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PMID: 17483355 Published · ppublish English Journal Article

An orally available small-molecule inhibitor of c-Met, PF-2341066, exhibits cytoreductive antitumor efficacy through antiproliferative and antiangiogenic mechanisms.

Cancer research ·Vol. 67 ·No. 9 ·2007-05-01 ·Pages 4408-17

Zou HY, Li Q, Lee JH, Arango ME, McDonnell SR, Yamazaki S, Koudriakova TB, Alton G, Cui JJ, Kung PP, Nambu MD, Los G, Bender SL, Mroczkowski B, Christensen JG

Abstract

The c-Met receptor tyrosine kinase and its ligand, hepatocyte growth factor (HGF), have been implicated in the progression of several human cancers and are attractive therapeutic targets. PF-2341066 was identified as a potent, orally bioavailable, ATP-competitive small-molecule inhibitor of the catalytic activity of c-Met kinase. PF-2341066 was selective for c-Met (and anaplastic lymphoma kinase) compared with a panel of >120 diverse tyrosine and serine-threonine kinases. PF-2341066 potently inhibited c-Met phosphorylation and c-Met-dependent proliferation, migration, or invasion of human tumor cells in vitro (IC(50) values, 5-20 nmol/L). In addition, PF-2341066 potently inhibited HGF-stimulated endothelial cell survival or invasion and serum-stimulated tubulogenesis in vitro, suggesting that this agent also exhibits antiangiogenic properties. PF-2341066 showed efficacy at well-tolerated doses, including marked cytoreductive antitumor activity, in several tumor models that expressed activated c-Met. The antitumor efficacy of PF-2341066 was dose dependent and showed a strong correlation to inhibition of c-Met phosphorylation in vivo. Near-maximal inhibition of c-Met activity for the full dosing interval was necessary to maximize the efficacy of PF-2341066. Additional mechanism-of-action studies showed dose-dependent inhibition of c-Met-dependent signal transduction, tumor cell proliferation (Ki67), induction of apoptosis (caspase-3), and reduction of microvessel density (CD31). These results indicated that the antitumor activity of PF-2341066 may be mediated by direct effects on tumor cell growth or survival as well as antiangiogenic mechanisms. Collectively, these results show the therapeutic potential of targeting c-Met with selective small-molecule inhibitors for the treatment of human cancers.

MeSH Terms
Angiogenesis Inhibitors/pharmacology Animals Breast Neoplasms/blood supply,drug therapy,enzymology,pathology Cell Growth Processes/drug effects Crizotinib Dogs Dose-Response Relationship, Drug Endothelial Cells/drug effects Female Humans Male Mice Mice, Nude Neovascularization, Pathologic/drug therapy Phosphorylation/drug effects Piperidines/pharmacology Protein Kinase Inhibitors/pharmacology Pyrazoles Pyridines/pharmacology Receptor Protein-Tyrosine Kinases/antagonists & inhibitors,metabolism Signal Transduction/drug effects Stomach Neoplasms/blood supply,drug therapy,enzymology,pathology Xenograft Model Antitumor Assays
Chemicals
Angiogenesis Inhibitors Piperidines Protein Kinase Inhibitors Pyrazoles Pyridines Crizotinib RON protein Receptor Protein-Tyrosine Kinases
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Zou Helen Y
Departments of Cancer Biology, Pfizer Global Research and Development, La Jolla Laboratories, La Jolla, California 92121, USA.
Li Qiuhua
Lee Joseph H
Arango Maria E
McDonnell Scott R
Yamazaki Shinji
Koudriakova Tatiana B
Alton Gordon
Cui Jingrong J
Kung Pei-Pei
Nambu Mitchell D
Los Gerrit
Bender Steven L
Mroczkowski Barbara
Christensen James G
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
2007-05-01
Pages
4408-17
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
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