with serum-free media for cartilage repair and long-term preservation,

  • 備考:
  • 参照:
    PubMed
  • No.: 630
  • 文献情報:
    Hatala, P.; Sebナ遡, C.; Mackei, M.; Kテ。rpテ。ti, K.; ..., 2023, Molecular effects of intermittent stress on primary feline uroepithelial cell culture as an in vitro model of feline idiopathic cystitis, Frontiers in Veterinary 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 631
  • 文献情報:
    Chen, Y. H.; Zhang, X.; Chou, C. H.; Hsueh, M. F.; ..., 2023, Association of dipeptidylpeptidase 4 (CD26) with chondrocyte senescence and radiographic progression in knee osteoarthritis, Arthritis & …

  • 備考:
  • 参照:
    PubMed
  • No.: 632
  • 文献情報:
    Chen, L. M.; Bruin, S. de; Pronk, M.; Sousa, D. Z.; ..., 2023, Sialylation and sulfation of anionic glycoconjugates are common in the extracellular polymeric substances of both aerobic and anaerobic granular sludges, Environmental …

  • 備考:
  • 参照:
    PubMed
  • No.: 633
  • 文献情報:
    Li, P. F.; Xiong, F.; Xing, H. Y.; Hu, S. J.; ..., 2023, Retinoic acid inhibits the pyroptosis of degenerated nucleus pulposus cells by activating Sirt1-SOD2 signaling, Connective Tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 634
  • 文献情報:
    Ren, R.; Zhou, J.; Sun, Y.; Telha, W.; Song, N.; Zhan, Y.; ..., 2023, Interspecies comparison of temporomandibular joint condylar cartilage extracellular matrix from macro to microscopy, Journal of the …

  • 備考:
  • 参照:
    PubMed
  • No.: 635
  • 文献情報:
    Nag, S.; Boyd, A. S., 2023, Decellularization of Mouse Kidneys to Generate an Extracellular Matrix Gel for Human Induced Pluripotent Stem Cell Derived Renal Organoids, Organoids

  • 備考:
  • 参照:
    PubMed
  • No.: 636
  • 文献情報:
    Shigeta, Y.; Saleh, T.; Benedetti, G.; Caciolli, L.; ..., 2023, Stomach engineering: region-specific characterization of the decellularized porcine stomach, Pediatric Surgery …

  • 備考:
  • 参照:
    PubMed
  • No.: 637
  • 文献情報:
    Nakano, T.; Yamanaka, H.; Sakamoto, M.; ..., 2023, Development of a Self-Assembled Dermal Substitute from Human Fibroblasts Using Long-term Three-Dimensional Culture, … Engineering Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 638
  • 文献情報:
    Zand, E.; Rajablou, E.; Siadat, S. F.; Beiki, B.; Akbarinejad, V.; ..., 2023, Successful 3D culture and transplantation of mouse isolated preantral follicles in hydrogel of bioengineered Wharton's jelly, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 639
  • 文献情報:
    Yamazaki, N.; Ohira, M.; Takada, S.; Ohtake, A.; ..., 2023, Enhanced osteoblastic differentiation of parietal bone in a novel murine model of mucopolysaccharidosis type II, Molecular Genetics and …

  • 備考:
  • 参照:
    PubMed
  • No.: 640
  • 文献情報:
    Chen, L. M.; Keisham, S.; Tateno, H.; Ede, J. van; ..., 2023, Alterations of Glycan Composition in Aerobic Granular Sludge during the Adaptation to Seawater Conditions, ACS Es&t …

  • 備考:
  • 参照:
    PubMed
  • No.: 641
  • 文献情報:
    Ota, T.; Takao, T.; Iwai, R.; Moriwaki, T.; ..., 2023, Fabrication of shape-designable cartilage from human induced pluripotent stem cell-derived chondroprogenitors using a cell self-aggregation technique, Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 642
  • 文献情報:
    Kim, M. K.; Jeong, W.; Jeon, S.; Kang, H. W., 2023, 3D bioprinting of dECM-incorporated hepatocyte spheroid for simultaneous promotion of cell-cell and-ECM interactions, Frontiers in Bioengineering …

  • 備考:
  • 参照:
    PubMed
  • No.: 643
  • 文献情報:
    Siddiqui, A.; Dundar, H.; Sharma, J.; ..., 2023, Triamterene Functions as an Effective Nonsense Suppression Agent for MPS IH (Hurler Syndrome), International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 644
  • 文献情報:
    Chaaban, M.; Moya, A.; Garc鱈a-Garc鱈a, A.; Paillaud, R.; ..., 2023, Harnessing human adipose-derived stromal cell chondrogenesis in vitro for enhanced endochondral ossification, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 645
  • 文献情報:
    Chang, L. H.; Wu, S. C.; Chen, C. H.; Chen, J. W.; ..., 2023, Exosomes derived from hypoxia-cultured human adipose stem cells alleviate articular chondrocyte inflammaging and post-traumatic osteoarthritis progression, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 646
  • 文献情報:
    Choi, S. H.; Lee, K.; Han, H.; Mo, H.; Jung, H.; Ryu, Y. W.; Nam, Y.; ..., 2023, Prochondrogenic effect of decellularized extracellular matrix secreted from human induced pluripotent stem cell-derived chondrocytes, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 647
  • 文献情報:
    Devold, E. J., 2023, Characterization of the mechanical properties of pancreatic, breast, and colon tumor models,

  • 備考:
  • 参照:
    PubMed
  • No.: 648
  • 文献情報:
    Tondato, S.; Moro, A.; Butt, S.; Todesco, M.; Sandrin, D.; ..., 2023, Tergitol Based Decellularization Protocol Improves the Prerequisites for Pulmonary Xenografts: Characterization and Biocompatibility Assessment, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 649
  • 文献情報:
    Pitacco, P.; Sadowska, J. M.; O'Brien, F. J.; Kelly, D. J., 2023, 3D bioprinting of cartilaginous templates for large bone defect healing, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 650
  • 文献情報:
    Salinas, E. Y.; Otarola, G. A.; Kwon, H.; Wang, D.; Hu, J. C.; ..., 2023, Topographical Characterization of the Young, Healthy Human Femoral Medial Condyle, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 651
  • 文献情報:
    Cheng, Q.; Zhang, L.; Zhang, J.; Zhou, X.; ..., 2023, Decellularized Scaffolds with Double‐Layer Aligned Microchannels Induce the Oriented Growth of Bladder Smooth Muscle Cells: Toward Urethral and Ureteral …, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 652
  • 文献情報:
    Gujjar, S.; Venkataprasanna, K. S.; Tiwari, S.; Sharma, J. C.; ..., 2023, Stabilized human amniotic membrane for enhanced sustainability and biocompatibility, Process …

  • 備考:
  • 参照:
    PubMed
  • No.: 653
  • 文献情報:
    Grant, R.; Davis, N. F.; Callanan, A., 2023, Methods in Cell-Stimulated Extracellular Matrix Production in Tissue Engineering, Handbook of the Extracellular Matrix …

  • 備考:
  • 参照:
    PubMed
  • No.: 654
  • 文献情報:
    Garc鱈a-Garc鱈a, A.; Pigeot, S.; Martin, I., 2023, Engineering of immunoinstructive extracellular matrices for enhanced osteoinductivity, Bioactive Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 655
  • 文献情報:
    Rintz, E.; Podlacha, M.; Cyske, Z.; Pierzynowska, K.; ..., 2023, Activities of (poly) phenolic antioxidants and other natural autophagy modulators in the treatment of Sanfilippo disease: remarkable efficacy of resveratrol in …, …

  • 備考:
  • 参照:
    PubMed
  • No.: 656
  • 文献情報:
    Garcテュa-Garcテュa, テ泥; Soury, M. El; Campos, F.; ..., 2023, Comprehensive ex vivo and in vivo preclinical evaluation of novel chemo enzymatic decellularized peripheral nerve allografts, 窶ヲ in Bioengineering and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 657
  • 文献情報:
    Dai, W.; Liu, Q.; Li, S.; Gao, Y.; Feng, C.; Guo, L.; ..., 2023, Functional injectable hydrogel with spatiotemporal sequential release for recruitment of endogenous stem cells and in situ cartilage regeneration, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 658
  • 文献情報:
    Mah辿, C.; Pranomphon, T.; Reynaud, K.; Laffont, L.; ..., 2023, Sperm-fluid-cell interplays in the bovine oviduct: glycosaminoglycans modulate sperm binding to the isthmic reservoir, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 659
  • 文献情報:
    Louisthelmy, R.; Burke, B. M.; Cornelison, R. C., 2023, Brain cancer cell-derived matrices and effects on astrocyte migration, Cells Tissues Organs

  • 備考:
  • 参照:
    PubMed
  • No.: 660
  • 文献情報:
    Siquier-Dameto, G.; Boisnic, S.; Boadas-Vaello, P.; ..., 2023, Anti-Aging and Depigmentation Effect of a Hyaluronic Acid Mechanically Stabilized Complex on Human Skin Explants, Polymers

  • 備考:
  • 参照:
    PubMed
  • No.: 661
  • 文献情報:
    Park, C.; Lee, O. H.; Park, J. J.; Yoo, J.; Kwon, E.; ..., 2023, Self-assembled adipose-derived mesenchymal stem cells as an extracellular matrix component-and growth factor-enriched filler, Frontiers in Cell and …

  • 備考:
  • 参照:
    PubMed
  • No.: 662
  • 文献情報:
    Yamazaki, S.; Hirayama, R.; Ikeda, Y.; Iseki, S.; Yoda, T.; ..., 2023, Hyaluronic acid hydrogels support to generate integrated bone formation through endochondral ossification in vivo using mesenchymal stem cells, PLoS …

  • 備考:
  • 参照:
    PubMed
  • No.: 663
  • 文献情報:
    Lato-Kariakin, E.; Ku添nik-Trocha, K.; Gruenpeter, A.; ..., 2023, Investigation of Glycosaminoglycans in Urine and Their Alteration in Patients with Juvenile Idiopathic Arthritis, Biomolecules

  • 備考:
  • 参照:
    PubMed
  • No.: 664
  • 文献情報:
    Liu, L.; Yu, F.; Chen, L.; Xia, L.; Wu, C.; ..., 2023, Lithium‐containing biomaterials stimulate cartilage repair through bone marrow stromal cells‐derived exosomal miR‐455‐3p and histone H3 acetylation, Advanced Healthcare …

  • 備考:
  • 参照:
    PubMed
  • No.: 665
  • 文献情報:
    Asadi‐Yousefabad, S. H.; Daneshi, S.; ..., 2023, Comparison of Sodium Lauryl Ether Sulfate and Sodium Dodecyl Sulfate in the Intestinal Decellularization of Rats Using a Histological Method and Confocal …, Journal of Kerman …

  • 備考:
  • 参照:
    PubMed
  • No.: 666
  • 文献情報:
    Murata, K.; Kawabata, S.; Kojima, T.; Oka, Y.; Takasu, C.; ..., 2023, Biochemical reactions between intra-articular tissues and joint instability in a rat model of osteoarthritis, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 667
  • 文献情報:
    Capella-Monsonテュs, H.; Cramer, M.; Turner, N.; ..., 2023, The composition and mechanical properties of porcine placental ecm from three different breeds, Biomedical Physics 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 668
  • 文献情報:
    Castells-Sala, C.; Pテゥrez, M. L.; Lテウpez-Chicテウn, P.; ..., 2023, Development of a full-thickness acellular dermal graft from human skin: Case report of first patient rotator cuff patch augmentation repair, Transplant 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 669
  • 文献情報:
    Francテゥs-Herrero, E.; Lopez, R.; Campo, H.; ..., 2023, Advances of xenogeneic ovarian extracellular matrix hydrogels for in vitro follicle development and oocyte maturation, Biomaterials 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 670
  • 文献情報:
    Freise, C.; Zappe, A.; Lテカwa, N.; Schnorr, J.; Pagel, K.; ..., 2023, Uremic Toxin-Induced Exosome-like Extracellular Vesicles Contain Enhanced Levels of Sulfated Glycosaminoglycans which Facilitate the Interaction with 窶ヲ, International Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 671
  • 文献情報:
    Zheng, J.; Chen, H.; Lu, C.; Yoshitomi, T.; ..., 2023, 3D culture of bovine articular chondrocytes in viscous medium encapsulated in agarose hydrogels for investigation of viscosity influence on cell functions, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 672
  • 文献情報:
    Molinos, M.; Fiordalisi, M. F.; Caldeira, J.; Almeida, C. R.; ..., 2023, Alterations of bovine nucleus pulposus cells with aging, Aging …

  • 備考:
  • 参照:
    PubMed
  • No.: 673
  • 文献情報:
    Mahbub, M. S. I.; Bae, S. H.; Gwon, J. G.; Lee, B. T., 2023, Decellularized liver extracellular matrix and thrombin loaded biodegradable TOCN/Chitosan nanocomposite for hemostasis and wound healing in rat liver …, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 674
  • 文献情報:
    Jin, Y. J.; Park, D. Y.; Noh, S.; Kwon, H. J.; Shin, D. I.; Park, J. H.; ..., 2023, Effects of glycosaminoglycan content in extracellular matrix of donor cartilage on the functional properties of osteochondral allografts evaluated by micro-CT …, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 675
  • 文献情報:
    Hatami-Marbini, H., 2023, On the mechanical roles of glycosaminoglycans in the tensile properties of porcine corneal stroma, Investigative Ophthalmology &Visual …

  • 備考:
  • 参照:
    PubMed
  • No.: 676
  • 文献情報:
    KONO, M.; OSAGO, H.; KOBAYASHI-MIURA, M.; ..., 2023, Quantitative Analysis of Extracellular Matrix Changes: Glycosaminoglycans, Collagen, and Elastin in Degenerated Ligamentum Flavum in Lumbar Spinal Canal …, Shimane Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 677
  • 文献情報:
    Brownell, L. A.; Chu, M.; Hong, M. F.; Eu-Jin, H.; ..., 2023, Compositions and methods for joint health, US Patent App. 18 …

  • 備考:
  • 参照:
    PubMed
  • No.: 678
  • 文献情報:
    Gurzeler, L. A.; Link, M.; Ibig, Y.; Schmidt, I.; Galuba, O.; ..., 2023, Drug-induced eRF1 degradation promotes readthrough and reveals a new branch of ribosome quality control, Cell reports

  • 備考:
  • 参照:
    PubMed
  • No.: 679
  • 文献情報:
    Athanasiou, K. A.; Hu, J. C.; Kwon, H., 2023, Methods and systems for conserving highly expanded cells, US Patent 11,696,929

  • 備考:
  • 参照:
    PubMed
  • No.: 680
  • 文献情報:
    Snyder, Y.; Jana, S., 2023, Electrospun Elastomeric Leaflet Substrates that Structurally and Mechanically Mimic Human Aortic Valve Leaflets, ACS Applied Polymer Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 681
  • 文献情報:
    Xu, S. M., 2023, Bioengineering Vascularized Porcine Free Flaps by Perfusion-Decellularization and Recellularization,

  • 備考:
  • 参照:
    PubMed
  • No.: 682
  • 文献情報:
    DeKelver, R.; McIvor, R. S.; Ou, L.; Wechsler, T.; ..., 2023, Methods and compositions for the treatment of neurologic disease, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 683
  • 文献情報:
    Sevrain, L. C.; Verdier-Sevrain, S. Y., 2023, Methods and compositions for repair of cartilage using an in vivo bioreactor, US Patent 11,717,596

  • 備考:
  • 参照:
    PubMed
  • No.: 684
  • 文献情報:
    Siurkus, J.; Peciura, R., 2023, Topical composition with active compounds from Cannabis sativa and Calendula officinalis for reduction of skin lesions, US Patent 11,813,301

  • 備考:
  • 参照:
    PubMed
  • No.: 685
  • 文献情報:
    Moreira, A. M., 2023, Influence of ECM Dynamics on Gastric Cancer Stem-Like Properties,

  • 備考:
  • 参照:
    PubMed
  • No.: 686
  • 文献情報:
    Sevrain, L. C.; Verdier-Sevrain, S. Y., 2023, Methods and compositions for repair of cartilage using an in vivo bioreactor, US Patent App. 18/333,662

  • 備考:
  • 参照:
    PubMed
  • No.: 687
  • 文献情報:
    Philippe, V.; Jeannerat, A.; Peneveyre, C.; Jaccoud, S.; ..., 2023, Autologous and Allogeneic Cytotherapies for Large Knee (Osteo) Chondral Defects: Manufacturing Process Benchmarking and Parallel Functional …, Pharmaceutics

  • 備考:
  • 参照:
    PubMed
  • No.: 688
  • 文献情報:
    Atsu, P. M. K., 2023, Development of a Xenograft for Annular Repair Using Pulsed Electric Field Exposures for Enhanced Decellularization,

  • 備考:
  • 参照:
    PubMed
  • No.: 689
  • 文献情報:
    Griffiths, L. G.; Papalamprou, A., 2023, Solubilization of antigen components for removal from tissues, US Patent 11,596,711

  • 備考:
  • 参照:
    PubMed
  • No.: 690
  • 文献情報:
    Tedeschi, A. M., 2023, Mesoangioblast promote regeneration of a stable and organised vasculature in a decellularised intestinal graft,

  • 備考:
  • 参照:
    PubMed
  • No.: 691
  • 文献情報:
    Wilson, J. M.; Hinderer, C.; Hordeaux, J., 2023, Gene therapy for mucopolysaccharidosis iiib, US Patent 11,723,989

  • 備考:
  • 参照:
    PubMed
  • No.: 692
  • 文献情報:
    Wilson, J. M.; Katz, N.; Hordeaux, J., 2023, Gene therapy for mucopolysaccharidosis IIIA, US Patent 11,555,206

  • 備考:
  • 参照:
    PubMed
  • No.: 693
  • 文献情報:
    Badylak, S. F.; Freytes, D., 2023, Extracellular Matrix-Derived Gels and Related Methods, US Patent App. 17/692,530

  • 備考:
  • 参照:
    PubMed
  • No.: 694
  • 文献情報:
    Bonetti, N. R.; Jouppila, A. S.; Saravi, S. S. S.; Cooley, B. C.; ..., 2023, Intravenously administered APAC, a dual AntiPlatelet AntiCoagulant, targets arterial injury site to inhibit platelet thrombus formation and tissue factor activity in …, Thrombosi

  • 備考:
  • 参照:
    PubMed
  • No.: 695
  • 文献情報:
    Wilson, J. M.; Katz, N.; Hordeaux, J., 2023, Gene therapy for mucopolysaccharidosis iiia, US Patent App. 18/055,731

  • 備考:
  • 参照:
    PubMed
  • No.: 696
  • 文献情報:
    Akbarzadeh, A.; Elmaleh, D.; ..., 2023, Novel fabrication of coronary based decellularized heart flaps to treat aneurysm following myocardial infarction, US Patent App. 17 …

  • 備考:
  • 参照:
    PubMed
  • No.: 697
  • 文献情報:
    Pavan, M.; Fanti, C. D.; Lucia, A. Di; Canato, E.; ..., 2023, Aerosolized sulfated hyaluronan derivatives prolong the survival of K18 ACE2 mice infected with a lethal dose of SARS-CoV-2, European Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 698
  • 文献情報:
    Peranteau, W. H.; Bose, S.; White, B., 2023, In utero and postnatal gene editing and therapy for treatment of monogenic diseases, including mucopolysaccharidosis type 1h and other disorders, US Patent App. 18/006,975

  • 備考:
  • 参照:
    PubMed
  • No.: 699
  • 文献情報:
    Kim, H. S.; Ha, H. S.; Kim, D. H.; Son, D. H.; Baek, S.; Park, J.; ..., 2023, O2 variant chip to simulate site-specific skeletogenesis from hypoxic bone marrow, Science …

  • 備考:
  • 参照:
    PubMed
  • No.: 700
  • 文献情報:
    Gawri, R.; Lau, Y. K.; Lin, G.; Shetye, S. S.; Zhang, C.; ..., 2023, Dose-dependent effects of enzyme replacement therapy on skeletal disease progression in mucopolysaccharidosis VII dogs, … Therapy-Methods & …

  • 備考:
  • 参照:
    PubMed
  • No.: 701
  • 文献情報:
    Hu, Y.; Xiong, Y.; Zhu, Y.; Zhou, F.; Liu, X.; ..., 2023, Copper-Epigallocatechin gallate enhances therapeutic effects of 3D-printed dermal scaffolds in mitigating diabetic wound scarring, … Applied Materials & …

  • 備考:
  • 参照:
    PubMed
  • No.: 702
  • 文献情報:
    Naqvi, S.; Kim, S.; Hoskens, H.; Matthews, H. S.; Spritz, R. A.; ..., 2023, Precise modulation of transcription factor levels identifies features underlying dosage sensitivity, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 703
  • 文献情報:
    Shang, J.; Hines, S.; Makarczyk, M. J.; Lin, H.; Hogan, M. C. V.; ..., 2023, Influence of the Synthetic Cannabinoid Agonist on Normal and Inflamed Cartilage: An In Vitro Study, Biomolecules

  • 備考:
  • 参照:
    PubMed
  • No.: 704
  • 文献情報:
    Wang, B.; Barcel坦, X.; Euw, S. Von; Kelly, D. J., 2023, 3D printing of mechanically functional meniscal tissue equivalents using high concentration extracellular matrix inks, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 705
  • 文献情報:
    Kusoglu, A.; Ornek, D.; Dansik, A.; Uzun, C.; Ozkan, S. N.; ..., 2023, Extracellular matrix sulfation in the tumor microenvironment stimulates cancer stemness and invasiveness, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 706
  • 文献情報:
    Fujiwara, Y.; Ding, C.; Sanada, Y.; Yimiti, D.; ..., 2023, miR-23a/b clusters are not essential for the pathogenesis of osteoarthritis in mouse aging and post-traumatic models, Frontiers in Cell and …

  • 備考:
  • 参照:
    PubMed
  • No.: 707
  • 文献情報:
    Hargis, J. G.; Klitzke, K., 2023, Porcine Scaffolds and Methods of Preparation, US Patent App. 17/288,041

  • 備考:
  • 参照:
    PubMed
  • No.: 708
  • 文献情報:
    Aytekin, E.; Vurat, M. T.; Elテァin, A. E.; ..., 2023, Decellularized Bone Matrix/45S5 Bioactive Glass Biocomposite Hydrogel窶殖ased Constructs with Angiogenic and Osteogenic Properties: Ex Ovo and Ex Vivo 窶ヲ, Macromolecular 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 709
  • 文献情報:
    Glorieux, L.; Vandooren, L.; Derclaye, S., 2023, Pyr dit Ruys, Int. J. Mol. Sci

  • 備考:
  • 参照:
    PubMed
  • No.: 710
  • 文献情報:
    Kim, M. K.; Jeong, W.; Kang, H. W., 2023, Liver dECM窶敵elatin Composite Bioink for Precise 3D Printing of Highly Functional Liver Tissues, Journal of Functional Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 711
  • 文献情報:
    Gusarova, V. D.; Smolov, M. A.; Lyagoskin, I. V.; Degterev, M. B.; ..., 2023, Characterization of a HIR-Fab-IDS, Novel Iduronate 2-Sulfatase Fusion Protein for the Treatment of Neuropathic Mucopolysaccharidosis Type II (Hunter Syndrome), BioDrugs

  • 備考:
  • 参照:
    PubMed
  • No.: 712
  • 文献情報:
    Kim, J. J.; Park, J. Y.; Nguyen, V. V. T.; Bae, M.; ..., 2023, Pathophysiological reconstruction of a tissue‐specific multiple‐organ on‐a‐chip for Type 2 diabetes emulation using 3D cell printing, Advanced Functional …

  • 備考:
  • 参照:
    PubMed
  • No.: 713
  • 文献情報:
    Athanasiou, K. A.; Hu, J. C.; Brown, W. E.; ..., 2023, Engineered neocartilage tissue compositions, US Patent App. 18 …

  • 備考:
  • 参照:
    PubMed
  • No.: 714
  • 文献情報:
    Kasamkattil, J.; Gryadunova, A.; Schmid, R.; ..., 2023, Human 3D nucleus pulposus microtissue model to evaluate the potential of pre-conditioned nasal chondrocytes for the repair of degenerated intervertebral …, … in Bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 715
  • 文献情報:
    Klarmann, G. J.; Piroli, M. E.; Loverde, J. R.; Nelson, A. F.; Li, Z.; ..., 2023, 3D printing a universal knee meniscus using a custom collagen ink, Bioprinting

  • 備考:
  • 参照:
    PubMed
  • No.: 716
  • 文献情報:
    Lim, K. M., 2023, Edible bird's nest extract and method of extraction, US Patent 11,672,833

  • 備考:
  • 参照:
    PubMed
  • No.: 717
  • 文献情報:
    Glorieux, L.; Vandooren, L.; Derclaye, S.; ..., 2023, In-Depth Analysis of the Pancreatic Extracellular Matrix during Development for Next-Generation Tissue Engineering, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 718
  • 文献情報:
    Yu, T.; Ao, Q.; Ao, T.; Ahmad, M. A.; Wang, A.; ..., 2023, Preparation and assessment of an optimized multichannel acellular nerve allograft for peripheral nerve regeneration, Bioengineering & …

  • 備考:
  • 参照:
    PubMed
  • No.: 719
  • 文献情報:
    Wandling, E. N., 2023, The Wound Healing and Antibacterial Properties of Mesenchymal Stromal Cell Extracellular Matrix Nanoparticles,

  • 備考:
  • 参照:
    PubMed
  • No.: 720
  • 文献情報:
    Manon, J.; Evrard, R.; Fiev辿, L.; Bouzin, C.; Magnin, D.; ..., 2023, A new osteogenic membrane to enhance bone healing: at the crossroads between the periosteum, the induced membrane, and the diamond concept, Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 721
  • 文献情報:
    Pugliese, E.; Sallent, I.; Ribeiro, S.; Trotier, A.; Korntner, S. H.; ..., 2023, Development of three-layer collagen scaffolds to spatially direct tissue-specific cell differentiation for enthesis repair, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 722
  • 文献情報:
    Huang, D.; Li, Y.; Ma, Z.; Lin, H.; Zhu, X.; Xiao, Y.; Zhang, X., 2023, Collagen hydrogel viscoelasticity regulates MSC chondrogenesis in a ROCK-dependent manner, Science advances

  • 備考:
  • 参照:
    PubMed
  • No.: 723
  • 文献情報:
    Callan, K. T.; Otarola, G.; Brown, W. E.; Athanasiou, K. A.; ..., 2023, The longer-term effects of a single bupivacaine exposure on the mechanical properties of native cartilage explants, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 724
  • 文献情報:
    Ahmed, K.; Rodboon, T.; Oo, Y.; Phan, T.; ..., 2023, Biofabrication, biochemical profiling, and in vitro applications of salivary gland decellularized matrices via magnetic bioassembly platforms, Cell and Tissue …

  • 備考:
  • 参照:
    PubMed
  • No.: 725
  • 文献情報:
    Joyce, M.; Hodgkinson, T.; Lemoine, M.; ..., 2023, Development of a 3D-printed bioabsorbable composite scaffold with mechanical properties suitable for treating large, load-bearingarticular cartilage defects,

  • 備考:
  • 参照:
    PubMed
  • No.: 726
  • 文献情報:
    Kojima, H.; Kushige, H.; Yagi, H.; Nishijima, T.; ..., 2023, Combinational Treatment Involving Decellularized Extracellular Matrix Hydrogels With Mesenchymal Stem Cells Increased the Efficacy of Cell Therapy in Pancreatitis, Cell …

  • 備考:
  • 参照:
    PubMed
  • No.: 727
  • 文献情報:
    Yuan, S.; Yang, X.; Wang, X.; Chen, J.; Tian, W.; ..., 2023, Injectable Xenogeneic Dental Pulp Decellularized Extracellular Matrix Hydrogel Promotes Functional Dental Pulp Regeneration, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 728
  • 文献情報:
    Sensi, F.; D'angelo, E.; Biccari, A.; Marangio, A.; ..., 2023, Establishment of a human 3D pancreatic adenocarcinoma model based on a patient-derived extracellular matrix scaffold, Translational …

  • 備考:
  • 参照:
    PubMed
  • No.: 729
  • 文献情報:
    Wan, J.; Wu, T.; Wang, K.; Xia, K.; Yin, L.; ..., 2023, Polydopamine-modified decellularized intestinal scaffolds loaded with adipose-derived stem cells promote intestinal regeneration, Journal of Materials …

  • 備考:
  • 参照:
    PubMed
  • No.: 730
  • 文献情報:
    Sorrentino, N. C.; Presa, M.; Attanasio, S.; ..., 2023, New mouse models with hypomorphic SUMF1 variants mimic attenuated forms of multiple sulfatase deficiency, Journal of inherited …

  • 備考:
  • 参照:
    PubMed
  • No.: 731
  • 文献情報:
    Castillo, V.; D鱈az-Astudillo, P.; Corrales-Orovio, R.; ..., 2023, Comprehensive characterization of tissues derived from animals at different regenerative stages: a comparative analysis between fetal and adult mouse skin, Cells

  • 備考:
  • 参照:
    PubMed
  • No.: 732
  • 文献情報:
    Rougier, G.; Maistriaux, L.; Fievテゥ, L.; Xhema, D.; ..., 2023, Decellularized vascularized bone grafts: A preliminary in vitro porcine model for bioengineered transplantable bone shafts, 窶ヲ in Bioengineering and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 733
  • 文献情報:
    Fang, C. H.; Lin, Y. W.; Sun, C. K.; Sun, J. S., 2023, Small-Molecule Loaded Biomimetic Biphasic Scaffold for Osteochondral Regeneration: An In Vitro and In Vivo Study, Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 734
  • 文献情報:
    McDonnell, E. E.; Wilson, N.; Barcellona, M. N.; Nテゥill, T. Nテュ; ..., 2023, Preclinical to clinical translation for intervertebral disc repair: Effects of species窶尽pecific scale, metabolism, and matrix synthesis rates on cell窶臣ased regeneration, JOR 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 735
  • 文献情報:
    Cho, A. Y.; Lee, H. J., 2023, Investigating the Impact of Mechanical Properties and Cell-Collagen Interaction on NIH3T3 Function: A Comparative Study on Different Substrates and …, Gels

  • 備考:
  • 参照:
    PubMed
  • No.: 736
  • 文献情報:
    Tienderen, GS van; Beek, MEA van; Schurink, I. J.; ..., 2023, Modelling metastatic colonization of cholangiocarcinoma organoids in decellularized lung and lymph nodes, Frontiers in …

  • 備考:
  • 参照:
    PubMed
  • No.: 737
  • 文献情報:
    Noh, S.; Jin, Y. J.; Shin, D. I.; Kwon, H. J.; ..., 2023, Selective Extracellular Matrix Guided Mesenchymal Stem Cell Self‐Aggregate Engineering for Replication of Meniscal Zonal Tissue Gradient in a Porcine …, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 738
  • 文献情報:
    Bhattacharjee, P.; Madden, P. W.; Patriarca, E.; ..., 2023, Optimization and evaluation of oxygen-plasma-modified, aligned, poly (Є-caprolactone) and silk fibroin nanofibrous scaffold for corneal stromal regeneration, Biomaterials and …

  • 備考:
  • 参照:
    PubMed
  • No.: 739
  • 文献情報:
    Takaoka, Y.; Fujibayashi, S.; Yabutsuka, T.; Yamane, Y.; ..., 2023, Synergistic effect of sulfonation followed by precipitation of amorphous calcium phosphate on the bone-bonding strength of carbon fiber reinforced …, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 740
  • 文献情報:
    O'Shea, D. G.; Hodgkinson, T.; Curtin, C. M.; ..., 2023, An injectable and 3D printable pro-chondrogenic hyaluronic acid and collagen type II composite hydrogel for the repair of articular cartilage defects, Biofabrication

  • 備考:
  • 参照:
    PubMed
  • No.: 741
  • 文献情報:
    Burdis, R.; Kronemberger, G. S.; Kelly, D. J., 2023, Engineering High-Quality Cartilage Microtissues Using Hydrocortisone Functionalized Microwells, Tissue Engineering Part C …

  • 備考:
  • 参照:
    PubMed
  • No.: 742
  • 文献情報:
    Empere, M.; Wang, X.; Prein, C.; Aspberg, A.; ..., 2023, Aggrecan governs intervertebral discs development by providing critical mechanical cues of the extracellular matrix, … in bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 743
  • 文献情報:
    Fang, W.; Yang, M.; Jin, Y.; Zhang, K.; Wang, Y.; Liu, M.; ..., 2023, Injectable Decellularized Extracellular Matrix-Based Bio-Ink with Excellent Biocompatibility for Scarless Urethra Repair, Gels

  • 備考:
  • 参照:
    PubMed
  • No.: 744
  • 文献情報:
    Kuナ殪ト殕u, A.; Yangトアn, K.; テ奔kan, S. N.; ..., 2023, Different decellularization methods in bovine lung tissue reveals distinct biochemical composition, stiffness, and viscoelasticity in reconstituted hydrogels, ACS Applied Bio 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 745
  • 文献情報:
    Vurat, M. T.; Parmaksiz, M.; Elテァin, A. E.; ..., 2023, Bioactive composite hydrogels as 3D mesenchymal stem cell encapsulation environment for bone tissue engineering: In vitro and in vivo studies, Journal of Biomedical 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 746
  • 文献情報:
    Bhattacharyya, S.; Tobacman, J. K., 2023, Increased Cerebral Serum Amyloid A2 and Parameters of Oxidation in Arylsulfatase B (N-Acetylgalactosamine-4-Sulfatase)-Null Mice, Journal of Alzheimer's …

  • 備考:
  • 参照:
    PubMed
  • No.: 747
  • 文献情報:
    Bahrami, S.; Mirzadeh, H.; Solouk, A.; ..., 2023, Bioinspired scaffolds based on aligned polyurethane nanofibers mimic tendon and ligament fascicles, Biotechnology …

  • 備考:
  • 参照:
    PubMed
  • No.: 748
  • 文献情報:
    Kim, W. J.; Kim, G. H., 2023, Bioprinting 3D muscle tissue supplemented with endothelial-spheroids for neuromuscular junction model, Applied Physics Reviews

  • 備考:
  • 参照:
    PubMed
  • No.: 749
  • 文献情報:
    Moura, S. R.; Freitas, J.; Ribeiro-Machado, C.; ..., 2023, Long non-coding RNA H19 regulates matrisome signature and impacts cell behavior on MSC-engineered extracellular matrices, Stem Cell Research & …

  • 備考:
  • 参照:
    PubMed
  • No.: 750
  • 文献情報:
    Su, J.; Jin, X.; She, K.; Liu, Y.; Song, L.; Zhao, Q.; Xiao, J.; ..., 2023, In vivo adenine base editing corrects newborn murine model of Hurler syndrome, Molecular …

  • 備考:
  • 参照:
    PubMed
  • No.: 751
  • 文献情報:
    Palanki, R.; Bose, S. K.; Dave, A.; White, B. M.; Berkowitz, C.; ..., 2023, Ionizable lipid nanoparticles for therapeutic base editing of congenital brain disease, ACS …

  • 備考:
  • 参照:
    PubMed
  • No.: 752
  • 文献情報:
    Brown, W. E.; Lavernia, L.; Bielajew, B. J.; Hu, J. C.; ..., 2023, Human nasal cartilage: Functional properties and structure-function relationships for the development of tissue engineering design criteria, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 753
  • 文献情報:
    Podetz-Pedersen, K. M.; Laoharawee, K.; Singh, S.; ..., 2023, Neurologic Recovery in MPS i and MPS II Mice by AAV9-Mediated Gene Transfer to the CNS after the Development of Cognitive Dysfunction, Human gene …

  • 備考:
  • 参照:
    PubMed
  • No.: 754
  • 文献情報:
    Dechテェne, L.; Colin, M.; Demazy, C.; Fransolet, M.; ..., 2023, Characterization of the proteins secreted by equine muscle-derived mesenchymal stem cells exposed to cartilage explants in osteoarthritis model, Stem Cell Reviews and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 755
  • 文献情報:
    Sun, F.; Shen, Z.; Zhang, B.; Lu, Y.; Shan, Y.; ..., 2023, Biomimetic in situ tracheal microvascularization for segmental tracheal reconstruction in one‐step, Bioengineering & …

  • 備考:
  • 参照:
    PubMed
  • No.: 756
  • 文献情報:
    Arin, A.; Rahaman, M. S.; Farwa, U.; ..., 2023, Faster and protective wound healing mechanistic of para‐coumaric acid loaded liver ECM scaffold cross‐linked with acellular marine kelp, Advanced Functional …

  • 備考:
  • 参照:
    PubMed
  • No.: 757
  • 文献情報:
    Yagi, M.; Endo, K.; Komori, K.; Sekiya, I., 2023, Comparison of the effects of oxidative and inflammatory stresses on rat chondrocyte senescence, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 758
  • 文献情報:
    Bhattacharyya, S.; Tobacman, J. K., 2023, Increased Cerebral Serum Amyloid A2 and Parameters of Oxidation in Arylsulfatase B (N-Acetylgalactosamine-4-Sulfatase)-Null Mice, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 759
  • 文献情報:
    Zhang, D.; Lai, L.; Fu, H.; Fu, Q.; Chen, M., 2023, 3D-bioprinted biomimetic multilayer implants comprising microfragmented adipose extracellular matrix and cells improve wound healing in a murine model of full …, ACS Applied Materials & …

  • 備考:
  • 参照:
    PubMed
  • No.: 760
  • 文献情報:
    Prithiviraj, S.; Garcia, A. G.; Linderfalk, K.; Yiguang, B.; ..., 2023, Compositional editing of extracellular matrices by CRISPR/Cas9 engineering of human mesenchymal stem cell lines, bioRxiv

  • 備考:
  • 参照:
    PubMed
  • No.: 761
  • 文献情報:
    Lin, C. Y. J.; Gruber, S.; Whitlock, P. W.; Ghosh, P., 2023, Microspheres containing decellularized donor tissue and their use in fabricating polymeric structures, US Patent 11,712,496

  • 備考:
  • 参照:
    PubMed
  • No.: 762
  • 文献情報:
    Salti, H.; Kramer, L.; Nelz, S. C.; Lorenz, M.; ..., 2023, Decellularization of precision-cut kidney slices—Application of physical and chemical methods, Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 763
  • 文献情報:
    Delcroix, G. J. R.; Hackett, A.; Schiller, P. C.; ..., 2023, Characterization of three washing/decellularization procedures for the production of bioactive human micronized neural tissue (hMINT), Cell and Tissue Banking

  • 備考:
  • 参照:
    PubMed
  • No.: 764
  • 文献情報:
    Sorhun, D. Turan; Kuナ殪ト殕u, A.; テ奔tテシrk, E., 2023, Developing Bovine Brain-Derived Extracellular Matrix Hydrogels: a Screen of Decellularization Methods for Their Impact on Biochemical and Mechanical Properties, ACS omega

  • 備考:
  • 参照:
    PubMed
  • No.: 765
  • 文献情報:
    ナサabiナгka, M.; Gaffke, L.; Bielaナгka, P.; Podlacha, M.; ..., 2023, Decreased levels of chaperones in mucopolysaccharidoses and their elevation as a putative auxiliary therapeutic approach, Pharmaceutics

  • 備考:
  • 参照:
    PubMed
  • No.: 766
  • 文献情報:
    Cao, H.; Li, Z.; Chen, Y.; Zhu, J.; Chen, M.; Lei, H.; ..., 2023, Viscoelasticity microenvironment constructed by self-crosslinking hyaluronan hybrid hydrogels regulates chondrogenic differentiation of mesenchymal stem …, Composites Part B …

  • 備考:
  • 参照:
    PubMed
  • No.: 767
  • 文献情報:
    Dai, P.; Zou, T.; Zhao, W.; Lv, Y.; Gao, D.; Ruan, C.; ..., 2023, Short-term transplantation effect of a tissue-engineered meniscus constructed using drilled allogeneic acellular meniscus and BMSCs, Frontiers in Veterinary …

  • 備考:
  • 参照:
    PubMed
  • No.: 768
  • 文献情報:
    Gu, J.; Wang, B.; Wang, T.; Zhang, N.; Liu, H.; ..., 2023, Effects of cartilage progenitor cells, bone marrow mesenchymal stem cells and chondrocytes on cartilage repair as seed cells: an in vitro study, Drug Design …

  • 備考:
  • 参照:
    PubMed
  • No.: 769
  • 文献情報:
    Guo, H.; Li, Y.; Qiu, L.; Li, J.; Guo, X.; Zhang, Y.; Wang, J., 2023, Gua Lou Er Chen decoction attenuates atherosclerosis by reducing proteoglycans accumulation and inflammation, Phytomedicine

  • 備考:
  • 参照:
    PubMed
  • No.: 770
  • 文献情報:
    Jianying, M. A. O.; Wenjing, Y.; He, G. U. O.; Ruili, D.; ..., 2023, A cervical cancer tissue-derived decellularized extracellular matrix scaffold for cervical cancer tissue reconstruction in vitro, Journal of Southern …

  • 備考:
  • 参照:
    PubMed
  • No.: 771
  • 文献情報:
    Fackler, N. P.; Donahue, R. P.; Bielajew, B. J.; ..., 2023, Characterization of the Age-Related Differences in Porcine Acetabulum and Femoral Head Articular Cartilage, Cartilage

  • 備考:
  • 参照:
    PubMed
  • No.: 772
  • 文献情報:
    Smith, M. C.; Belur, L. R.; Karlen, A. D.; ..., 2023, Generation and characterization of an immunodeficient mouse model of mucopolysaccharidosis type II, Molecular genetics and …

  • 備考:
  • 参照:
    PubMed
  • No.: 773
  • 文献情報:
    Hausmanns, S.; Frech, H. U.; Oesser, S.; ..., 2023, Recombinant production of a collagen peptide preparation and use thereof, US Patent 11,673,940

  • 備考:
  • 参照:
    PubMed
  • No.: 774
  • 文献情報:
    Weiテ歹nberger, M.; Wagenbrenner, M.; Nickel, J.; ..., 2023, Comparative in vitro treatment of mesenchymal stromal cells with GDF-5 and R57A induces chondrogenic differentiation while limiting chondrogenic 窶ヲ, Journal of Experimental 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 775
  • 文献情報:
    Brito, MM de; Bundeleva, I.; Marin, F.; ..., 2023, Properties of exopolymeric substances (EPS) produced during cyanobacterial growth: potential role in whiting events, Biogeosciences …

  • 備考:
  • 参照:
    PubMed
  • No.: 776
  • 文献情報:
    Garcテュa, テ泥 Garcテュa, 2023, Generaciテウn y evaluaciテウn in vivo de modelos bioartificiales de nervio perifテゥrico descelularizado de estructura y visco-elasticidad controladas,

  • 備考:
  • 参照:
    PubMed
  • No.: 777
  • 文献情報:
    Hanetseder, D.; Schaedl, B.; Redl, H.; ..., 2023, Extracellular matrix from hiPSC-mesenchymal progenitors modulates the three-lineage differentiation of human bone marrow stromal cells, European cells & …

  • 備考:
  • 参照:
    PubMed
  • No.: 778
  • 文献情報:
    Tom叩s, C. Vicente, 2023, Desarrollo de un modelo de enfermedad para el mieloma m炭ltiple: estudio de la adhesi坦n entre c辿lulas tumorales y c辿lulas madre mesenquimales,

  • 備考:
  • 参照:
    PubMed
  • No.: 779
  • 文献情報:
    Calle, E.; Niklason, L. E.; Petersen, T.; ..., 2023, Tissue engineering of lung, US Patent App. 18/190,551

  • 備考:
  • 参照:
    PubMed
  • No.: 780
  • 文献情報:
    Orlando, G.; Soker, S., 2023, Organ/tissue decellularization, framework maintenance and recellularization, US Patent App. 18/170,669

  • 備考:
  • 参照:
    PubMed
  • No.: 781
  • 文献情報:
    Jia, Q.; Ping, J.; Yimam, M.; Horm, T., 2023, Compositions and Methods for Managing or Improving Bone Disorders, Joint Disorders, Cartilage Disorders, or a Combination Thereof, US Patent App. 18/084,009

  • 備考:
  • 参照:
    PubMed
  • No.: 782
  • 文献情報:
    Calle, E.; Niklason, L. E.; Petersen, T.; Gui, L., 2023, Tissue engineering of lung, US Patent 11,648,280

  • 備考:
  • 参照:
    PubMed
  • No.: 783
  • 文献情報:
    Orlando, G.; Soker, S., 2023, Organ/tissue decellularization, framework maintenance and recellularization, US Patent 11,648,335

  • 備考:
  • 参照:
    PubMed
  • No.: 784
  • 文献情報:
    Snyder, Y.; Jana, S., 2023, Elastomeric Trilayer Substrates with Native-like Mechanical Properties for Heart Valve Leaflet Tissue Engineering, ACS Biomaterials Science &Engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 785
  • 文献情報:
    Esquembre, C. Segu鱈, 2024, Dise単o de hidrogeles de 叩cido hialur坦nico injertados con mol辿culas condroprotectoras,

  • 備考:
  • 参照:
    PubMed
  • No.: 786
  • 文献情報:
    Scalzone, A.; Sanjurjo-Rodr鱈guez, C.; ..., 2024, Functional and Molecular Analysis of Human Osteoarthritic Chondrocytes Treated with Bone Marrow-Derived MSC-EVs, Bioengineering

  • 備考:
  • 参照:
    PubMed
  • No.: 787
  • 文献情報:
    Weber, P.; Asadikorayem, M.; Surman, F.; ..., 2024, Zwitterionic polymer-dexamethasone conjugates penetrate and protect cartilage from inflammation, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 788
  • 文献情報:
    Elder, S. H.; Ross, M. K.; Nicaise, A. J.; Miller, I. N.; ..., 2024, Development of in situ forming implants for controlled delivery of punicalagin, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 789
  • 文献情報:
    Luo, N.; Huang, Q.; Dong, L.; Liu, W.; Song, J.; Sun, H.; ..., 2024, Near-cognate tRNAs increase the efficiency and precision of pseudouridine-mediated readthrough of premature termination codons, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 790
  • 文献情報:
    Huang, S.; Rao, Y.; Ju, A. L.; Blocki, A. M.; Wang, D. M.; ..., 2024, Non-collagenous proteins, rather than the collagens, are key biochemical factors that mediate tenogenic bioactivity of tendon extracellular matrix, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 791
  • 文献情報:
    Evrard, R.; Manon, J.; Maistriaux, L.; Rafferty, C.; ..., 2024, Decellularization of Massive Bone Allografts By Perfusion: A New Protocol for Tissue Engineering, … Engineering Part A

  • 備考:
  • 参照:
    PubMed
  • No.: 792
  • 文献情報:
    Baysan, G.; Yilmaz, P. A.; Albayrak, A. Z.; Havitcioglu, H., 2024, Loofah and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) nano-fiber-reinforced chitosan hydrogel composite scaffolds with elderberry (Sambucus nigra) and …, Polymer Bulletin

  • 備考:
  • 参照:
    PubMed
  • No.: 793
  • 文献情報:
    Maistriaux, L.; Foulon, V.; Fievテゥ, L.; Xhema, D.; ..., 2024, Reconstruction of the human nipple窶殿reolar complex: a tissue engineering approach, 窶ヲ in Bioengineering and 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 794
  • 文献情報:
    Wang, Q.; Shao, G.; Zhao, X.; Wong, H. H.; Chin, K.; ..., 2024, Dysregulated fibrinolysis and plasmin activation promote the pathogenesis of osteoarthritis, JCI …

  • 備考:
  • 参照:
    PubMed
  • No.: 795
  • 文献情報:
    Bhattacharyya, S.; Insug, O.; Tobacman, J. K., 2024, N-Acetylgalactosamine-4-Sulfatase (Arylsulfatase B) Regulates PD-L1 Expression in Melanoma by an HDAC3-Mediated Epigenetic Mechanism,

  • 備考:
  • 参照:
    PubMed
  • No.: 796
  • 文献情報:
    Zhao, C.; Li, X.; Han, X.; Li, Z.; Bian, S.; Zeng, W.; ..., 2024, Molecular co-assembled strategy tuning protein conformation for cartilage regeneration, Nature …

  • 備考:
  • 参照:
    PubMed
  • No.: 797
  • 文献情報:
    Sun, L.; Jin, Y.; Nishio, M.; Watanabe, M.; ..., 2024, Oxidative phosphorylation is a pivotal therapeutic target of fibrodysplasia ossificans progressiva, Life Science …

  • 備考:
  • 参照:
    PubMed
  • No.: 798
  • 文献情報:
    Fern叩ndez-Moreno, M.; Hermida-G坦mez, T.; Larkins, N.; ..., 2024, Anti-Inflammatory Activity of APPA (Apocynin and Paeonol) in Human Articular Chondrocytes, Pharmaceuticals

  • 備考:
  • 参照:
    PubMed
  • No.: 799
  • 文献情報:
    Jiang, T.; Li, B.; Yongfeng, R. A. N.; Yan, J.; ..., 2024, Preparation method for decellularized matrix biomaterial, US Patent App. 18 …

  • 備考:
  • 参照:
    PubMed
  • No.: 800
  • 文献情報:
    Gujjar, S.; Tyagi, A.; Sainger, S.; Bharti, P.; Nain, V.; ..., 2024, Biocompatible Human Placental Extracellular Matrix Derived Hydrogels, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 801
  • 文献情報:
    D旦nges, L.; Damle, A.; Mainardi, A.; Bock, T.; ..., 2024, Engineered human osteoarthritic cartilage organoids, Biomaterials

  • 備考:
  • 参照:
    PubMed
  • No.: 802
  • 文献情報:
    Kopinski-Gr端nwald, O.; Guillaume, O.; Ferner, T.; Sch辰dl, B.; ..., 2024, Scaffolded spheroids as building blocks for bottom-up cartilage tissue engineering show enhanced bioassembly dynamics, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 803
  • 文献情報:
    Jin, H.; Kang, Y.; Gao, H.; Lin, Z.; Huang, D.; ..., 2024, Decellularization‐Based Modification Strategy for Bioactive Xenografts Promoting Tendon Repair, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 804
  • 文献情報:
    Kleine, A.; K端hle, M.; Ly, T. D.; Schmidt, V.; Faust-Hinse, I.; ..., 2024, Xylosyltransferase-Deficiency in Human Dermal Fibroblasts Induces Compensatory Myofibroblast Differentiation and Long-Term ECM Reduction, Biomedicines

  • 備考:
  • 参照:
    PubMed
  • No.: 805
  • 文献情報:
    Ishizaki, Y.; Wang, J.; Kim, J.; Matsumoto, T.; Maeda, E., 2024, Contributions of collagen and elastin to elastic behaviours of tendon fascicle, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 806
  • 文献情報:
    Xu, M. S.; D'Elia, A.; Hadzimustafic, N.; Adil, A.; Karoubi, G.; ..., 2024, Bioengineering of vascularized porcine flaps using perfusion-recellularization, Scientific Reports

  • 備考:
  • 参照:
    PubMed
  • No.: 807
  • 文献情報:
    Noh, S.; Lee, S. J.; Yoo, J. J.; Jin, Y. J.; Yun, H. W.; Min, B. H.; ..., 2024, Synovium-Derived Mesenchymal Stem Cell-Based Scaffold-Free Fibrocartilage Engineering for Bone窶典endon Interface Healing in an Anterior Cruciate Ligament 窶ヲ, Tissue Engineering

  • 備考:
  • 参照:
    PubMed
  • No.: 808
  • 文献情報:
    Malinowska, M.; Nowicka, W.; Kloska, A.; ..., 2024, Efficacy of a combination therapy with laronidase and genistein in treating mucopolysaccharidosis type I in a mouse model, International Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 809
  • 文献情報:
    Terrie, L.; Philips, C.; Muylle, E.; Weisrock, A.; ..., 2024, Decellularized tissue exhibits large differences of extracellular matrix properties dependent on decellularization method: novel insights from a standardized …, …

  • 備考:
  • 参照:
    PubMed
  • No.: 810
  • 文献情報:
    Ma, T.; Ren, D.; Wang, J.; Fu, F.; Sun, W. Q.; ..., 2024, Enhanced osteogenicity of the demineralized bone‐dermal matrix composite by the optimal partial demineralization for sustained release of bioactive molecules, Journal of Biomedical …

  • 備考:
  • 参照:
    PubMed
  • No.: 811
  • 文献情報:
    Seo, J. W.; Jo, S. H.; Kim, S. H.; Choi, B. H.; Cho, H.; ..., 2024, Application of Cartilage Extracellular Matrix to Enhance Therapeutic Efficacy of Methotrexate, Tissue Engineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 812
  • 文献情報:
    Makhija, E.; Zheng, Y.; Wang, J.; Leong, H. R.; Othman, R. B.; ..., 2024, Topological defects in self-assembled patterns of mesenchymal stromal cells in vitro are predictive attributes of condensation and chondrogenesis, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 813
  • 文献情報:
    Monteiro, M. V.; Henriques‐Pereira, M.; ..., 2024, Photo‐Compartmentalized Decellularized Matrix‐Hyaluronan Hybrid Units for Pancreatic Tumor‐Stroma Modeling, Advanced Functional …

  • 備考:
  • 参照:
    PubMed
  • No.: 814
  • 文献情報:
    Loverde, J. R.; Piroli, M. E.; Gilchrist, K. H.; Barnhill, J.; ..., 2024, Compression cycling of 3D-printed meniscal tissues in vitro using a custom bioreactor, Bioprinting

  • 備考:
  • 参照:
    PubMed
  • No.: 815
  • 文献情報:
    Kim, W. J.; Kim, G. H., 2024, Engineered 3D liver-tissue model with minispheroids formed by a bioprinting process supported with in situ electrical stimulation, Bioactive Materials

  • 備考:
  • 参照:
    PubMed
  • No.: 816
  • 文献情報:
    Yang, Z.; Wu, Y.; Neo, S. H.; Yang, D.; ..., 2024, Size-Based Microfluidic-Enriched Mesenchymal Stem Cell Subpopulations Enhance Articular Cartilage Repair, … American Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 817
  • 文献情報:
    Zhang, X.; Zhan, X.; Cheng, H.; Dong, Z.; Hu, C.; Liu, C.; ..., 2024, Cartilage-like protein-polysaccharide hybrid hydrogel for enhancing chondrogenic differentiation of bone marrow mesenchymal stem cells, Collagen and …

  • 備考:
  • 参照:
    PubMed
  • No.: 818
  • 文献情報:
    Abusharkh, H. A.; Robertson, T.; ..., 2024, Impact of interstitial flow on cartilage matrix synthesis and NF‐kB transcription factor mRNA expression in a novel perfusion bioreactor, Biotechnology …

  • 備考:
  • 参照:
    PubMed
  • No.: 819
  • 文献情報:
    Moslehyazdi, M.; Bielajew, B.; ..., 2024, Detrimental Effects of Chlorhexidine on Articular Cartilage Viability, Matrix, and Mechanics, … American Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 820
  • 文献情報:
    Lin, C. Y. J.; Gruber, S.; Whitlock, P. W.; ..., 2024, Microspheres Containing Decellularized Donor Tissue and Their Use in Fabricating Polymeric Structures, US Patent App. 18 …

  • 備考:
  • 参照:
    PubMed
  • No.: 821
  • 文献情報:
    Donsante, S.; Pievani, A.; Palmisano, B.; Finamore, M.; ..., 2024, Modeling skeletal dysplasia in Hurler syndrome using patient-derived bone marrow osteoprogenitor cells, JCI insight

  • 備考:
  • 参照:
    PubMed
  • No.: 822
  • 文献情報:
    Chen, L. M.; Beck, P.; Ede, J. van; Pronk, M.; ..., 2024, Anionic extracellular polymeric substances extracted from seawater-adapted aerobic granular sludge, Applied Microbiology …

  • 備考:
  • 参照:
    PubMed
  • No.: 823
  • 文献情報:
    Vettese, J.; Manon, J.; Chretien, A.; Evrard, R.; ..., 2024, Collagen molecular organization preservation in human fascia lata and periosteum after tissue engineering, … in bioengineering and …

  • 備考:
  • 参照:
    PubMed
  • No.: 824
  • 文献情報:
    Santinha, D.; Vilaテァa, A.; Estronca, L.; Schテシler, S. C.; ..., 2024, Remodeling of the Cardiac Extracellular Matrix Proteome During Chronological and Pathological Aging, Molecular &Cellular 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 825
  • 文献情報:
    Seki, Y.; Ohkuma, R. C.; Miyakawa, Y.; ..., 2024, Hyaluronan and chondroitin sulfate in chicken窶砺egetable bone broth delay osteoporosis progression, Journal of Food 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 826
  • 文献情報:
    Yu, P.; Duan, L.; Yan, Z.; Li, J.; Cai, D. Z., 2024, RADA-16-based self-assembled peptide nanofiber scaffolds loaded with TGF-β1 enhance the chondrogenic differentiation potential of BMSCs in vitro, Current Stem Cell Research …

  • 備考:
  • 参照:
    PubMed
  • No.: 827
  • 文献情報:
    Barcellona, M. N.; Nテゥill, T. Nテュ; O'Brien, F. J.; ..., 2024, Modulation of Inflammation and Regeneration in the Intervertebral Disc Using Enhanced Cell窶娠enetrating Peptides for MicroRNA Delivery, Advanced 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 828
  • 文献情報:
    Im, P.; Shin, H.; Kim, J., 2024, Tilapia-Derived Granular Hydrogel as a 3D Scaffold Promoting Rapid Wound Healing, Biomacromolecules

  • 備考:
  • 参照:
    PubMed
  • No.: 829
  • 文献情報:
    Feng, J.; Fu, S.; Luan, J., 2024, Harnessing fine fibers in decellularized adipose-derived matrix for enhanced adipose regeneration, Materials Today Bio

  • 備考:
  • 参照:
    PubMed
  • No.: 830
  • 文献情報:
    Jiang, Z.; Clausen, J. D.; Jahn, D.; Wulsten, D.; ..., 2024, Ex vivo storage of human osteochondral allografts: Long‐term analysis over 300 days using a Ringer‐based solution, Journal of …

  • 備考:
  • 参照:
    PubMed
  • No.: 831
  • 文献情報:
    Joyce, M.; Hodgkinson, T.; Intini, C.; Dixon, J. E.; ..., 2024, Gene activated reinforced scaffolds for SOX9 delivery to enhance repair of large load bearing articular cartilage defects, European Cells and …

  • 備考:
  • 参照:
    PubMed
  • No.: 832
  • 文献情報:
    Tejeda-Mora, H.; Hartog, Y. den; Schurink, I. J.; ..., 2024, Endothelial Cell Replacement of Human Veins, Modeling Vascular Repair and Endothelial Cell Chimerism, Stem Cells and …

  • 備考:
  • 参照:
    PubMed
  • No.: 833
  • 文献情報:
    Zakour, KEWB; Kaya, S.; Matros, J. C.; Hacker, M. C.; ..., 2024, Enhancement of lacrimal gland cell function by decellularized lacrimal gland derived hydrogel, …

  • 備考:
  • 参照:
    PubMed
  • No.: 834
  • 文献情報:
    Gaspar-Pintiliescu, A.; Stefan, L. M.; Mihai, E.; Sanda, C.; ..., 2024, Antioxidant and antiproliferative effect of a glycosaminoglycan extract from Rapana venosa marine snail, Plos one

  • 備考:
  • 参照:
    PubMed
  • No.: 835
  • 文献情報:
    Bhattacharyya, S.; Tobacman, J. K., 2024, SARS-CoV-2 spike protein-ACE2 interaction increases carbohydrate sulfotransferases and reduces N-acetylgalactosamine-4-sulfatase by p38 MAPK, Signal Transduction and Targeted …

  • 備考:
  • 参照:
    PubMed
  • No.: 836
  • 文献情報:
    Quinteira, R.; Gimondi, S.; Monteiro, N. O.; ..., 2024, Decellularized Kidney Extracellular Matrix-Based Hydrogels for Renal Tissue Engineering, Acta Biomaterialia

  • 備考:
  • 参照:
    PubMed
  • No.: 837
  • 文献情報:
    Bhattacharyya, S.; Insug, O.; Tu, J.; Chen, Z.; ..., 2024, Exogenous recombinant N-acetylgalactosamine-4-sulfatase (Arylsulfatase B; ARSB) inhibits progression of B16F10 cutaneous melanomas and modulates …, … et Biophysica Acta (BBA …

  • 備考:
  • 参照:
    PubMed
  • No.: 838
  • 文献情報:
    Chen, J. G.; Zhang, E. C.; Wan, Y. Y.; Huang, T. Y.; ..., 2024, Engineered hsa‐miR‐455‐3p‐Abundant Extracellular Vesicles Derived from Three‐Dimensional‐Cultured Adipose Mesenchymal Stem Cells for Tissue‐engineering …, Advanced …

  • 備考:
  • 参照:
    PubMed
  • No.: 839
  • 文献情報:
    Garcテュa-Gareta, E.; Calderテウn-Villalba, A.; ..., 2024, Physico-chemical characterization of the tumour microenvironment of pancreatic ductal adenocarcinoma, European Journal of 窶ヲ

  • 備考:
  • 参照:
    PubMed
  • No.: 840
  • 文献情報:
    Rashidi, F.; Mohammadzadeh, M.; ..., 2024, Acellular carotid scaffold and evaluation the biological and biomechanical properties for tissue engineering, … of Cardiovascular and …

  • 備考:
  • 参照:
    PubMed
  • No.: 841
  • 文献情報:
    Kasturi, M.; Vasanthan, K. S., 2024, Harvesting decellularized liver extracellular matrix from rodents for 3D scaffold fabrication, Artificial Cells, Nanomedicine, and …

  • 備考:
  • 参照:
    PubMed