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首页> 外文期刊>Journal of Medicinal Chemistry >Assessment of Additive/Nonadditive Effects in Structure-Activity Relationships: Implications for Iterative Drug Design
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Assessment of Additive/Nonadditive Effects in Structure-Activity Relationships: Implications for Iterative Drug Design

机译:评估结构/活动关系中的加性/非加性效应:对迭代药物设计的启示。

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Free-Wilson (FW) analysis is common practice in medicinal chemistry and is based on the assumption that the contributions to activity made by substituents at different substitution positions are additive. We analyze eight near complete combinatorial libraries assayed on several different biological response(s) (GPCR, ion channel, kinase and P450 targets) and show that only half-exhibit clear additive behavior, which leads us to question the concept of additivity that is widely taken for granted in drug discovery. Next, we report a series of retrospective experiments in which subsets are extracted from the libraries for FW analysis to determine the minimum attributes (size, distribution of substituents, and activity range) necessary to reach the same conclusion about additiveonadditive effects. These attributes can provide guidelines on when it is appropriate to apply FW analysis as well as for library design, and they also have important implications for further steps in iterative drug design.
机译:Free-Wilson(FW)分析是药物化学中的常用方法,它基于以下假设:不同位置的取代基对活性的贡献是累加的。我们分析了在几种不同的生物学应答(GPCR,离子通道,激酶和P450靶标)上测定的八个接近完整的组合文库,结果表明只有一半的化合物表现出明显的加性,这使我们对广泛存在的可加性概念提出质疑在药物发现中理所当然。接下来,我们报告一系列的回顾性实验,其中从库中提取子集进行FW分析,以确定达到关于加/非加作用的相同结论所必需的最小属性(大小,取代基的分布和活性范围)。这些属性可以为何时进行FW分析以及库设计提供指导,并且对于迭代药物设计的进一步步骤也具有重要意义。

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