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Prediction of the aqueous solvation free energy of organic compounds by using autocorrelation of molecular electrostatic potential surface properties combined with response surface analysis.

机译:通过使用分子静电势表面性质的自相关结合响应表面分析来预测有机化合物的水溶剂化自由能。

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摘要

Several quantitative structure-property relationship (QSPR) approaches have been explored for the prediction of aqueous solubility or aqueous solvation free energies, DeltaG(sol), as crucial parameter affecting the pharmacokinetic profile and toxicity of chemical compounds. It is mostly accepted that aqueous solvation free energies can be expressed quantitatively in terms of properties of the molecular surface electrostatic potentials of the solutes. In the present study we have introduced autocorrelation molecular electrostatic potential (autoMEP) vectors in combination with nonlinear response surface analysis (RSA) as alternative 3D-QSPR strategy to evaluate the aqueous solvation free energy of organic compounds. A robust QSPR model (r(cv)=0.93) has been obtained by using a collection of 248 organic chemicals. An external test set based on 23 molecules confirmed the good predictivity of the autoMEP/RSA model suggesting its further applicability in the in silico prediction of water solubility of largeorganic compound libraries.
机译:已经探索了几种定量的结构-性质关系(QSPR)方法来预测水溶性或水溶性溶剂化自由能DeltaG(sol),这是影响化合物药代动力学特性和毒性的关键参数。人们普遍接受的是,可以根据溶质的分子表面静电势的性质来定量表示水性溶剂化自由能。在本研究中,我们引入了自相关分子静电势(autoMEP)向量与非线性响应表面分析(RSA)相结合的3D-QSPR策略,以评估有机化合物的水溶剂化自由能。通过使用248种有机化学品的集合,已经获得了可靠的QSPR模型(r(cv)= 0.93)。基于23个分子的外部测试集证实了autoMEP / RSA模型的良好可预测性,表明其在计算机模拟大型有机化合物库的水溶性中的进一步适用性。

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