Discovery and characterization of [(cyclopentyl)ethyl]benzoic acid inhibitors of microsomal prostaglandin E synthase-1

[Display omitted] We describe a novel class of acidic mPGES-1 inhibitors with nanomolar enzymatic and human whole blood (HWB) potency. Rational design in conjunction with structure-based design led initially to the identification of anthranilic acid 5, an mPGES-1 inhibitor with micromolar HWB potenc...

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Veröffentlicht in:Bioorganic & medicinal chemistry letters 2017-03, Vol.27 (6), p.1478-1483
Hauptverfasser: Partridge, Katherine M., Antonysamy, Stephen, Bhattachar, Shobha N., Chandrasekhar, Srinivasan, Fisher, Matthew J., Fretland, Adrian, Gooding, Karen, Harvey, Anita, Hughes, Norman E., Kuklish, Steven L., Luz, John G., Manninen, Peter R., McGee, James E., Mudra, Daniel R., Navarro, Antonio, Norman, Bryan H., Quimby, Steven J., Schiffler, Matthew A., Sloan, Ashley V., Warshawsky, Alan M., Weller, Jennifer M., York, Jeremy S., Yu, Xiao-Peng
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Sprache:eng
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Zusammenfassung:[Display omitted] We describe a novel class of acidic mPGES-1 inhibitors with nanomolar enzymatic and human whole blood (HWB) potency. Rational design in conjunction with structure-based design led initially to the identification of anthranilic acid 5, an mPGES-1 inhibitor with micromolar HWB potency. Structural modifications of 5 improved HWB potency by over 1000×, reduced CYP2C9 single point inhibition, and improved rat clearance, which led to the selection of [(cyclopentyl)ethyl]benzoic acid compound 16 for clinical studies. Compound 16 showed an IC80 of 24nM for inhibition of PGE2 formation in vitro in LPS-stimulated HWB. A single oral dose resulted in plasma concentrations of 16 that exceeded its HWB IC80 in both rat (5mg/kg) and dog (3mg/kg) for over twelve hours.
ISSN:0960-894X
1464-3405
DOI:10.1016/j.bmcl.2016.11.011