化学
选择性
一氧化氮合酶
效力
一氧化氮
伊诺斯
酶
结构-活动关系
生物化学
微粒体
立体化学
体外
药理学
医学
催化作用
有机化学
作者
Dhananjayan Vasu,Ha T.,Huiying Li,Christine D. Hardy,Amardeep Awasthi,T.L. Poulos,Richard B. Silverman
标识
DOI:10.1021/acs.jmedchem.3c00782
摘要
A series of potent, selective, and highly permeable human neuronal nitric oxide synthase inhibitors (hnNOS), based on a difluorobenzene ring linked to a 2-aminopyridine scaffold with different functionalities at the 4-position, is reported. In our efforts to develop novel nNOS inhibitors for the treatment of neurodegenerative diseases, we discovered 17, which showed excellent potency toward both rat (Ki 15 nM) and human nNOS (Ki 19 nM), with 1075-fold selectivity over human eNOS and 115-fold selectivity over human iNOS. 17 also showed excellent permeability (Pe = 13.7 × 10–6 cm s–1), a low efflux ratio (ER 0.48), along with good metabolic stability in mouse and human liver microsomes, with half-lives of 29 and >60 min, respectively. X-ray cocrystal structures of inhibitors bound with three NOS enzymes, namely, rat nNOS, human nNOS, and human eNOS, revealed detailed structure–activity relationships for the observed potency, selectivity, and permeability properties of the inhibitors.
科研通智能强力驱动
Strongly Powered by AbleSci AI