| Literature DB >> 19530697 |
Chien-Huang Wu1, Ming-Shiu Hung, Jen-Shin Song, Teng-Kuang Yeh, Ming-Chen Chou, Cheng-Ming Chu, Jiing-Jyh Jan, Min-Tsang Hsieh, Shi-Liang Tseng, Chun-Ping Chang, Wan-Ping Hsieh, Yinchiu Lin, Yen-Nan Yeh, Wan-Ling Chung, Chun-Wei Kuo, Chin-Yu Lin, Horng-Shing Shy, Yu-Sheng Chao, Kak-Shan Shia.
Abstract
By using the active metabolite 5 as an initial template, further structural modifications led to the identification of the titled compound 24 (BPR-890) as a highly potent CB1 inverse agonist possessing an excellent CB2/1 selectivity and remarkable in vivo efficacy in diet-induced obese mice with a minimum effective dose as low as 0.03 mg/kg (po qd) at the end of the 30-day chronic study. Current SAR studies along with those of many existing rimonabant-mimicking molecules imply that around the pyrazole C3-position, a rigid and deep binding pocket should exist for CB1 receptor. In addition, relative to the conventional carboxamide carbonyl, serving as a key hydrogen-bond acceptor during ligand-CB1 receptor interaction, the corresponding polarizable thione carbonyl might play a more critical role in stabilizing the Asp366-Lys192 salt bridge in the proposed CB1-receptor homology model and inducing significant selectivity for CB1R over CB2R.Entities:
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Year: 2009 PMID: 19530697 DOI: 10.1021/jm900471u
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446