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      Synthesis and c-Met kinase inhibition of 3,5-disubstituted and 3,5,7-trisubstituted quinolines: identification of 3-(4-acetylpiperazin-1-yl)-5-(3-nitrobenzylamino)-7- (trifluoromethyl)quinoline as a novel anticancer agent.

      Journal of Medicinal Chemistry
      Animals, Antineoplastic Agents, chemical synthesis, chemistry, pharmacokinetics, pharmacology, Cell Line, Tumor, Cell Proliferation, drug effects, Drug Design, Humans, Mice, NIH 3T3 Cells, Phosphorylation, Protein Kinase Inhibitors, Proto-Oncogene Proteins c-met, antagonists & inhibitors, metabolism, Quinolines, Signal Transduction

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          Abstract

          By use of an improved synthetic strategy, a series of 3,5-disubstituted and 3,5,7-trisubstituted quinolines were readily prepared. 3,5,7-Trisubstituted quinolines 21a-c, 21l, and 27a-c were identified as the most potent c-Met inhibitors with IC(50) of less than 1.0 nM. Compound 21b showed the most promising overall PK profile and has high potency and extraordinary selectivity to c-Met against c-Met family member Ron and 12 other tyrosine kinases. It produced constitutive inhibition of c-Met phosphorylation in c-Met dependent cell lines. At doses of 100 mg/kg, compound 21b showed statistically significant tumor growth inhibition (68-69%) in both NIH-3T3-TPR-Met and U-87 MG human gliobastoma xenograft models. These results clearly indicated that compound 21b is a potent and highly selective c-Met inhibitor. Its favorable in vitro and in vivo profiles warrant further investigation.

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