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Firsocostat
- 英文名称:Firsocostat
- 品牌:WYTSCI
- 产地:进口
- 型号:1MG
- 货号:WT-AY-B11373
- cas:1434635-54-7
- 价格: ¥1/mg
- 发布日期: 2025-04-10
- 更新日期: 2025-04-30
产品详请
产地 | 进口 |
品牌 | WYTSCI |
货号 | WT-AY-B11373 |
用途 | 科研检测 |
英文名称 | Firsocostat |
包装规格 | 1MG |
CAS编号 | 1434635-54-7 |
别名 | Firsocostat |
纯度 | 98+% |
分子式 | |
是否进口 | 是 |
纯度:98% by HPLC,;NMR (Conforms)
分子式:C28H31N3O8S
分子量:569.63
溶剂:DMSO (25 mg/ml)
性状:White solid
存储:-20°C
Activity (short version):Allosteric acetyl-CoA carboxylase inhibitor
Function / Pharmacology:Potent (IC50 = 1.7 nM ACC1; 2.6 nM ACC2) allosteric protein-protein interaction inhibitor of acetyl-CoA carboxylase (ACC).1 It interacts with the ACC phosphopeptide acceptor and dimerization site to inhibit enzymatic activity resulting in decreased fatty acid synthesis and stimulation of fatty acid oxidation. It reduced hepatic steatosis, improves insulin sensitivity, reduces weight gain, and favorably affects dyslipidemia in rats. Firsocostat decreased hepatic steatosis and fibrosis markers in patients with nonalcoholic fatty liver disease.2 Directly impairs profibrinogenic activity of hepatic stellate cells (HSC) via prevention of induction of glycolysis and oxidative phosphorylation during HSC activation.3
分子式:C28H31N3O8S
分子量:569.63
溶剂:DMSO (25 mg/ml)
性状:White solid
存储:-20°C
Activity (short version):Allosteric acetyl-CoA carboxylase inhibitor
Function / Pharmacology:Potent (IC50 = 1.7 nM ACC1; 2.6 nM ACC2) allosteric protein-protein interaction inhibitor of acetyl-CoA carboxylase (ACC).1 It interacts with the ACC phosphopeptide acceptor and dimerization site to inhibit enzymatic activity resulting in decreased fatty acid synthesis and stimulation of fatty acid oxidation. It reduced hepatic steatosis, improves insulin sensitivity, reduces weight gain, and favorably affects dyslipidemia in rats. Firsocostat decreased hepatic steatosis and fibrosis markers in patients with nonalcoholic fatty liver disease.2 Directly impairs profibrinogenic activity of hepatic stellate cells (HSC) via prevention of induction of glycolysis and oxidative phosphorylation during HSC activation.3