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CGP37157

CAS No. 75450-34-9

CGP37157 ( 7-Chloro-5-(2-chlorophenyl)-1,5-dihydro-4,1-benzothiazepine-2(3H)-one )

产品货号. M26645 CAS No. 75450-34-9

CGP37157 is a Na+/Ca2+ exchanger inhibitor, inhibits Na+-induced Ca2+ release from mitochondria in guinea pig heart with IC50 of 0.8 μM.

纯度: >98% (HPLC)

COA Datasheet HNMR HPLC MSDS Handing Instructions
规格 价格/人民币 库存 数量
5MG ¥365 有现货
10MG ¥624 有现货
25MG ¥1256 有现货
50MG ¥2114 有现货
100MG ¥3596 有现货
200MG 获取报价 有现货
500MG 获取报价 有现货
1G 获取报价 有现货

生物学信息

  • 产品名称
    CGP37157
  • 注意事项
    本公司产品仅用于科研实验,不得用于人体或动物的临床与诊断
  • 产品简述
    CGP37157 is a Na+/Ca2+ exchanger inhibitor, inhibits Na+-induced Ca2+ release from mitochondria in guinea pig heart with IC50 of 0.8 μM.
  • 产品描述
    CGP37157 is a Na+/Ca2+ exchanger inhibitor, inhibits Na+-induced Ca2+ release from mitochondria in guinea pig heart with IC50 of 0.8 μM.(In Vitro):Administration of 10?μM CGP37157 shows an inhibitory effect on mitochondrial Na+/Ca2+ exchanger in cortical neurons, modulating intracellular Ca2+ levels via suppressing voltage-gated calcium channels. Administration of 10?μM CGP37157 in combination with salinomycin significantly attenuates cell viability and increases apoptosis of FaDu and HLaC79 cells. CGP37157 has no inhibitory effect on salinomycin tumor toxicity. Administration of 10?μM CGP37157 reduces NMDA-induced cytosolic and mitochondrial Ca2+ overloads and it also reduces NMDA-induced excitotoxicity, and such an effect is via attenuating mitochondrial damage and calpain activity in neurons.
  • 同义词
    7-Chloro-5-(2-chlorophenyl)-1,5-dihydro-4,1-benzothiazepine-2(3H)-one
  • 通路
    Others
  • 靶点
    Other Targets
  • 受体
    ——
  • 研究领域
    ——
  • 适应症
    ——

化学信息

  • CAS Number
    75450-34-9
  • 分子量
    324.2
  • 分子式
    C15H11Cl2NOS
  • 纯度
    >98% (HPLC)
  • 溶解度
    ——
  • SMILES
    Clc1ccc2NC(=O)CSC(c3ccccc3Cl)c2c1
  • 化学全称
    ——

运输与储存

  • 储存条件
    (-20℃)
  • 运输条件
    With Ice Pack
  • 稳定性
    ≥ 2 years

参考文献

1.Svitkin YV, et al. N1-methyl-pseudouridine in mRNA enhances translation through eIF2α-dependent and independent mechanisms by increasing ribosome density. Nucleic Acids Res. 2017 Jun 2;45(10):6023-6036.
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