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- 保存条件:
Powder: -20°C, 3 years; 4°C, 2 years.In solvent: -80°C, 6 months; -20°C, 1 month.
- 库存:
货期:1-2天
- 供应商:
MedChemExpress LLC
- CAS号:
203115-63-3
- 规格:
10 mM * 1 mL/1 mg/5 mg/10 mg/50 mg/100 mg
| 规格: | 10 mM * 1 mL | 产品价格: | ¥880.0 |
|---|---|---|---|
| 规格: | 1 mg | 产品价格: | ¥335.0 |
| 规格: | 5 mg | 产品价格: | ¥800.0 |
| 规格: | 10 mg | 产品价格: | ¥1200.0 |
| 规格: | 50 mg | 产品价格: | ¥2800.0 |
| 规格: | 100 mg | 产品价格: | ¥4500.0 |
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NSC 617145
CAS No. : 203115-63-3
MCE 国际站:NSC 617145
产品活性:NSC 617145 是一种选择性 werner 综合征解旋酶 (WRN) 解旋酶抑制剂,IC50 值为 230 nM。NSC 617145 抑制 WRN ATPase,并诱导双链断裂 (DSB) 和染色体异常。NSC 617145 对 WRN 具有选择性,优于 BLM、FANCJ、ChlR1、RecQ 和 UvrD 解旋酶。
研究领域:Cell Cycle/DNA Damage
作用靶点:DNA/RNA Synthesis
In Vitro: NSC 617145 (0.75-3 μM; 24-72 hours) shows maximal inhibition of proliferation (98%) at the lowest concentration in a WRN-specific manner in HeLa cells.
NSC 617145 (0.75 μM; 6 hours) induces WRN binding to chromatin and proteasomal degradation.
In FA-D2-/- cells, NSC 617145 (0.125 μM) acts synergistically with very low concentrations of Mitomycin C to inhibit proliferation in a WRN-dependent manner and induce double-strand breaks (DSB) and chromosomal abnormalities. NSC 617145 exposure results in enhanced accumulation of DNA-PKcs pS2056 foci and Rad51 foci in Mitomycin C-treated FA-deficient cells, suggesting that WRN helicase inhibition prevents processing of Rad51-mediated recombination products and activates NHEJ.
NSC 617145, induces cell cycle arrest and apoptosis in human T-cell leukemia virus type 1 (HTLV-1)-transformed adult T-cell leukemia cells.
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文献和实验Neurosphere and Neural Colony-Forming Cell Assays
), neural stem cells (NSC) are often isolated and studied using a culture system referred to as the neurosphere assay. Since its introduction in 1992, the neurosphere system has been used to isolate, expand, and identify the presence of an NSC population
Methods for Analysis of Brain Tumor Stem Cell and Neural Stem Cell Self-Renewal
Neural stem cells (NSC) self-renew and are multipotent, producing neurons and glia. Recent studies have shown that brain tumors (BT) contain cells that, like NSC, self-renew and are multipotent, producing the different types of cells
Since the discovery of neural stem cells (NSC) in the embryonic and adult mammalian central nervous system (CNS), there have been a growing numbers of tissue culture media and protocols to study and functionally characterize NSCs
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