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首页> 外文期刊>Journal of Medicinal Chemistry >Simplified 2?Aminoquinoline-Based Scaffold for Potent and Selective Neuronal Nitric Oxide Synthase Inhibition
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Simplified 2?Aminoquinoline-Based Scaffold for Potent and Selective Neuronal Nitric Oxide Synthase Inhibition

机译:简化的基于2?氨基喹啉的支架,可有效抑制选择性神经元一氧化氮合酶

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摘要

Since high levels of nitric oxide (NO) are implicated in neurodegenerative disorders, inhibition of the neuronal isoform of nitric oxide synthase (nNOS) and reduction of NO levels are therapeutically desirable. Nonetheless, many nNOS inhibitors mimic L-arginine and are poorly bioavailable. 2-Aminoquinoline-based scaffolds were designed with the hope that they could (a) mimic aminopyridines as potent, isoform-selective arginine isosteres and (b) possess chemical properties more conducive to oral bioavailability and CNS penetration. A series of these compounds was synthesized and assayed against purified nNOS enzymes, endothelial NOS (eNOS), and inducible NOS (iNOS). Several compounds built on a 7-substituted 2-aminoquinoline core are potent and isoform-selective; X-ray crystallography indicates that aminoquinolines exert inhibitory effects by mimicking substrate interactions with the conserved active site glutamate residue. The most potent and selective compounds, 7 and 15, were tested in a Caco-2 assay and showed good permeability and low efflux, suggesting high potential for oral bioavailability.
机译:由于神经退行性疾病涉及高水平的一氧化氮(NO),因此治疗上需要抑制一氧化氮合酶(nNOS)的神经元同工型和降低NO水平。但是,许多nNOS抑制剂模仿L-精氨酸,生物利用度差。设计基于2-氨基喹啉的支架,希望它们能够(a)模拟氨基吡啶作为有效的,对异构体有选择性的精氨酸等排体,(b)具有更有利于口服生物利用度和CNS渗透的化学性质。合成了一系列这类化合物,并针对纯化的nNOS酶,内皮型NOS(eNOS)和诱导型NOS(iNOS)进行了分析。建立在7-取代的2-氨基喹啉核心上的几种化合物有效且对同工型具有选择性。 X射线晶体学表明氨基喹啉通过模仿底物与保守的活性位点谷氨酸残基的相互作用而发挥抑制作用。在Caco-2分析中测试了最有效和选择性最强的化合物7和15,它们显示出良好的渗透性和低流出,表明口服生物利用度潜力很高。

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