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首页> 外文期刊>Journal of Medicinal Chemistry >CNS Drug Design: Balancing Physicochemical Properties for Optimal Brain Exposure
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CNS Drug Design: Balancing Physicochemical Properties for Optimal Brain Exposure

机译:中枢神经系统药物设计:平衡理化特性以优化大脑暴露

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摘要

The human brain is a uniquely: complex organ, which has evolved a sophisticated protection system to prevent injury from external insult and toxins. Designing molecules that can overcome this protection system and achieve optimal concentration at the desired therapeutic target in the brain is a:specific and major challenge for:medicinal chemists working in CNS drug discovery. Analogous to the now widely accepted rule of 5 in the design of oral drugs, the physicochemical properties required for optimal brain exposure have been extensively studied in an attempt to similarly define the attributes of successful CNS drags and drug candidates. This body of work is systematically reviewed here, with a particular emphasis on the interplay between the most critical physicochemical and pharmacokinetic parameters of CNS drugs as well as their impact on medicinal chemistry strategies toward molecules With optimal brain exposure. A, summary of modern CNS,pharmacokinetic concepts and. methods is also provided:
机译:人脑是一个独特的:复杂的器官,它已经进化出一种先进的保护系统,可以防止外部侮辱和毒素伤害。设计能够克服这种保护系统并在大脑中所需的治疗靶点上达到最佳浓度的分子,对于从事CNS药物研发的药用化学家来说是一个特殊且主要的挑战。类似于目前口服药物设计中普遍接受的5规则,为最佳暴露于大脑所需的理化性质已得到广泛研究,以试图相似地定义成功的中枢神经系统药物和候选药物的属性。本文系统地回顾了这项工作,特别着重于中枢神经系统药物最关键的物理化学和药代动力学参数之间的相互作用,以及它们对药物化学策略对具有最佳脑暴露水平的分子的影响。 A,现代中枢神经系统概述,药代动力学概念和。还提供了以下方法:

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