SW2_110A
目录号: PL15014 纯度: ≥99%
商品编号 规格 价格 会员价 是否有货 数量
PL15014-5mg 5mg ¥5625.00 请登录
PL15014-10mg 10mg ¥9322.00 请登录
PL15014-25mg 25mg ¥17680.00 请登录
PL15014-50mg 50mg ¥27323.00 请登录
PL15014-100mg 100mg 询价 询价
PL15014-200mg 200mg 询价 询价
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
SW2_110A
英文名称
SW2_110A
包装储存
-20°C, protect from light, stored under nitrogen In solvent : -80°C, 6 months; -20°C, 1 month (protect from light, stored under nitrogen)
产品详情
SW2_110A 是一种选择性 chromobox 8 chromodomain (CBX8 ChD) 抑制剂,Kd 为 800 nM。SW2_110A 在体外对 CBX8 ChD 的选择性比所有其他 CBX 旁系同源物低 5 倍。
生物活性
SW2_110A is a selective chromobox 8 chromodomain (CBX8 ChD) inhibitor with a K d of 800 nM. SW2_110A shows minimal 5-fold selectivity for CBX8 ChD over all other CBX paralogs in vitro.
性状
Solid
体外研究(In Vitro)
SW2_110A specifically inhibits the association of CBX8 with chromatin in cells and inhibits the proliferation of THP1 leukemia cells driven by the MLL-AF9 translocation (IC50 of 26 μM). In THP1 cells, SW2_110A treatment results in a significant decrease in the expression of MLL-AF9 target genes, including HOXA9. has not independently confirmed the accuracy of these methods. They are for reference only.
运输条件
Room temperature in continental US; may vary elsewhere.
储存方式
-20°C, protect from light, stored under nitrogen In solvent : -80°C, 6 months; -20°C, 1 month (protect from light, stored under nitrogen)
参考文献
[1]. Sijie Wang, et al. Optimization of Ligands Using Focused DNA-Encoded Libraries To Develop a Selective, Cell-Permeable CBX8 Chromodomain Inhibitor. ACS Chem Biol. 2020 Jan 17;15(1):112-131.
溶解度数据
In Vitro: DMSO : 125 mg/mL (164.27 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