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Potent and selective c-MET kinase inhibitor (IC50 = 4nM). Exhibits minimal inhibition against a panel of 213 other protein kinases (at 1 μM). Suppresses growth of tumor xenografts derived from human glioblastoma, lung and gastric cancer cells.
External Portal Information
Chemicalprobes.org is a portal that offers independent guidance on the selection and/or application of small molecules for research. The use of SGX 523 is reviewed on the chemical probes website.
|Storage||Store at +4°C|
The technical data provided above is for guidance only. For batch specific data refer to the Certificate of Analysis.
Tocris products are intended for laboratory research use only, unless stated otherwise.
|Solvent||Max Conc. mg/mL||Max Conc. mM|
Preparing Stock Solutions
The following data is based on the product molecular weight 359.41. 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.
|Concentration / Solvent Volume / Mass||1 mg||5 mg||10 mg|
|0.2 mM||13.91 mL||69.56 mL||139.12 mL|
|1 mM||2.78 mL||13.91 mL||27.82 mL|
|2 mM||1.39 mL||6.96 mL||13.91 mL|
|10 mM||0.28 mL||1.39 mL||2.78 mL|
References are publications that support the biological activity of the product.
Buchanan et al (2009) SGX523 is an exquisitely selective, ATP-competitive inhibitor of the MET receptor tyrosine kinase with antitumor activity in vivo. Mol.Cancer.Ther. 8 3181 PMID: 19934279
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Keywords: SGX 523, SGX 523 supplier, SGX523, Selective, potent, c-MET, kinase, inhibitors, inhibits, MET, Receptors, 5356, Tocris Bioscience
2 Citations for SGX 523
Citations are publications that use Tocris products. Selected citations for SGX 523 include:
Ortega et al (2017) Adhesion to the host cell surface is sufficient to mediate Listeria monocytogenes entry into epithelial cells. Mol Biol Cell 28 2945 PMID: 28877987
Bastounis et al (2018) Matrix stiffness modulates infection of endothelial cells by Listeria monocytogenes via expression of cell surface vimentin. Mol Biol Cell 29 1571 PMID: 29718765
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Literature in this Area
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