GSK840 (Synonyms: GSK'840)
目录号: PL11035 纯度: ≥98%
CAS No. :2361146-30-5
商品编号 规格 价格 会员价 是否有货 数量
PL11035-5mg 5mg ¥3090.91 请登录
PL11035-10mg 10mg ¥4945.45 请登录
PL11035-50mg 50mg ¥15825.45 请登录
PL11035-100mg 100mg 询价 询价
PL11035-200mg 200mg 询价 询价
PL11035-10mM*1mLinDMSO 10mM*1mLinDMSO ¥3400.00 请登录
Medlife所售产品仅用于科学研究(非临床研究),非药品不可食用,不可用于人体或动物的临床诊断和治疗,我们不为个人提供产品及服务。产品COA等资料,可至下方“质量控制”中下载。
中文名称
GSK840
英文名称
GSK840
英文别名
GSK'840;GSK840;tert-butyl 2-[4-[5-(methylcarbamoyl)benzimidazol-1-yl]phenyl]acetate;BDBM50519649;tert-butyl 2-(4-(5-(methylcarbamoyl)-1H-benzo[d]imidazol-1-yl)phenyl)acetate
Cas No.
2361146-30-5
分子式
C21H23N3O3
分子量
365.43
包装储存
Powder -20°C 3 years;In solvent -80°C 6 months
产品详情
GSK840 (GSK'840) 是一种受体相互作用蛋白激酶 3 (RIP3 或 RIPK3) 抑制剂,高亲和力结合 RIP3 激酶结构域,IC50 值为 0.9 nM,并抑制激酶活性,IC50 值为 0.3 nM。
生物活性
GSK840 (GSK840) is a receptor-interacting protein kinase 3 (RIP3 or RIPK3) inhibitor, which binds RIP3 kinase domain with an IC 50 of 0.9 nM, and inhibits kinase activity with an IC 50 of 0.3 nM.
性状
Solid
IC50 & Target[1][2]
IC50: 0.3 nM (RIP3)
体外研究(In Vitro)
GSK840 (GSK840) (0.01-3 μM; 24 hours) blocks TNF-induced necroptosis in a concentration-dependent manner.
GSK840 binds the kinase domain and inhibits kinase activity with high specificity, targeting a broader range of pro-necrotic stimuli than can be achieved with RIP1 kinase inhibitors. has not independently confirmed the accuracy of these methods. They are for reference only.Cell Viability Assay
运输条件
Room temperature in continental US; may vary elsewhere.
储存方式
Powder -20°C 3 years;In solvent -80°C 6 months
参考文献
[1]. Mandal P, et al. RIP3 induces apoptosis independent of pronecrotic kinase activity. Mol Cell. 2014 Nov 20;56(4):481-95.
溶解度数据
In Vitro: DMSO : 110 mg/mL (301.02 mM; Need ultrasonic)配制储备液
搜索质检报告(COA)

1:一般建议:溶解度为Medlife测试数据,可能与文献描述存在差异。这是由于生产工艺和批次不同产生的正常现象。为了使其更好的溶解,请用37℃加热试管并在超声波水浴中震动片刻。不同批次产品溶解度各有差异,仅做参考,具体以实验方案为准。

2:储存条件:粉末-20°C一般情况可以保存3年,溶于溶剂-80°C一般情况可以保存1年。不同产品及不同批次产品可能存在差异,请细致阅读产品信息,并辅助参考相关文献描述。

The molarity calculator equation
Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)
The dilution calculator equation
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2