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在庫・価格 : 2024年04月20日 14時11分 現在

商品名 商品コード メーカー 包装 価格 在庫 リスト
Anti-Angiotensin Converting Enzyme 2, Ectodomain, Human, Goat-Poly <Anti-ACE-2>
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AF933 RSDアールアンドディー システムス
R&D Systems, Inc.
100 μg ¥106,000
(未発注)
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在庫・価格 : 2024年04月20日 14時11分 現在

Anti-Angiotensin Converting Enzyme 2, Ectodomain, Human, Goat-Poly <Anti-ACE-2>

  • 商品コード:AF933
  • メーカー:RSD
  • 包装:100μg
  • 価格: ¥106,000
  • 在庫:無(未発注)
使用文献
No. 文献情報 備考 参照
1 Li W et al. Angiotensin-converting enzyme 2 is a functional receptor for the SARS coronavirus. Nature 2003 Nov;426(6965):450-4
Li W et al
2003/01/01
Species: Human, Application: Neutralization, Sample type: Whole Cells PubMed
2 Wang P et al. Expression cloning of functional receptor used by SARS coronavirus. Biochem. Biophys. Res. Commun. 2004 Mar;315(2):439-44
Wang P et al
2004/01/01
Application: Neutralization, Sample Type: Whole Cells PubMed
3 Sui J et al. Potent neutralization of severe acute respiratory syndrome (SARS) coronavirus by a human mAb to S1 protein that blocks receptor association. Proc. Natl. Acad. Sci. U.S.A. 2004 Feb;101(8):2536-41
Sui J et al
2004/01/01
Application: Immunoprecipitation PubMed
4 Hofmann H et al. Susceptibility to SARS coronavirus S protein-driven infection correlates with expression of angiotensin converting enzyme 2 and infection can be blocked by soluble receptor. Biochem. Biophys. Res. Commun. 2004 Jul;319(4):1216-21
Hofmann H et al
2004/01/01
Application: Flow Cytometry, Sample Type: Whole Cells PubMed
5 Xiao X et al. Oligomerization of the SARS-CoV S glycoprotein: dimerization of the N-terminus and trimerization of the ectodomain. Biochem. Biophys. Res. Commun. 2004 Sep;322(1):93-9
Xiao X et al
2004/01/01
Application: Western Blot, Sample Type: Whole Cells PubMed
6 Nie Y et al. Highly infectious SARS-CoV pseudotyped virus reveals the cell tropism and its correlation with receptor expression. Biochem. Biophys. Res. Commun. 2004 Sep;321(4):994-1000
Nie Y et al
2004/01/01
Application: Flow Cytometry, Sample Type: Whole Cells PubMed
7 Moore MJ et al. Retroviruses pseudotyped with the severe acute respiratory syndrome coronavirus spike protein efficiently infect cells expressing angiotensin-converting enzyme 2. J. Virol. 2004 Oct;78(19):10628-35
Moore MJ et al
2004/01/01
Application: Flow Cytometry, Sample Type: Whole Cells PubMed
8 Kuba K et al. A crucial role of angiotensin converting enzyme 2 (ACE2) in SARS coronavirus-induced lung injury. Nat. Med. 2005 Aug;11(8):875-9
Kuba K et al
2005/01/01
Species: Human, Application: Flow Cytometry, Immunoprecipitation, Sample type: Whole Cells, Cell Lysates PubMed
9 Tseng CT et al. Apical entry and release of severe acute respiratory syndrome-associated coronavirus in polarized Calu-3 lung epithelial cells. J. Virol. 2005 Aug;79(15):9470-9
Tseng CT et al
2005/01/01
Application: IHC Fresh,Neutralization, Sample Type: Whole Cells PubMed
10 de Lang A et al. Interferon-gamma and interleukin-4 downregulate expression of the SARS coronavirus receptor ACE2 in Vero E6 cells. Virology 2006 Sep;353(2):474-81
de Lang A et al
2006/01/01
Species: Primate - Cholrocebus pygerythrus (vervet or African green monkey), Application: IHC Unspecified, Whole Cells PubMed
11 Zhao J et al. A study on antigenicity and receptor-binding ability of fragment 450-650 of the spike protein of SARS coronavirus. Virology 2007 Mar;359(2):362-70
Zhao J et al
2007/01/01
Application: Western Blot, Sample Type: Cell Lysates PubMed
12 Tseng CT et al. Severe acute respiratory syndrome coronavirus infection of mice transgenic for the human Angiotensin-converting enzyme 2 virus receptor. J. Virol. 2007 Feb;81(3):1162-73
Tseng CT et al
2007/01/01
Application: Western Blot, Sample Type: Cell Lysates PubMed
13 Wiener RS et al. Angiotensin converting enzyme 2 is primarily epithelial and is developmentally regulated in the mouse lung. J. Cell. Biochem. 2007 Aug;101(5):1278-91
Wiener RS et al
2007/01/01
Species: Mouse, Application: Western Blot, Sample type: Cell Supernates PubMed
14 Rockx B et al. Synthetic reconstruction of zoonotic and early human severe acute respiratory syndrome coronavirus isolates that produce fatal disease in aged mice. J. Virol. 2007 Jul;81(14):7410-23
Rockx B et al
2007/01/01
Species: Primate - Cholrocebus pygerythrus (vervet or African green monkey), Application: Neutralization, Sample type: Whole Cells PubMed
15 Inoue Y et al. Clathrin-dependent entry of severe acute respiratory syndrome coronavirus into target cells expressing ACE2 with the cytoplasmic tail deleted. J. Virol. 2007 Aug;81(16):8722-9
Inoue Y et al
2007/01/01
Species: Primate - Macaca mulatta (Rhesus monkey), Application: Western Blot, Sample type: Cell Lysates PubMed
16 Senanayake P et al. Angiotensin II and its receptor subtypes in the human retina. Invest. Ophthalmol. Vis. Sci. 2007 Jul;48(7):3301-11
Senanayake P et al
2007/01/01
Species: Human, Application: Western Blot, Sample type: Homogenized Tissue PubMed
17 Li W et al. The S proteins of human coronavirus NL63 and severe acute respiratory syndrome coronavirus bind overlapping regions of ACE2. Virology 2007 Oct;367(2):367-74
Li W et al
2007/01/01
Species: Human, Application: Neutralization, Sample type: Whole Cells PubMed
18 Lambert DW et al. Calmodulin interacts with angiotensin-converting enzyme-2 (ACE2) and inhibits shedding of its ectodomain. FEBS Lett. 2008 Jan;582(2):385-90
Lambert DW et al
2008/01/01
Species: Human, Application: Western Blot, Cell Lysates PubMed
19 Ren W et al. Difference in receptor usage between severe acute respiratory syndrome (SARS) coronavirus and SARS-like coronavirus of bat origin. J. Virol. 2008 Feb;82(4):1899-907
Ren W et al
2008/01/01
Species: Human, Application: IHC Fresh, Western Blot, Sample type: Whole Cells, Cell Lysates PubMed
20 Howard MW et al. Aromatic amino acids in the juxtamembrane domain of severe acute respiratory syndrome coronavirus spike glycoprotein are important for receptor-dependent virus entry and cell-cell fusion. J. Virol. 2008 Mar;82(6):2883-94
Howard MW et al
2008/01/01
Species: Human, Application: Flow Cytometry, Whole Cells PubMed
21 Lu Y et al. Lipid rafts are involved in SARS-CoV entry into Vero E6 cells. Biochem. Biophys. Res. Commun. 2008 May;369(2):344-9
Lu Y et al
2008/01/01
Species: Primate - Cholrocebus pygerythrus (vervet or African green monkey), Application: Flow Cytometry, Whole Cells PubMed
22 Pacciarini F et al. Persistent replication of severe acute respiratory syndrome coronavirus in human tubular kidney cells selects for adaptive mutations in the membrane protein. J. Virol. 2008 Jun;82(11):5137-44
Pacciarini F et al
2008/01/01
Species: Human, Application: Flow Cytometry, Whole Cells PubMed
23 Koka V et al. Angiotensin II up-regulates angiotensin I-converting enzyme (ACE), but down-regulates ACE2 via the AT1-ERK/p38 MAP kinase pathway. Am. J. Pathol. 2008 May;172(5):1174-83
Koka V et al
2008/01/01
Species: Human, Application: IHC Paraffin-embedded, Western Blot, Whole Tissue, Cell Lysates PubMed
24 Havenga MJ et al. Serum-free transient protein production system based on adenoviral vector and PER.C6 technology: high yield and preserved bioactivity. Biotechnol. Bioeng. 2008 Jun;100(2):273-83
Havenga MJ et al
2008/01/01
Species: Human, Application: Flow Cytometry, Whole Cells PubMed
25 Sheahan T et al. Pathways of cross-species transmission of synthetically reconstructed zoonotic severe acute respiratory syndrome coronavirus. J. Virol. 2008 Sep;82(17):8721-32
Sheahan T et al
2008/01/01
Species: Human, Application: Flow Cytometry, Whole Cells PubMed
26 Epelman S et al. Detection of soluble angiotensin-converting enzyme 2 in heart failure: insights into the endogenous counter-regulatory pathway of the renin-angiotensin-aldosterone system. J. Am. Coll. Cardiol. 2008 Aug;52(9):750-4
Epelman S et al
2008/01/01
Species: Human, Application: Neutralization, Plasma (Not Specified) PubMed
27 Glende J et al. Importance of cholesterol-rich membrane microdomains in the interaction of the S protein of SARS-coronavirus with the cellular receptor angiotensin-converting enzyme 2. Virology 2008 Nov;381(2):215-21
Glende J et al
2008/01/01
Application: Western Blot, Sample Type: Cell Lysates PubMed
28 Jia HP et al. Ectodomain shedding of angiotensin converting enzyme 2 in human airway epithelia. Am. J. Physiol. Lung Cell Mol. Physiol. 2009 Jul;297(1):L84-96
Jia HP et al
2009/01/01
Application: Western Blot, Sample Type: BALF,Cell Lysates PubMed
29 Treml B et al. Recombinant angiotensin-converting enzyme 2 improves pulmonary blood flow and oxygenation in lipopolysaccharide-induced lung injury in piglets. Crit. Care Med. 2010 Feb;38(2):596-601
Treml B et al
2010/01/01
Application: ELISA Development,Western Blot, Sample Type: Buffer - see notes PubMed
30 Pohl M et al. Intrarenal renin angiotensin system revisited: role of megalin-dependent endocytosis along the proximal nephron. J. Biol. Chem. 2010 Dec;285(53):41935-46
Pohl M et al
2010/01/01
Application: IHC Frozen,Western Blot, Sample Type: Homogenized Tissue - Protocol Included,Whole Tissue PubMed
31 Bertram S et al. Influenza and SARS-coronavirus activating proteases TMPRSS2 and HAT are expressed at multiple sites in human respiratory and gastrointestinal tracts. PLoS ONE 2012;7(4):e35876
Bertram S et al
2012/01/01
Application: IHC Paraffin-embedded, Sample Type: Whole Tissue PubMed
32 Ge XY et al. Isolation and characterization of a bat SARS-like coronavirus that uses the ACE2 receptor. Nature 2013 Nov;503(7477):535-8
Ge XY et al
2013/01/01
Application: Immunofluorescence, Sample Type: whole cells PubMed
33 Heurich A et al. TMPRSS2 and ADAM17 cleave ACE2 differentially and only proteolysis by TMPRSS2 augments entry driven by the severe acute respiratory syndrome coronavirus spike protein. J. Virol. 2014 Jan;88(2):1293-307
Heurich A et al
2014/01/01
Application: Flow Cytometry, Sample Type: whole cells PubMed
34 Eckerle I et al. In-vitro renal epithelial cell infection reveals a viral kidney tropism as a potential mechanism for acute renal failure during Middle East Respiratory Syndrome (MERS) Coronavirus infection. Virol. J. 2013;10:359
Eckerle I et al
2013/01/01
Application: Immunofluorescence, Sample Type: Whole Tissue PubMed
35 Xiao F et al. Characterization of angiotensin-converting enzyme 2 ectodomain shedding from mouse proximal tubular cells. PLoS ONE 2014;9(1):e85958
Xiao F et al
2014/01/01
Application: Bioassay, Sample Type: Lysates PubMed
36 Yu YT et al. Surface vimentin is critical for the cell entry of SARS-CoV. J. Biomed. Sci. 2016;23:14
Yu YT et al
2016/01/01
Application: Neutralization, Sample Type: Whole Cells PubMed
37 Milewska A et al. HTCC: Broad Range Inhibitor of Coronavirus Entry. PLoS ONE 2016;11(6):e0156552
Milewska A et al
2016/01/01
Application: IHC Not Specified, Sample Type: Whole Cells PubMed
38 Schrom E et al. Translation of Angiotensin-Converting Enzyme 2 upon Liver- and Lung-Targeted Delivery of Optimized Chemically Modified mRNA. Mol Ther Nucleic Acids 2017 Jun;7:350-365
Schrom E et al
2017/01/01
Species: Human, Applications: WB PubMed
39 Xiao F et al. Protein Kinase C-&#x3B4; Mediates Shedding of Angiotensin-Converting Enzyme 2 from Proximal Tubular Cells. Front Pharmacol 2016;7:146
Xiao F et al
2016/01/01
PubMed
40 Hoffmann M et al. SARS-CoV-2 Cell Entry Depends on ACE2 and TMPRSS2 and Is Blocked by a Clinically Proven Protease Inhibitor. Cell 2020 04;181(2):271-280.e8
Hoffmann M et al
2020/01/01
PubMed
41 Crawford KHD et al. Protocol and Reagents for Pseudotyping Lentiviral Particles with SARS-CoV-2 Spike Protein for Neutralization Assays. Viruses 2020 05;12(5)
Crawford KHD et al
2020/01/01
PubMed
42 Tian D et al. Protective effects of the Francisella tularensis &#x394;pdpC mutant against its virulent parental strain SCHU P9 in Cynomolgus macaques. Sci Rep 2019 06;9(1):9193
Tian D et al
2019/01/01
PubMed
43 Ou X et al. Characterization of spike glycoprotein of SARS-CoV-2 on virus entry and its immune cross-reactivity with SARS-CoV. Nat Commun 2020 03;11(1):1620
Ou X et al
2020/01/01
PubMed
44 Song E et al. Neuroinvasion of SARS-CoV-2 in human and mouse brain. bioRxiv 2020 Sep;
Song E et al
2020/01/01
Species: Human, Applications: Neutralization PubMed
45 Lee IT et al. ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs. Nat Commun 2020 10;11(1):5453
Lee IT et al
2020/01/01
Species: Human, Applications: IHC PubMed
46 Pr辿vost J et al. Cross-sectional evaluation of humoral responses against SARS-CoV-2 Spike. bioRxiv 2020 Jul;
Pr辿vost J et al
2020/01/01
Species: Human, Applications: ICC PubMed
47 Puray-Chavez M et al. Systematic analysis of SARS-CoV-2 infection of an ACE2-negative human airway cell. Cell Rep 2021 07;36(2):109364
Puray-Chavez M et al
2021/01/01
Species: Human, Applications: Western Blot PubMed
48 Sajuthi SP et al. Type 2 and interferon inflammation regulate SARS-CoV-2 entry factor expression in the airway epithelium. Nat Commun 2020 10;11(1):5139
Sajuthi SP et al
2020/01/01
Species: Human, Applications: IHC PubMed
49 Duan F et al. Modeling COVID-19 with Human Pluripotent Stem Cell-Derived Cells Reveals Synergistic Effects of Anti-inflammatory Macrophages with ACE2 Inhibition Against SARS-CoV-2. Res Sq 2020 Aug;
Duan F et al
2020/01/01
Species: Mouse, Applications: IHC PubMed
50 Huang J et al. SARS-CoV-2 Infection of Pluripotent Stem Cell-Derived Human Lung Alveolar Type 2 Cells Elicits a Rapid Epithelial-Intrinsic Inflammatory Response. Cell Stem Cell 2020 12;27(6):962-973.e7
Huang J et al
2020/01/01
Species: Human, Applications: Flow Cytometry PubMed
51 Samuel RM et al. Androgen Signaling Regulates SARS-CoV-2 Receptor Levels and Is Associated with Severe COVID-19 Symptoms in Men. Cell Stem Cell 2020 12;27(6):876-889.e12
Samuel RM et al
2020/01/01
Species: Human, Applications: ICC PubMed
52 Huang J et al. SARS-CoV-2 Infection of Pluripotent Stem Cell-derived Human Lung Alveolar Type 2 Cells Elicits a Rapid Epithelial-Intrinsic Inflammatory Response. bioRxiv 2020 Aug;
Huang J et al
2020/01/01
Species: Human, Applications: Flow Cytometry PubMed
53 Azad T et al. Implications for SARS-CoV-2 Vaccine Design: Fusion of Spike Glycoprotein Transmembrane Domain to Receptor-Binding Domain Induces Trimerization. Membranes (Basel) 2020 Aug;10(9)
Azad T et al
2020/01/01
Species: Human, Applications: Western Blot PubMed
54 Casciola-Rosen L et al. IgM autoantibodies recognizing ACE2 are associated with severe COVID-19. medRxiv 2020 Oct;
Casciola-Rosen L et al
2020/01/01
Species: Human, Applications: Western Blot PubMed
55 Baggen J et al. Genome-wide CRISPR screening identifies TMEM106B as a proviral host factor for SARS-CoV-2. Nat Genet 2021 04;53(4):435-444
Baggen J et al
2021/01/01
Species: Human, Applications: Western Blot PubMed
56 Dittmar M et al. Drug repurposing screens reveal cell-type-specific entry pathways and FDA-approved drugs active against SARS-Cov-2. Cell Rep 2021 04;35(1):108959
Dittmar M et al
2021/01/01
Species: Human, Applications: Western Blot PubMed
57 Onodi F et al. SARS-CoV-2 induces human plasmacytoid pre-dendritic cell diversification via UNC93B and IRAK4. bioRxiv 2021 Jan;
Onodi F et al
2021/01/01
Species: Human, Applications: Flow Cytometry PubMed
58 Huerga Encabo H et al. Human Erythroid Progenitors Are Directly Infected by SARS-CoV-2: Implications for Emerging Erythropoiesis in Severe COVID-19 Patients. Stem Cell Reports 2021 03;16(3):428-436
Huerga Encabo H et al
2021/01/01
Species: Human, Applications: Flow Cytometry PubMed
59 Wang R et al. Functional genomic screens identify human host factors for SARS-CoV-2 and common cold coronaviruses. bioRxiv 2020 Sep;
Wang R et al
2020/01/01
Species: Human, Applications: Western Blot, ` PubMed
60 Xie X et al. A nanoluciferase SARS-CoV-2 for rapid neutralization testing and screening of anti-infective drugs for COVID-19. Nat Commun 2020 10;11(1):5214
Xie X et al
2020/01/01
Species: Primate, Applications: ICC PubMed
61 Zhao M et al. Rapid, reliable, and reproducible cell fusion assay to quantify SARS-Cov-2 spike interaction with hACE2. PLoS Pathog 2021 06;17(6):e1009683
Zhao M et al
2021/01/01
Species: Human, Applications: Western Blot PubMed
62 Khoury EE et al. Pulmonary, cardiac and renal distribution of ACE2, furin, TMPRSS2 and ADAM17 in rats with heart failure: Potential implication for COVID-19 disease. J Cell Mol Med 2021 04;25(8):3840-3855
Khoury EE et al
2021/01/01
Species: Rat PubMed
63 Tandon R et al. Effective screening of SARS-CoV-2 neutralizing antibodies in patient serum using lentivirus particles pseudotyped with SARS-CoV-2 spike glycoprotein. Sci Rep 2020 11;10(1):19076
Tandon R et al
2020/01/01
Species: Human, Applications: Western Blot PubMed
64 Uemura K et al. MRC5 cells engineered to express ACE2 serve as a model system for the discovery of antivirals targeting SARS-CoV-2. Sci Rep 2021 03;11(1):5376
Uemura K et al
2021/01/01
Species: Human, Applications: Flow Cytometry PubMed
65 Almeida-da-Silva CLC et al. Cigarette Smoke Stimulates SARS-CoV-2 Internalization by Activating AhR and Increasing ACE2 Expression in Human Gingival Epithelial Cells. Int J Mol Sci 2021 Jul;22(14)
Almeida-da-Silva CLC et al
2021/01/01
Species: Human, Applications: Western Blot PubMed
66 Zhang Y et al. SARS-CoV-2 hijacks folate and one-carbon metabolism for viral replication. Nat Commun 2021 03;12(1):1676
Zhang Y et al
2021/01/01
Species: Human, Applications: Flow Cytometry PubMed
67 Zhou J et al. Infection of bat and human intestinal organoids by SARS-CoV-2. Nat Med 2020 07;26(7):1077-1083
Zhou J et al
2020/01/01
Species: Bat, Applications: ICC PubMed
68 Sugimoto S et al. An organoid-based organ-repurposing approach to treat short bowel syndrome. Nature 2021 04;592(7852):99-104
Sugimoto S et al
2021/01/01
Species: Rat, Applications: IHC PubMed
69 Pellegrini L et al. SARS-CoV-2 Infects the Brain Choroid Plexus and Disrupts the Blood-CSF Barrier in Human Brain Organoids. Cell Stem Cell 2020 12;27(6):951-961.e5
Pellegrini L et al
2020/01/01
Species: Human, Applications: Western Blot PubMed
70 Rathnasinghe R et al. Comparison of Transgenic and Adenovirus hACE2 Mouse Models for SARS-CoV-2 Infection. bioRxiv 2020 Jul;
Rathnasinghe R et al
2020/01/01
Species: Human, Applications: Flow Cytometry PubMed
71 Rut W et al. SARS-CoV-2 M<sup>pro</sup> inhibitors and activity-based probes for patient-sample imaging. Nat Chem Biol 2021 02;17(2):222-228
Rut W et al
2021/01/01
Species: Human, Applications: ICC PubMed
72 Busnadiego I et al. Antiviral Activity of Type I, II, and III Interferons Counterbalances ACE2 Inducibility and Restricts SARS-CoV-2. mBio 2020 09;11(5)
Busnadiego I et al
2020/01/01
Species: Human, Applications: Flow Cytometry PubMed
73 Baratchian M et al. Sex, androgens and regulation of pulmonary AR, TMPRSS2 and ACE2. bioRxiv 2020 Oct;
Baratchian M et al
2020/01/01
Species: Mouse, Applications: IHC PubMed
74 Wang X et al. Deletion of ER-retention motif on SARS-CoV-2 spike protein reduces cell hybrid during cell-cell fusion. Cell Biosci 2021 Jun;11(1):114
Wang X et al
2021/01/01
Species: Human, Applications: Flow Cytometry PubMed
75 Yang M et al. Liraglutide Attenuates Non-Alcoholic Fatty Liver Disease in Mice by Regulating the Local Renin-Angiotensin System. Front Pharmacol 2020;11:432
Yang M et al
2020/01/01
Species: Human, Applications: Western Blot PubMed
76 Osan JK et al. Goblet Cell Hyperplasia Increases SARS-CoV-2 Infection in COPD. bioRxiv 2020 Nov;
Osan JK et al
2020/01/01
Species: Human, Applications: Western Blot PubMed
77 Eriksen AZ et al. SARS-CoV-2 infects human adult donor eyes and hESC-derived ocular epithelium. Cell Stem Cell 2021 07;28(7):1205-1220.e7
Eriksen AZ et al
2021/01/01
Species: Human, Applications: IHC PubMed
  • No.: 1
  • 文献情報:
    Li W et al. Angiotensin-converting enzyme 2 is a functional receptor for the SARS coronavirus. Nature 2003 Nov;426(6965):450-4
    Li W et al
    2003/01/01
  • 備考:
    Species: Human, Application: Neutralization, Sample type: Whole Cells
  • 参照:
    PubMed
  • No.: 2
  • 文献情報:
    Wang P et al. Expression cloning of functional receptor used by SARS coronavirus. Biochem. Biophys. Res. Commun. 2004 Mar;315(2):439-44
    Wang P et al
    2004/01/01
  • 備考:
    Application: Neutralization, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 3
  • 文献情報:
    Sui J et al. Potent neutralization of severe acute respiratory syndrome (SARS) coronavirus by a human mAb to S1 protein that blocks receptor association. Proc. Natl. Acad. Sci. U.S.A. 2004 Feb;101(8):2536-41
    Sui J et al
    2004/01/01
  • 備考:
    Application: Immunoprecipitation
  • 参照:
    PubMed
  • No.: 4
  • 文献情報:
    Hofmann H et al. Susceptibility to SARS coronavirus S protein-driven infection correlates with expression of angiotensin converting enzyme 2 and infection can be blocked by soluble receptor. Biochem. Biophys. Res. Commun. 2004 Jul;319(4):1216-21
    Hofmann H et al
    2004/01/01
  • 備考:
    Application: Flow Cytometry, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 5
  • 文献情報:
    Xiao X et al. Oligomerization of the SARS-CoV S glycoprotein: dimerization of the N-terminus and trimerization of the ectodomain. Biochem. Biophys. Res. Commun. 2004 Sep;322(1):93-9
    Xiao X et al
    2004/01/01
  • 備考:
    Application: Western Blot, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 6
  • 文献情報:
    Nie Y et al. Highly infectious SARS-CoV pseudotyped virus reveals the cell tropism and its correlation with receptor expression. Biochem. Biophys. Res. Commun. 2004 Sep;321(4):994-1000
    Nie Y et al
    2004/01/01
  • 備考:
    Application: Flow Cytometry, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 7
  • 文献情報:
    Moore MJ et al. Retroviruses pseudotyped with the severe acute respiratory syndrome coronavirus spike protein efficiently infect cells expressing angiotensin-converting enzyme 2. J. Virol. 2004 Oct;78(19):10628-35
    Moore MJ et al
    2004/01/01
  • 備考:
    Application: Flow Cytometry, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 8
  • 文献情報:
    Kuba K et al. A crucial role of angiotensin converting enzyme 2 (ACE2) in SARS coronavirus-induced lung injury. Nat. Med. 2005 Aug;11(8):875-9
    Kuba K et al
    2005/01/01
  • 備考:
    Species: Human, Application: Flow Cytometry, Immunoprecipitation, Sample type: Whole Cells, Cell Lysates
  • 参照:
    PubMed
  • No.: 9
  • 文献情報:
    Tseng CT et al. Apical entry and release of severe acute respiratory syndrome-associated coronavirus in polarized Calu-3 lung epithelial cells. J. Virol. 2005 Aug;79(15):9470-9
    Tseng CT et al
    2005/01/01
  • 備考:
    Application: IHC Fresh,Neutralization, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 10
  • 文献情報:
    de Lang A et al. Interferon-gamma and interleukin-4 downregulate expression of the SARS coronavirus receptor ACE2 in Vero E6 cells. Virology 2006 Sep;353(2):474-81
    de Lang A et al
    2006/01/01
  • 備考:
    Species: Primate - Cholrocebus pygerythrus (vervet or African green monkey), Application: IHC Unspecified, Whole Cells
  • 参照:
    PubMed
  • No.: 11
  • 文献情報:
    Zhao J et al. A study on antigenicity and receptor-binding ability of fragment 450-650 of the spike protein of SARS coronavirus. Virology 2007 Mar;359(2):362-70
    Zhao J et al
    2007/01/01
  • 備考:
    Application: Western Blot, Sample Type: Cell Lysates
  • 参照:
    PubMed
  • No.: 12
  • 文献情報:
    Tseng CT et al. Severe acute respiratory syndrome coronavirus infection of mice transgenic for the human Angiotensin-converting enzyme 2 virus receptor. J. Virol. 2007 Feb;81(3):1162-73
    Tseng CT et al
    2007/01/01
  • 備考:
    Application: Western Blot, Sample Type: Cell Lysates
  • 参照:
    PubMed
  • No.: 13
  • 文献情報:
    Wiener RS et al. Angiotensin converting enzyme 2 is primarily epithelial and is developmentally regulated in the mouse lung. J. Cell. Biochem. 2007 Aug;101(5):1278-91
    Wiener RS et al
    2007/01/01
  • 備考:
    Species: Mouse, Application: Western Blot, Sample type: Cell Supernates
  • 参照:
    PubMed
  • No.: 14
  • 文献情報:
    Rockx B et al. Synthetic reconstruction of zoonotic and early human severe acute respiratory syndrome coronavirus isolates that produce fatal disease in aged mice. J. Virol. 2007 Jul;81(14):7410-23
    Rockx B et al
    2007/01/01
  • 備考:
    Species: Primate - Cholrocebus pygerythrus (vervet or African green monkey), Application: Neutralization, Sample type: Whole Cells
  • 参照:
    PubMed
  • No.: 15
  • 文献情報:
    Inoue Y et al. Clathrin-dependent entry of severe acute respiratory syndrome coronavirus into target cells expressing ACE2 with the cytoplasmic tail deleted. J. Virol. 2007 Aug;81(16):8722-9
    Inoue Y et al
    2007/01/01
  • 備考:
    Species: Primate - Macaca mulatta (Rhesus monkey), Application: Western Blot, Sample type: Cell Lysates
  • 参照:
    PubMed
  • No.: 16
  • 文献情報:
    Senanayake P et al. Angiotensin II and its receptor subtypes in the human retina. Invest. Ophthalmol. Vis. Sci. 2007 Jul;48(7):3301-11
    Senanayake P et al
    2007/01/01
  • 備考:
    Species: Human, Application: Western Blot, Sample type: Homogenized Tissue
  • 参照:
    PubMed
  • No.: 17
  • 文献情報:
    Li W et al. The S proteins of human coronavirus NL63 and severe acute respiratory syndrome coronavirus bind overlapping regions of ACE2. Virology 2007 Oct;367(2):367-74
    Li W et al
    2007/01/01
  • 備考:
    Species: Human, Application: Neutralization, Sample type: Whole Cells
  • 参照:
    PubMed
  • No.: 18
  • 文献情報:
    Lambert DW et al. Calmodulin interacts with angiotensin-converting enzyme-2 (ACE2) and inhibits shedding of its ectodomain. FEBS Lett. 2008 Jan;582(2):385-90
    Lambert DW et al
    2008/01/01
  • 備考:
    Species: Human, Application: Western Blot, Cell Lysates
  • 参照:
    PubMed
  • No.: 19
  • 文献情報:
    Ren W et al. Difference in receptor usage between severe acute respiratory syndrome (SARS) coronavirus and SARS-like coronavirus of bat origin. J. Virol. 2008 Feb;82(4):1899-907
    Ren W et al
    2008/01/01
  • 備考:
    Species: Human, Application: IHC Fresh, Western Blot, Sample type: Whole Cells, Cell Lysates
  • 参照:
    PubMed
  • No.: 20
  • 文献情報:
    Howard MW et al. Aromatic amino acids in the juxtamembrane domain of severe acute respiratory syndrome coronavirus spike glycoprotein are important for receptor-dependent virus entry and cell-cell fusion. J. Virol. 2008 Mar;82(6):2883-94
    Howard MW et al
    2008/01/01
  • 備考:
    Species: Human, Application: Flow Cytometry, Whole Cells
  • 参照:
    PubMed
  • No.: 21
  • 文献情報:
    Lu Y et al. Lipid rafts are involved in SARS-CoV entry into Vero E6 cells. Biochem. Biophys. Res. Commun. 2008 May;369(2):344-9
    Lu Y et al
    2008/01/01
  • 備考:
    Species: Primate - Cholrocebus pygerythrus (vervet or African green monkey), Application: Flow Cytometry, Whole Cells
  • 参照:
    PubMed
  • No.: 22
  • 文献情報:
    Pacciarini F et al. Persistent replication of severe acute respiratory syndrome coronavirus in human tubular kidney cells selects for adaptive mutations in the membrane protein. J. Virol. 2008 Jun;82(11):5137-44
    Pacciarini F et al
    2008/01/01
  • 備考:
    Species: Human, Application: Flow Cytometry, Whole Cells
  • 参照:
    PubMed
  • No.: 23
  • 文献情報:
    Koka V et al. Angiotensin II up-regulates angiotensin I-converting enzyme (ACE), but down-regulates ACE2 via the AT1-ERK/p38 MAP kinase pathway. Am. J. Pathol. 2008 May;172(5):1174-83
    Koka V et al
    2008/01/01
  • 備考:
    Species: Human, Application: IHC Paraffin-embedded, Western Blot, Whole Tissue, Cell Lysates
  • 参照:
    PubMed
  • No.: 24
  • 文献情報:
    Havenga MJ et al. Serum-free transient protein production system based on adenoviral vector and PER.C6 technology: high yield and preserved bioactivity. Biotechnol. Bioeng. 2008 Jun;100(2):273-83
    Havenga MJ et al
    2008/01/01
  • 備考:
    Species: Human, Application: Flow Cytometry, Whole Cells
  • 参照:
    PubMed
  • No.: 25
  • 文献情報:
    Sheahan T et al. Pathways of cross-species transmission of synthetically reconstructed zoonotic severe acute respiratory syndrome coronavirus. J. Virol. 2008 Sep;82(17):8721-32
    Sheahan T et al
    2008/01/01
  • 備考:
    Species: Human, Application: Flow Cytometry, Whole Cells
  • 参照:
    PubMed
  • No.: 26
  • 文献情報:
    Epelman S et al. Detection of soluble angiotensin-converting enzyme 2 in heart failure: insights into the endogenous counter-regulatory pathway of the renin-angiotensin-aldosterone system. J. Am. Coll. Cardiol. 2008 Aug;52(9):750-4
    Epelman S et al
    2008/01/01
  • 備考:
    Species: Human, Application: Neutralization, Plasma (Not Specified)
  • 参照:
    PubMed
  • No.: 27
  • 文献情報:
    Glende J et al. Importance of cholesterol-rich membrane microdomains in the interaction of the S protein of SARS-coronavirus with the cellular receptor angiotensin-converting enzyme 2. Virology 2008 Nov;381(2):215-21
    Glende J et al
    2008/01/01
  • 備考:
    Application: Western Blot, Sample Type: Cell Lysates
  • 参照:
    PubMed
  • No.: 28
  • 文献情報:
    Jia HP et al. Ectodomain shedding of angiotensin converting enzyme 2 in human airway epithelia. Am. J. Physiol. Lung Cell Mol. Physiol. 2009 Jul;297(1):L84-96
    Jia HP et al
    2009/01/01
  • 備考:
    Application: Western Blot, Sample Type: BALF,Cell Lysates
  • 参照:
    PubMed
  • No.: 29
  • 文献情報:
    Treml B et al. Recombinant angiotensin-converting enzyme 2 improves pulmonary blood flow and oxygenation in lipopolysaccharide-induced lung injury in piglets. Crit. Care Med. 2010 Feb;38(2):596-601
    Treml B et al
    2010/01/01
  • 備考:
    Application: ELISA Development,Western Blot, Sample Type: Buffer - see notes
  • 参照:
    PubMed
  • No.: 30
  • 文献情報:
    Pohl M et al. Intrarenal renin angiotensin system revisited: role of megalin-dependent endocytosis along the proximal nephron. J. Biol. Chem. 2010 Dec;285(53):41935-46
    Pohl M et al
    2010/01/01
  • 備考:
    Application: IHC Frozen,Western Blot, Sample Type: Homogenized Tissue - Protocol Included,Whole Tissue
  • 参照:
    PubMed
  • No.: 31
  • 文献情報:
    Bertram S et al. Influenza and SARS-coronavirus activating proteases TMPRSS2 and HAT are expressed at multiple sites in human respiratory and gastrointestinal tracts. PLoS ONE 2012;7(4):e35876
    Bertram S et al
    2012/01/01
  • 備考:
    Application: IHC Paraffin-embedded, Sample Type: Whole Tissue
  • 参照:
    PubMed
  • No.: 32
  • 文献情報:
    Ge XY et al. Isolation and characterization of a bat SARS-like coronavirus that uses the ACE2 receptor. Nature 2013 Nov;503(7477):535-8
    Ge XY et al
    2013/01/01
  • 備考:
    Application: Immunofluorescence, Sample Type: whole cells
  • 参照:
    PubMed
  • No.: 33
  • 文献情報:
    Heurich A et al. TMPRSS2 and ADAM17 cleave ACE2 differentially and only proteolysis by TMPRSS2 augments entry driven by the severe acute respiratory syndrome coronavirus spike protein. J. Virol. 2014 Jan;88(2):1293-307
    Heurich A et al
    2014/01/01
  • 備考:
    Application: Flow Cytometry, Sample Type: whole cells
  • 参照:
    PubMed
  • No.: 34
  • 文献情報:
    Eckerle I et al. In-vitro renal epithelial cell infection reveals a viral kidney tropism as a potential mechanism for acute renal failure during Middle East Respiratory Syndrome (MERS) Coronavirus infection. Virol. J. 2013;10:359
    Eckerle I et al
    2013/01/01
  • 備考:
    Application: Immunofluorescence, Sample Type: Whole Tissue
  • 参照:
    PubMed
  • No.: 35
  • 文献情報:
    Xiao F et al. Characterization of angiotensin-converting enzyme 2 ectodomain shedding from mouse proximal tubular cells. PLoS ONE 2014;9(1):e85958
    Xiao F et al
    2014/01/01
  • 備考:
    Application: Bioassay, Sample Type: Lysates
  • 参照:
    PubMed
  • No.: 36
  • 文献情報:
    Yu YT et al. Surface vimentin is critical for the cell entry of SARS-CoV. J. Biomed. Sci. 2016;23:14
    Yu YT et al
    2016/01/01
  • 備考:
    Application: Neutralization, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 37
  • 文献情報:
    Milewska A et al. HTCC: Broad Range Inhibitor of Coronavirus Entry. PLoS ONE 2016;11(6):e0156552
    Milewska A et al
    2016/01/01
  • 備考:
    Application: IHC Not Specified, Sample Type: Whole Cells
  • 参照:
    PubMed
  • No.: 38
  • 文献情報:
    Schrom E et al. Translation of Angiotensin-Converting Enzyme 2 upon Liver- and Lung-Targeted Delivery of Optimized Chemically Modified mRNA. Mol Ther Nucleic Acids 2017 Jun;7:350-365
    Schrom E et al
    2017/01/01
  • 備考:
    Species: Human, Applications: WB
  • 参照:
    PubMed
  • No.: 39
  • 文献情報:
    Xiao F et al. Protein Kinase C-&#x3B4; Mediates Shedding of Angiotensin-Converting Enzyme 2 from Proximal Tubular Cells. Front Pharmacol 2016;7:146
    Xiao F et al
    2016/01/01
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  • 参照:
    PubMed
  • No.: 40
  • 文献情報:
    Hoffmann M et al. SARS-CoV-2 Cell Entry Depends on ACE2 and TMPRSS2 and Is Blocked by a Clinically Proven Protease Inhibitor. Cell 2020 04;181(2):271-280.e8
    Hoffmann M et al
    2020/01/01
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  • 参照:
    PubMed
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    Crawford KHD et al. Protocol and Reagents for Pseudotyping Lentiviral Particles with SARS-CoV-2 Spike Protein for Neutralization Assays. Viruses 2020 05;12(5)
    Crawford KHD et al
    2020/01/01
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  • 参照:
    PubMed
  • No.: 42
  • 文献情報:
    Tian D et al. Protective effects of the Francisella tularensis &#x394;pdpC mutant against its virulent parental strain SCHU P9 in Cynomolgus macaques. Sci Rep 2019 06;9(1):9193
    Tian D et al
    2019/01/01
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  • 参照:
    PubMed
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  • 文献情報:
    Ou X et al. Characterization of spike glycoprotein of SARS-CoV-2 on virus entry and its immune cross-reactivity with SARS-CoV. Nat Commun 2020 03;11(1):1620
    Ou X et al
    2020/01/01
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  • 参照:
    PubMed
  • No.: 44
  • 文献情報:
    Song E et al. Neuroinvasion of SARS-CoV-2 in human and mouse brain. bioRxiv 2020 Sep;
    Song E et al
    2020/01/01
  • 備考:
    Species: Human, Applications: Neutralization
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    PubMed
  • No.: 45
  • 文献情報:
    Lee IT et al. ACE2 localizes to the respiratory cilia and is not increased by ACE inhibitors or ARBs. Nat Commun 2020 10;11(1):5453
    Lee IT et al
    2020/01/01
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    Species: Human, Applications: IHC
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    PubMed
  • No.: 46
  • 文献情報:
    Pr辿vost J et al. Cross-sectional evaluation of humoral responses against SARS-CoV-2 Spike. bioRxiv 2020 Jul;
    Pr辿vost J et al
    2020/01/01
  • 備考:
    Species: Human, Applications: ICC
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    PubMed
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  • 文献情報:
    Puray-Chavez M et al. Systematic analysis of SARS-CoV-2 infection of an ACE2-negative human airway cell. Cell Rep 2021 07;36(2):109364
    Puray-Chavez M et al
    2021/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
  • No.: 48
  • 文献情報:
    Sajuthi SP et al. Type 2 and interferon inflammation regulate SARS-CoV-2 entry factor expression in the airway epithelium. Nat Commun 2020 10;11(1):5139
    Sajuthi SP et al
    2020/01/01
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    Species: Human, Applications: IHC
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    PubMed
  • No.: 49
  • 文献情報:
    Duan F et al. Modeling COVID-19 with Human Pluripotent Stem Cell-Derived Cells Reveals Synergistic Effects of Anti-inflammatory Macrophages with ACE2 Inhibition Against SARS-CoV-2. Res Sq 2020 Aug;
    Duan F et al
    2020/01/01
  • 備考:
    Species: Mouse, Applications: IHC
  • 参照:
    PubMed
  • No.: 50
  • 文献情報:
    Huang J et al. SARS-CoV-2 Infection of Pluripotent Stem Cell-Derived Human Lung Alveolar Type 2 Cells Elicits a Rapid Epithelial-Intrinsic Inflammatory Response. Cell Stem Cell 2020 12;27(6):962-973.e7
    Huang J et al
    2020/01/01
  • 備考:
    Species: Human, Applications: Flow Cytometry
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    PubMed
  • No.: 51
  • 文献情報:
    Samuel RM et al. Androgen Signaling Regulates SARS-CoV-2 Receptor Levels and Is Associated with Severe COVID-19 Symptoms in Men. Cell Stem Cell 2020 12;27(6):876-889.e12
    Samuel RM et al
    2020/01/01
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    Species: Human, Applications: ICC
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    PubMed
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  • 文献情報:
    Huang J et al. SARS-CoV-2 Infection of Pluripotent Stem Cell-derived Human Lung Alveolar Type 2 Cells Elicits a Rapid Epithelial-Intrinsic Inflammatory Response. bioRxiv 2020 Aug;
    Huang J et al
    2020/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
  • No.: 53
  • 文献情報:
    Azad T et al. Implications for SARS-CoV-2 Vaccine Design: Fusion of Spike Glycoprotein Transmembrane Domain to Receptor-Binding Domain Induces Trimerization. Membranes (Basel) 2020 Aug;10(9)
    Azad T et al
    2020/01/01
  • 備考:
    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Casciola-Rosen L et al. IgM autoantibodies recognizing ACE2 are associated with severe COVID-19. medRxiv 2020 Oct;
    Casciola-Rosen L et al
    2020/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Baggen J et al. Genome-wide CRISPR screening identifies TMEM106B as a proviral host factor for SARS-CoV-2. Nat Genet 2021 04;53(4):435-444
    Baggen J et al
    2021/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Dittmar M et al. Drug repurposing screens reveal cell-type-specific entry pathways and FDA-approved drugs active against SARS-Cov-2. Cell Rep 2021 04;35(1):108959
    Dittmar M et al
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Onodi F et al. SARS-CoV-2 induces human plasmacytoid pre-dendritic cell diversification via UNC93B and IRAK4. bioRxiv 2021 Jan;
    Onodi F et al
    2021/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
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  • 文献情報:
    Huerga Encabo H et al. Human Erythroid Progenitors Are Directly Infected by SARS-CoV-2: Implications for Emerging Erythropoiesis in Severe COVID-19 Patients. Stem Cell Reports 2021 03;16(3):428-436
    Huerga Encabo H et al
    2021/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
  • No.: 59
  • 文献情報:
    Wang R et al. Functional genomic screens identify human host factors for SARS-CoV-2 and common cold coronaviruses. bioRxiv 2020 Sep;
    Wang R et al
    2020/01/01
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    Species: Human, Applications: Western Blot, `
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    PubMed
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  • 文献情報:
    Xie X et al. A nanoluciferase SARS-CoV-2 for rapid neutralization testing and screening of anti-infective drugs for COVID-19. Nat Commun 2020 10;11(1):5214
    Xie X et al
    2020/01/01
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    Species: Primate, Applications: ICC
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    PubMed
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  • 文献情報:
    Zhao M et al. Rapid, reliable, and reproducible cell fusion assay to quantify SARS-Cov-2 spike interaction with hACE2. PLoS Pathog 2021 06;17(6):e1009683
    Zhao M et al
    2021/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Khoury EE et al. Pulmonary, cardiac and renal distribution of ACE2, furin, TMPRSS2 and ADAM17 in rats with heart failure: Potential implication for COVID-19 disease. J Cell Mol Med 2021 04;25(8):3840-3855
    Khoury EE et al
    2021/01/01
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    Species: Rat
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    PubMed
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  • 文献情報:
    Tandon R et al. Effective screening of SARS-CoV-2 neutralizing antibodies in patient serum using lentivirus particles pseudotyped with SARS-CoV-2 spike glycoprotein. Sci Rep 2020 11;10(1):19076
    Tandon R et al
    2020/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Uemura K et al. MRC5 cells engineered to express ACE2 serve as a model system for the discovery of antivirals targeting SARS-CoV-2. Sci Rep 2021 03;11(1):5376
    Uemura K et al
    2021/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
  • No.: 65
  • 文献情報:
    Almeida-da-Silva CLC et al. Cigarette Smoke Stimulates SARS-CoV-2 Internalization by Activating AhR and Increasing ACE2 Expression in Human Gingival Epithelial Cells. Int J Mol Sci 2021 Jul;22(14)
    Almeida-da-Silva CLC et al
    2021/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
  • No.: 66
  • 文献情報:
    Zhang Y et al. SARS-CoV-2 hijacks folate and one-carbon metabolism for viral replication. Nat Commun 2021 03;12(1):1676
    Zhang Y et al
    2021/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
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  • 文献情報:
    Zhou J et al. Infection of bat and human intestinal organoids by SARS-CoV-2. Nat Med 2020 07;26(7):1077-1083
    Zhou J et al
    2020/01/01
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    Species: Bat, Applications: ICC
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    PubMed
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  • 文献情報:
    Sugimoto S et al. An organoid-based organ-repurposing approach to treat short bowel syndrome. Nature 2021 04;592(7852):99-104
    Sugimoto S et al
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    Species: Rat, Applications: IHC
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    PubMed
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  • 文献情報:
    Pellegrini L et al. SARS-CoV-2 Infects the Brain Choroid Plexus and Disrupts the Blood-CSF Barrier in Human Brain Organoids. Cell Stem Cell 2020 12;27(6):951-961.e5
    Pellegrini L et al
    2020/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Rathnasinghe R et al. Comparison of Transgenic and Adenovirus hACE2 Mouse Models for SARS-CoV-2 Infection. bioRxiv 2020 Jul;
    Rathnasinghe R et al
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    Species: Human, Applications: Flow Cytometry
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    PubMed
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  • 文献情報:
    Rut W et al. SARS-CoV-2 M<sup>pro</sup> inhibitors and activity-based probes for patient-sample imaging. Nat Chem Biol 2021 02;17(2):222-228
    Rut W et al
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    Species: Human, Applications: ICC
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    PubMed
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  • 文献情報:
    Busnadiego I et al. Antiviral Activity of Type I, II, and III Interferons Counterbalances ACE2 Inducibility and Restricts SARS-CoV-2. mBio 2020 09;11(5)
    Busnadiego I et al
    2020/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
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  • 文献情報:
    Baratchian M et al. Sex, androgens and regulation of pulmonary AR, TMPRSS2 and ACE2. bioRxiv 2020 Oct;
    Baratchian M et al
    2020/01/01
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    Species: Mouse, Applications: IHC
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    PubMed
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  • 文献情報:
    Wang X et al. Deletion of ER-retention motif on SARS-CoV-2 spike protein reduces cell hybrid during cell-cell fusion. Cell Biosci 2021 Jun;11(1):114
    Wang X et al
    2021/01/01
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    Species: Human, Applications: Flow Cytometry
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    PubMed
  • No.: 75
  • 文献情報:
    Yang M et al. Liraglutide Attenuates Non-Alcoholic Fatty Liver Disease in Mice by Regulating the Local Renin-Angiotensin System. Front Pharmacol 2020;11:432
    Yang M et al
    2020/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Osan JK et al. Goblet Cell Hyperplasia Increases SARS-CoV-2 Infection in COPD. bioRxiv 2020 Nov;
    Osan JK et al
    2020/01/01
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    Species: Human, Applications: Western Blot
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    PubMed
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  • 文献情報:
    Eriksen AZ et al. SARS-CoV-2 infects human adult donor eyes and hESC-derived ocular epithelium. Cell Stem Cell 2021 07;28(7):1205-1220.e7
    Eriksen AZ et al
    2021/01/01
  • 備考:
    Species: Human, Applications: IHC
  • 参照:
    PubMed