化学
药理学
一氧化氮合酶
亲脂性
效力
一氧化氮
体内
血脑屏障
生物化学
体外
中枢神经系统
酶
神经科学
有机化学
生物技术
生物
医学
作者
Ha T.,Huiying Li,Georges Chreifi,T.L. Poulos,Richard B. Silverman
标识
DOI:10.1021/acs.jmedchem.8b02032
摘要
Effective delivery of therapeutic drugs into the human brain is one of the most challenging tasks in central nervous system drug development because of the blood–brain barrier (BBB). To overcome the BBB, both passive permeability and efflux transporter liability of a compound must be addressed. Herein, we report our optimization related to BBB penetration of neuronal nitric oxide synthase (nNOS) inhibitors toward the development of new drugs for neurodegenerative diseases. Various approaches, including enhancing lipophilicity and rigidity of new inhibitors and modulating the pKa of amino groups, have been employed. In addition to determining inhibitor potency and selectivity, crystal structures of most newly designed compounds complexed to various nitric oxide synthase isoforms have been determined. We have discovered a new analogue (21), which exhibits not only excellent potency (Ki < 30 nM) in nNOS inhibition but also a significantly low P-glycoprotein and breast-cancer-resistant protein substrate liability as indicated by an efflux ratio of 0.8 in the Caco-2 bidirectional assay.
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