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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >In silico prediction of brain and CSF permeation of small molecules using PLS regression models.
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In silico prediction of brain and CSF permeation of small molecules using PLS regression models.

机译:使用PLS回归模型对小分子的脑和CSF渗透进行计算机预测。

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Computational partial least square (PLS) regression models were developed, which can be applied to predict central nervous system (CNS) penetration of drug-like organic molecules. For modeling, a dataset of 77 structurally diverse compounds was used with reported steady-state rat brain to plasma ratios (BPR). Information on steady-state cerebrospinal fluid distribution (CSF to plasma ratio or CSFPR) was available for 37 of these compounds. The molecules were from different chemical series and included bases, acids, zwitterions and neutral molecules. They were CNS active and were therefore assumed to penetrate the blood-brain barrier and/or the blood-liquor barrier. Using these PLS models, the dataset could be described accurately (r(2)=0.78, StErrorEst=0.30 and r(2)=0.75, StErrorEst=0.28 for BPR and CSFPR, respectively). Molecular descriptors used for the prediction of passive membrane transport were lipophilicity, polar and hydrophobic surface areas as well as structural parameters and net charge at physiological pH. There was no apparent correlation between experimental brain and CSF exposure. Consequently, different PLS models and guiding rules were developed and discussed for the prediction of BPR or CSFPR. The present models provide a cost-effective and efficient strategy to guide synthetic efforts in medicinal chemistry at an early stage of the drug discovery and development process.
机译:建立了计算偏最小二乘(PLS)回归模型,该模型可用于预测类药物有机分子的中枢神经系统(CNS)渗透。为了进行建模,使用了77种结构多样的化合物的数据集,并报告了稳态大鼠脑与血浆的比率(BPR)。关于这些化合物中的37种,可获得有关稳态脑脊髓液分布(CSF与血浆之比或CSFPR)的信息。这些分子来自不同的化学系列,包括碱,酸,两性离子和中性分子。它们具有中枢神经系统活性,因此被认为能够穿透血脑屏障和/或血液屏障。使用这些PLS模型,可以准确地描述数据集(对于BPR和CSFPR,r(2)= 0.78,StErrorEst = 0.30和r(2)= 0.75,StErrorEst = 0.28)。用于预测膜被动转运的分子描述是亲脂性,极性和疏水表面积以及结构参数和生理pH值下的净电荷。实验脑与脑脊液暴露之间没有明显的相关性。因此,为预测BPR或CSFPR,开发并讨论了不同的PLS模型和指导规则。本模型提供了一种经济高效的策略,可以在药物发现和开发过程的早期阶段指导药物化学中的合成工作。

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