Potent nonpeptide antagonists of the bradykinin B1 receptor: Structure-activity relationship studies with novel diaminochroman carboxamides

被引:22
作者
Biswas, Kaustav
Li, Aiwen
Chen, Jian Jeffrey
D'Amico, Derin C.
Fotsch, Christopher
Han, Nianhe
Human, Jason
Liu, Qingyian
Norman, Mark H.
Riahi, Bobby
Yuan, Chester
Suzuki, Hideo
Mareska, David A.
Zhan, James
Clarke, David E.
Toro, Andras
Groneberg, Robert D.
Burgess, Laurence E.
Lester-Zeiner, Dianna
Biddlecome, Gloria
Manning, Barton H.
Arik, Leyla
Dong, Hong
Huang, Ming
Kamassah, Augustus
Loeloff, Richard
Sun, Hong
Hsieh, Feng-Yin
Kumar, Gondi
Ng, Gordon Y.
Hungate, Randall W.
Askew, Benny C.
Johnson, Eileen
机构
[1] Amgen Inc, Dept Chem Res & Discovery, Thousand Oaks, CA 91320 USA
[2] Amgen Inc, Dept Pharmacokinet & Drug Metab Neurosci & Inflam, Thousand Oaks, CA 91320 USA
[3] Array BioPharma, Boulder, CO 80301 USA
关键词
D O I
10.1021/jm070055c
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The bradykinin B1 receptor is induced following tissue injury and/or inflammation. Antagonists of this receptor have been studied as promising candidates for treatment of chronic pain. We have identified aryl sulfonamides containing a chiral chroman diamine moiety that are potent antagonists of the human B1 receptor. Our previously communicated lead, compound 2, served as a proof-of-concept molecule, but suffered from poor pharmacokinetic properties. With guidance from metabolic profiling, we performed structure-activity relationship studies and have identified potent analogs of 2. Variation of the sulfonamide moiety revealed a preference for 3- and 3,4-disubstituted aryl sulfonamides, while bulky secondary and tertiary amines were preferred at the benzylic amine position for potency at the B1 receptor. Modifying the beta-amino acid core of the molecule lead to the discovery of highly potent compounds with improved in vitro pharmacokinetic properties. The most potent analog at the human receptor, compound 38, was also active in a rabbit B1 receptor cellular assay. Furthermore, compound 38 displayed in vivo activity in two rabbit models, a pharmacodynamic model with a blood pressure readout and an efficacy model of inflammatory pain.
引用
收藏
页码:2200 / 2212
页数:13
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