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Submit ReviewVismodegib is a potent hedgehog pathway inhibitor (IC50 = 3 nM). It causes tumor regressions in allograft medulloblastoma mice model and tumor growth inhibition in a xenograft mouse models of colorectal cancer. Vismodegib is orally bioavailable.
分子量 | 421.3 |
公式 | C19H14Cl2N2O3S |
储存 | Store at -20°C |
纯度 | ≥98% (HPLC) |
CAS Number | 879085-55-9 |
PubChem ID | 24776445 |
InChI Key | BPQMGSKTAYIVFO-UHFFFAOYSA-N |
Smiles | O=C(NC=1C=CC(Cl)=C(C1)C2=NC=CC=C2)C3=CC=C(C=C3Cl)S(=O)(=O)C |
上方提供的技术数据仅供参考。批次相关数据请参见分析证书。
Tocris products are intended for laboratory research use only, unless stated otherwise.
溶剂 | 最高浓度 mg/mL | 最高浓度 mM | |
---|---|---|---|
溶解性 | |||
DMSO | 42.13 | 100 |
以下数据基于产品分子量 421.3。 Batch specific molecular weights may vary from batch to batch due to the degree of hydration, which will affect the solvent volumes required to prepare stock solutions.
浓度/溶剂体积/质量 | 1 mg | 5 mg | 10 mg |
---|---|---|---|
1 mM | 2.37 mL | 11.87 mL | 23.74 mL |
5 mM | 0.47 mL | 2.37 mL | 4.75 mL |
10 mM | 0.24 mL | 1.19 mL | 2.37 mL |
50 mM | 0.05 mL | 0.24 mL | 0.47 mL |
参考文献是支持产品生物活性的出版物。
Robarge et al (2009) GDC-0449-a potent inhibitor of the hedgehog pathway. Bioorg.Med.Chem.Lett. 19 5576 PMID: 19716296
Wong et al (2009) Preclinical assessment of the absorption, distribution, metabolism and excretion of GDC-0449 (2-chloro-N-(4-chloro-3-(pyridin-2-yl)phenyl)-4-(methylsulfonyl)benzamide), an orally bioavailable systemic Hedgehog signalling pathway inhibitor. Xenobiotica 39 850 PMID: 19845436
Wong et al (2011) Pharmacokinetic-pharmacodynamic analysis of vismodegib in preclinical models of mutational and ligand-dependent Hedgehog pathway activation. Clin.Cancer Res. 17 4682 PMID: 21610148
If you know of a relevant reference for Vismodegib, please let us know.
关键词: Vismodegib, Vismodegib supplier, potent, inhibitors, hedgehog, Hh, pathway, signaling, inhibits, Signalling, orally, bioavailable, Hedgehog, Signaling, 7710, Tocris Bioscience
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Written by Kirsty E. Clarke, Victoria B. Christie, Andy Whiting and Stefan A. Przyborski, this review provides an overview of the use of small molecules in the control of stem cell growth and differentiation. Key signaling pathways are highlighted, and the regulation of ES cell self-renewal and somatic cell reprogramming is discussed. Compounds available from Tocris are listed.
Stem cells have potential as a source of cells and tissues for research and treatment of disease. This poster summarizes some key protocols demonstrating the use of small molecules across the stem cell workflow, from reprogramming, through self-renewal, storage and differentiation to verification. Advantages of using small molecules are also highlighted.