| Literature DB >> 22984809 |
James J Crawford1, Peter W Kenny, Jonathan Bowyer, Calum R Cook, Jonathan E Finlayson, Christine Heyes, Adrian J Highton, Julian A Hudson, Anja Jestel, Stephan Krapp, Scott Martin, Philip A Macfaul, Benjamin P McDermott, Thomas M McGuire, Andrew D Morley, Jeffrey J Morris, Ken M Page, Lyn Rosenbrier Ribeiro, Helen Sawney, Stefan Steinbacher, Caroline Smith, Alexander G Dossetter.
Abstract
Rational structure-based design has yielded highly potent inhibitors of cathepsin K (Cat K) with excellent physical properties, selectivity profiles, and pharmacokinetics. Compounds with a 3,4-(CH₃O)₂Ph motif, such as 31, were found to have excellent metabolic stability and absorption profiles. Through metabolite identification studies, a reactive metabolite risk was identified with this motif. Subsequent structure-based design of isoteres culminated in the discovery of an optimized and balanced inhibitor (indazole, 38).Entities:
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Year: 2012 PMID: 22984809 DOI: 10.1021/jm301119s
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446