S65487 hydrochloride
(Synonyms: VOB560 hydrochloride) 目录号 : GC63426S65487 (VOB560) hydrochloride是一种有效的选择性 Bcl-2 抑制剂。S65487 hydrochloride 对 BCL-2 突变也有活性,例如 G101V 和 D103Y。S65487 hydrochloride 对 MCL-1,BFL-1 和 BCL-XL 的亲和力较差。S65487 hydrochloride 诱导细胞凋亡 (apoptosis) 并具有抗癌活性。
Cas No.:1644543-95-2
Sample solution is provided at 25 µL, 10mM.
S65487 (VOB560) hydrochloride is a potent and selective Bcl-2 inhibitor. S65487 hydrochloride is also active on BCL-2 mutations, such as G101V and D103Y. S65487 hydrochloride has poor affinity with MCL-1, BFL-1 and BCL-XL. S65487 hydrochloride induces apoptosis and has anticaner activities[1][2].
S65487 hydrochloride binds to the BH3 hydrophobic groove of BCL-2. S65487 hydrochloride induces apoptosis in a panel of hematological cancer cell lines and inhibits cell proliferation with IC50s in the low nM range[1].
S65487 hydrochloride induces complete regression in BCL-2-dependent RS4;11 tumors in vivo after a single IV (intravenous) administration. Strong and persistent tumor regression in xenograft models of lymphoid malignancies in mouse and rat are observed at well tolerated doses following weekly IV administration of S65487 hydrochloride in combination with the MCL-1-specific inhibitor, S64315/MIK665[1].
[1]. Arnaud Le Tiran, et al. Abstract 1276: Identification of S65487/VOB560 as a potent and selective intravenous 2nd-generation BCL-2 inhibitor active in wild-type and clinical mutants resistant to Venetoclax. Cancer Research. July 2021.
Cas No. | 1644543-95-2 | SDF | |
别名 | VOB560 hydrochloride | ||
分子式 | C41H42Cl2N6O4 | 分子量 | 753.72 |
溶解度 | DMSO : 90 mg/mL (119.41 mM; Need ultrasonic) | 储存条件 | 4°C, away from moisture |
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Shipping Condition | 评估样品解决方案:配备蓝冰进行发货。所有其他可用尺寸:配备RT,或根据请求配备蓝冰。 |
制备储备液 | |||
1 mg | 5 mg | 10 mg | |
1 mM | 1.3268 mL | 6.6338 mL | 13.2675 mL |
5 mM | 0.2654 mL | 1.3268 mL | 2.6535 mL |
10 mM | 0.1327 mL | 0.6634 mL | 1.3268 mL |
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% DMSO % % Tween 80 % saline | ||||||||||
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工作液浓度: mg/ml;
DMSO母液配制方法: mg 药物溶于 μL DMSO溶液(母液浓度 mg/mL,
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1. 首先保证母液是澄清的;
2.
一定要按照顺序依次将溶剂加入,进行下一步操作之前必须保证上一步操作得到的是澄清的溶液,可采用涡旋、超声或水浴加热等物理方法助溶。
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