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在庫・価格 : 2024年04月28日 04時46分 現在

商品名 商品コード メーカー 包装 価格 在庫 リスト
OxiSelect Nε-(carboxymethyl) lysine (CML) Competitive ELISA Kit (96assays)
データシート
STA-816 CBOセルバイオラボ
Cell Biolabs. Inc.
1 kit ¥200,000
(未発注)
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在庫・価格 : 2024年04月28日 04時46分 現在

OxiSelect Nε-(carboxymethyl) lysine (CML) Competitive ELISA Kit (96assays)

  • 商品コード:STA-816
  • メーカー:CBO
  • 包装:1kit
  • 価格: ¥200,000
  • 在庫:無(未発注)
使用文献
No. 文献情報 備考 参照
1 Shin S et al. Anti-glycation activities of methyl gallate in vitro and in human explants. J Cosmet Dermatol 2021 Aug;
Shin S et al
2021/01/01
PubMed
2 Mahmoud AM et al. High Glucose and Advanced Glycation End Products Induce CD147-Mediated MMP Activity in Human Adipocytes. Cells 2021 08;10(8)
Mahmoud AM et al
2021/01/01
PubMed
3 Lazzari TK et al. Leptin and advanced glycation end products receptor (RAGE) in tuberculosis patients. PLoS One 2021;16(7):e0254198
Lazzari TK et al
2021/01/01
PubMed
4 Gold Nanoparticle-Bioconjugated Aminoguanidine Inhibits Glycation Reaction: An In Vivo Study in a Diabetic Animal Model.

PubMed
5 Tocotrienol-rich vitamin E from palm oil (Tocovid) and its effects in diabetes and diabetic retinopathy: a pilot phase II clinical trial.

PubMed
6 Altomare A et al. In-Depth AGE and ALE Profiling of Human Albumin in Heart Failure: Ex Vivo Studies. Antioxidants (Basel) 2021 Feb;10(3)
Altomare A et al
2021/01/01
PubMed
7 Li YY et al. Protective effects of dietary carnosine during in-vitro digestion of pork differing in fat content and cooking conditions. J Food Biochem 2021 02;45(2):e13624
Li YY et al
2021/01/01
PubMed
8 Chen Z et al. Association of carbamylated high-density lipoprotein with coronary artery disease in type 2 diabetes mellitus: carbamylated high-density lipoprotein of patients promotes monocyte adhesion. J Transl Med 2020 12;18(1):460
Chen Z et al
2020/01/01
PubMed
9 Merhi Z et al. Perinatal exposure to high dietary advanced glycation end products affects the reproductive system in female offspring in mice. Mol Hum Reprod 2020 08;26(8):615-623
Merhi Z et al
2020/01/01
PubMed
10 Gutierrez-Mariscal FM et al. Reduction in Circulating Advanced Glycation End Products by Mediterranean Diet Is Associated with Increased Likelihood of Type 2 Diabetes Remission in Patients with Coronary Heart Disease: From the Cordioprev Study. Mol Nutr F
Gutierrez-Mariscal FM et al
2021/01/01
PubMed
11 Thornton K et al. Dietary Advanced Glycation End Products (AGEs) could alter ovarian function in mice. Mol Cell Endocrinol 2020 06;510:110826
Thornton K et al
2020/01/01
PubMed
12 Hern叩ndez C et al. The Usefulness of Serum Biomarkers in the Early Stages of Diabetic Retinopathy: Results of the EUROCONDOR Clinical Trial. J Clin Med 2020 Apr;9(4)
Hern叩ndez C et al
2020/01/01
PubMed
13 Velayoudom-Cephise FL et al. Receptor for advanced glycation end products modulates oxidative stress and mitochondrial function in the soleus muscle of mice fed a high-fat diet. Appl Physiol Nutr Metab 2020 Oct;45(10):1107-1117
Velayoudom-Cephise FL et al
2020/01/01
PubMed
14 Iron and Advanced Glycation End Products: Emerging Role of Iron in Androgen Deficiency in Obesity.

PubMed
15 Role of DJ‐1 in Modulating Glycative Stress in Heart Failure. .

PubMed
16 de la Cruz-Ares S et al. Endothelial Dysfunction and Advanced Glycation End Products in Patients with Newly Diagnosed Versus Established Diabetes: From the CORDIOPREV Study. Nutrients 2020 Jan;12(1)
de la Cruz-Ares S et al
2020/01/01
PubMed
17 Lee J et al. Mitochondrial carnitine palmitoyltransferase 2 is involved in N<sup>&#x3B5;</sup>-(carboxymethyl)-lysine-mediated diabetic nephropathy. Pharmacol Res 2020 02;152:104600
Lee J et al
2020/01/01
PubMed
18 Kaburagi T et al. Low-Carbohydrate Diet Inhibits Different Advanced Glycation End Products in Kidney Depending on Lipid Composition but Causes Adverse Morphological Changes in a Non-Obese Model Mice. Nutrients 2019 Nov;11(11)
Kaburagi T et al
2019/01/01
PubMed
19 Yang J et al. Neutrophil-derived advanced glycation end products-N&#x3B5;-(carboxymethyl) lysine promotes RIP3-mediated myocardial necroptosis via RAGE and exacerbates myocardial ischemia/reperfusion injury. FASEB J 2019 12;33(12):14410-14422
Yang J et al
2019/01/01
PubMed
20 Effect of N(Epsilon)-(carboxymethyl)lysine on Laboratory Parameters and Its Association with 硫S Haplotype in Children with Sickle Cell Anemia.

PubMed
21 Ferron AJT et al. Protective Effect of Tomato-Oleoresin Supplementation on Oxidative Injury Recoveries Cardiac Function by Improving &#x3B2;-Adrenergic Response in a Diet-Obesity Induced Model. Antioxidants (Basel) 2019 Sep;8(9)
Ferron AJT et al
2019/01/01
PubMed
22 da Silva LF et al. Advanced glycation end products (AGE) and receptor for AGE (RAGE) in patients with active tuberculosis, and their relationship between food intake and nutritional status. PLoS ONE 2019;14(3):e0213991
da Silva LF et al
2019/01/01
PubMed
23 Chen Y et al. Dietary Early Glycation Products Promote the Growth of Prostate Tumors More than Advanced Glycation End-Products through Modulation of Macrophage Polarization. Mol Nutr Food Res 2019 02;63(4):e1800885
Chen Y et al
2019/01/01
PubMed
24 Rosa Martha PG et al. Ursane derivatives isolated from leaves of Hylocereus undatus inhibit glycation at multiple stages. Chin J Nat Med 2018 Nov;16(11):856-865
Rosa Martha PG et al
2018/01/01
PubMed
25 Balansin Rigon R et al. Ultrastructural and Molecular Analysis of Ribose-Induced Glycated Reconstructed Human Skin. Int J Mol Sci 2018 Nov;19(11)
Balansin Rigon R et al
2018/01/01
PubMed
26 Tan SMQ et al. Tocotrienol-Rich Vitamin E from Palm Oil (Tocovid) and Its Effects in Diabetes and Diabetic Nephropathy: A Pilot Phase II Clinical Trial. Nutrients 2018 Sep;10(9)
Tan SMQ et al
2018/01/01
PubMed
27 Silver Nanoparticles Synthesized Using Eysenhardtia polystachya and Assessment of the Inhibition of Glycation in Multiple Stages In Vitro and in the Zebrafish Model.

PubMed
28 Cyanidin-3-rutinoside alleviates methylglyoxal-induced cardiovascular abnormalities in the rats.

PubMed
29 Menini S et al. The advanced glycation end-product N<sup>&#x3F5;</sup> -carboxymethyllysine promotes progression of pancreatic cancer: implications for diabetes-associated risk and its prevention. J Pathol 2018 06;245(2):197-208
Menini S et al
2018/01/01
PubMed
30 Hu X et al. Protection by dimethyl fumarate against diabetic cardiomyopathy in type 1 diabetic mice likely via activation of nuclear factor erythroid-2 related factor 2. Toxicol Lett 2018 May;287:131-141
Hu X et al
2018/01/01
PubMed
  • No.: 1
  • 文献情報:
    Shin S et al. Anti-glycation activities of methyl gallate in vitro and in human explants. J Cosmet Dermatol 2021 Aug;
    Shin S et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 2
  • 文献情報:
    Mahmoud AM et al. High Glucose and Advanced Glycation End Products Induce CD147-Mediated MMP Activity in Human Adipocytes. Cells 2021 08;10(8)
    Mahmoud AM et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 3
  • 文献情報:
    Lazzari TK et al. Leptin and advanced glycation end products receptor (RAGE) in tuberculosis patients. PLoS One 2021;16(7):e0254198
    Lazzari TK et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 4
  • 文献情報:
    Gold Nanoparticle-Bioconjugated Aminoguanidine Inhibits Glycation Reaction: An In Vivo Study in a Diabetic Animal Model.

  • 備考:
  • 参照:
    PubMed
  • No.: 5
  • 文献情報:
    Tocotrienol-rich vitamin E from palm oil (Tocovid) and its effects in diabetes and diabetic retinopathy: a pilot phase II clinical trial.

  • 備考:
  • 参照:
    PubMed
  • No.: 6
  • 文献情報:
    Altomare A et al. In-Depth AGE and ALE Profiling of Human Albumin in Heart Failure: Ex Vivo Studies. Antioxidants (Basel) 2021 Feb;10(3)
    Altomare A et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 7
  • 文献情報:
    Li YY et al. Protective effects of dietary carnosine during in-vitro digestion of pork differing in fat content and cooking conditions. J Food Biochem 2021 02;45(2):e13624
    Li YY et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 8
  • 文献情報:
    Chen Z et al. Association of carbamylated high-density lipoprotein with coronary artery disease in type 2 diabetes mellitus: carbamylated high-density lipoprotein of patients promotes monocyte adhesion. J Transl Med 2020 12;18(1):460
    Chen Z et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 9
  • 文献情報:
    Merhi Z et al. Perinatal exposure to high dietary advanced glycation end products affects the reproductive system in female offspring in mice. Mol Hum Reprod 2020 08;26(8):615-623
    Merhi Z et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 10
  • 文献情報:
    Gutierrez-Mariscal FM et al. Reduction in Circulating Advanced Glycation End Products by Mediterranean Diet Is Associated with Increased Likelihood of Type 2 Diabetes Remission in Patients with Coronary Heart Disease: From the Cordioprev Study. Mol Nutr F
    Gutierrez-Mariscal FM et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 11
  • 文献情報:
    Thornton K et al. Dietary Advanced Glycation End Products (AGEs) could alter ovarian function in mice. Mol Cell Endocrinol 2020 06;510:110826
    Thornton K et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 12
  • 文献情報:
    Hern叩ndez C et al. The Usefulness of Serum Biomarkers in the Early Stages of Diabetic Retinopathy: Results of the EUROCONDOR Clinical Trial. J Clin Med 2020 Apr;9(4)
    Hern叩ndez C et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 13
  • 文献情報:
    Velayoudom-Cephise FL et al. Receptor for advanced glycation end products modulates oxidative stress and mitochondrial function in the soleus muscle of mice fed a high-fat diet. Appl Physiol Nutr Metab 2020 Oct;45(10):1107-1117
    Velayoudom-Cephise FL et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 14
  • 文献情報:
    Iron and Advanced Glycation End Products: Emerging Role of Iron in Androgen Deficiency in Obesity.

  • 備考:
  • 参照:
    PubMed
  • No.: 15
  • 文献情報:
    Role of DJ‐1 in Modulating Glycative Stress in Heart Failure. .

  • 備考:
  • 参照:
    PubMed
  • No.: 16
  • 文献情報:
    de la Cruz-Ares S et al. Endothelial Dysfunction and Advanced Glycation End Products in Patients with Newly Diagnosed Versus Established Diabetes: From the CORDIOPREV Study. Nutrients 2020 Jan;12(1)
    de la Cruz-Ares S et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 17
  • 文献情報:
    Lee J et al. Mitochondrial carnitine palmitoyltransferase 2 is involved in N<sup>&#x3B5;</sup>-(carboxymethyl)-lysine-mediated diabetic nephropathy. Pharmacol Res 2020 02;152:104600
    Lee J et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 18
  • 文献情報:
    Kaburagi T et al. Low-Carbohydrate Diet Inhibits Different Advanced Glycation End Products in Kidney Depending on Lipid Composition but Causes Adverse Morphological Changes in a Non-Obese Model Mice. Nutrients 2019 Nov;11(11)
    Kaburagi T et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 19
  • 文献情報:
    Yang J et al. Neutrophil-derived advanced glycation end products-N&#x3B5;-(carboxymethyl) lysine promotes RIP3-mediated myocardial necroptosis via RAGE and exacerbates myocardial ischemia/reperfusion injury. FASEB J 2019 12;33(12):14410-14422
    Yang J et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 20
  • 文献情報:
    Effect of N(Epsilon)-(carboxymethyl)lysine on Laboratory Parameters and Its Association with 硫S Haplotype in Children with Sickle Cell Anemia.

  • 備考:
  • 参照:
    PubMed
  • No.: 21
  • 文献情報:
    Ferron AJT et al. Protective Effect of Tomato-Oleoresin Supplementation on Oxidative Injury Recoveries Cardiac Function by Improving &#x3B2;-Adrenergic Response in a Diet-Obesity Induced Model. Antioxidants (Basel) 2019 Sep;8(9)
    Ferron AJT et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 22
  • 文献情報:
    da Silva LF et al. Advanced glycation end products (AGE) and receptor for AGE (RAGE) in patients with active tuberculosis, and their relationship between food intake and nutritional status. PLoS ONE 2019;14(3):e0213991
    da Silva LF et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 23
  • 文献情報:
    Chen Y et al. Dietary Early Glycation Products Promote the Growth of Prostate Tumors More than Advanced Glycation End-Products through Modulation of Macrophage Polarization. Mol Nutr Food Res 2019 02;63(4):e1800885
    Chen Y et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 24
  • 文献情報:
    Rosa Martha PG et al. Ursane derivatives isolated from leaves of Hylocereus undatus inhibit glycation at multiple stages. Chin J Nat Med 2018 Nov;16(11):856-865
    Rosa Martha PG et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 25
  • 文献情報:
    Balansin Rigon R et al. Ultrastructural and Molecular Analysis of Ribose-Induced Glycated Reconstructed Human Skin. Int J Mol Sci 2018 Nov;19(11)
    Balansin Rigon R et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 26
  • 文献情報:
    Tan SMQ et al. Tocotrienol-Rich Vitamin E from Palm Oil (Tocovid) and Its Effects in Diabetes and Diabetic Nephropathy: A Pilot Phase II Clinical Trial. Nutrients 2018 Sep;10(9)
    Tan SMQ et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 27
  • 文献情報:
    Silver Nanoparticles Synthesized Using Eysenhardtia polystachya and Assessment of the Inhibition of Glycation in Multiple Stages In Vitro and in the Zebrafish Model.

  • 備考:
  • 参照:
    PubMed
  • No.: 28
  • 文献情報:
    Cyanidin-3-rutinoside alleviates methylglyoxal-induced cardiovascular abnormalities in the rats.

  • 備考:
  • 参照:
    PubMed
  • No.: 29
  • 文献情報:
    Menini S et al. The advanced glycation end-product N<sup>&#x3F5;</sup> -carboxymethyllysine promotes progression of pancreatic cancer: implications for diabetes-associated risk and its prevention. J Pathol 2018 06;245(2):197-208
    Menini S et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 30
  • 文献情報:
    Hu X et al. Protection by dimethyl fumarate against diabetic cardiomyopathy in type 1 diabetic mice likely via activation of nuclear factor erythroid-2 related factor 2. Toxicol Lett 2018 May;287:131-141
    Hu X et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed