An Orally Bioavailable c-Met Kinase Inhibitor Potently Inhibits Brain Tumor Malignancy and Growth
- Authors: Guessous F.1, Zhang Y.1, diPierro C.1, Marcinkiewicz L.1, Sarkaria J.1, Schiff D.1, Buchanan S.1, Abounader R.1
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Affiliations:
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- Issue: Vol 10, No 1 (2010)
- Pages: 28-35
- Section: Oncology
- URL: https://hum-ecol.ru/1871-5206/article/view/694524
- DOI: https://doi.org/10.2174/1871520611009010028
- ID: 694524
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Abstract
The receptor tyrosine kinase, c-Met and its ligand hepatocyte growth factor (HGF) are important regulators of malignancy in human cancer including brain tumors. c-Met is frequently activated in brain tumors and has emerged as a promising target for molecular therapies. Recently, an orally bioavailable small molecule kinase inhibitor of c-Met (SGX523) was developed by SGX Pharmaceuticals. We tested the effects of this inhibitor on c-Met brain tumor cell activation, c-Met-dependent malignancy, and in vivo glioma xenograft growth. SGX523 potently inhibited c-Met activation and c-Met-dependent signaling at nanomolar concentrations in glioma cells, primary gliomas, glioma stem cells and medulloblastoma cells. SGX523 treatment inhibited c-Met-dependent brain tumor cell proliferation and G1/S cell cycle progression. SGX523 also inhibited brain tumor cell migration and invasion. Furthermore, systemic delivery of SGX523 via oral gavage to mice bearing orthotopic human glioblastoma xenografts led to a significant decrease of in vivo tumor growth. These studies show that c-Met activation and c-Met-dependent brain tumor cell and stem cell malignancy can be inhibited by small molecules. The study also shows for the first time that oral delivery of a small molecule kinase inhibitor of c-Met inhibits intracranial tumor growth. These findings suggest that targeting c-Met with small molecule kinase inhibitors is a promising approach for brain tumor therapy.
About the authors
Fadila Guessous
,
Email: info@benthamscience.net
Ying Zhang
,
Email: info@benthamscience.net
Charles diPierro
,
Email: info@benthamscience.net
Lukasz Marcinkiewicz
,
Email: info@benthamscience.net
Jann Sarkaria
,
Email: info@benthamscience.net
David Schiff
,
Email: info@benthamscience.net
Sean Buchanan
,
Email: info@benthamscience.net
Roger Abounader
,
Email: info@benthamscience.net
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