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PMID: 18339875 Published · ppublish English Journal Article

Antitumor activity and pharmacology of a selective focal adhesion kinase inhibitor, PF-562,271.

Cancer research ·Vol. 68 ·No. 6 ·2008-03-15 ·Pages 1935-44

Roberts WG, Ung E, Whalen P, Cooper B, Hulford C, Autry C, Richter D, Emerson E, Lin J, Kath J, Coleman K, Yao L, Martinez-Alsina L, Lorenzen M, Berliner M, Luzzio M, Patel N, Schmitt E, LaGreca S, Jani J, Wessel M, Marr E, Griffor M, Vajdos F

Abstract

Cancer cells are characterized by the ability to grow in an anchorage-independent manner. The activity of the nonreceptor tyrosine kinase, focal adhesion kinase (FAK), is thought to contribute to this phenotype. FAK localizes in focal adhesion plaques and has a role as a scaffolding and signaling protein for other adhesion molecules. Recent studies show a strong correlation between increased FAK expression and phosphorylation status and the invasive phenotype of aggressive human tumors. PF-562,271 is a potent, ATP-competitive, reversible inhibitor of FAK and Pyk2 catalytic activity with a IC(50) of 1.5 and 14 nmol/L, respectively. Additionally, PF-562,271 displayed robust inhibition in an inducible cell-based assay measuring phospho-FAK with an IC(50) of 5 nmol/L. PF-562,271 was evaluated against multiple kinases and displays >100x selectivity against a long list of nontarget kinases. PF-562,271 inhibits FAK phosphorylation in vivo in a dose-dependent fashion (calculated EC(50) of 93 ng/mL, total) after p.o. administration to tumor-bearing mice. In vivo inhibition of FAK phosphorylation (>50%) was sustained for >4 hours with a single p.o. dose of 33 mg/kg. Antitumor efficacy and regressions were observed in multiple human s.c. xenograft models. No weight loss, morbidity, or mortality were observed in any in vivo experiment. Tumor growth inhibition was dose and drug exposure dependent. Taken together, these data show that kinase inhibition with an ATP-competitive small molecule inhibitor of FAK decreases the phospho-status in vivo, resulting in robust antitumor activity.

MeSH Terms
Animals Antineoplastic Agents/chemical synthesis,chemistry,pharmacology Apoptosis/drug effects Cell Line, Tumor Female Focal Adhesion Protein-Tyrosine Kinases/antagonists & inhibitors Glioblastoma/drug therapy,enzymology,pathology Humans Indoles/chemical synthesis,chemistry,pharmacology Mice Mice, Nude Models, Chemical Phosphorylation/drug effects Protein Kinase Inhibitors/chemical synthesis,chemistry,pharmacology Sulfonamides/chemical synthesis,chemistry,pharmacology Xenograft Model Antitumor Assays
Chemicals
Antineoplastic Agents Indoles N-methyl-N-(3-((2-(2-oxo-2,3-dihydro-1H-indol-5-ylamino)-5-trifluoromethyl-pyrimidin-4-ylamino)-methyl)-pyridin-2-yl)-methanesulfonamide Protein Kinase Inhibitors Sulfonamides Focal Adhesion Protein-Tyrosine Kinases
Authors & Affiliations
24 authors, click to expand affiliations / ORCID
Roberts Walter Gregory
Pfizer Oncology, Groton, Connecticut, USA. robertswg@oncoviarx.com
Ung Ethan
Whalen Pamela
Cooper Beth
Hulford Catherine
Autry Christofer
Richter Daniel
Emerson Earling
Lin Jing
Kath John
Coleman Kevin
Yao Lili
Martinez-Alsina Luis
Lorenzen Marianne
Berliner Martin
Luzzio Michael
Patel Nandini
Schmitt Erika
LaGreca Susan
Jani Jitesh
Wessel Matt
Marr Eric
Griffor Matt
Vajdos Felix
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
1538-7445
Published
2008-03-15
Pages
1935-44
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
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