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The use of QSAR methods for determination of n-octanol/water partition coefficient using the example of hydroxyester HE-1

机译:使用QSAR方法使用羟基酯HE-1的实施例测定正辛醇/水分配系数

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According to the Directive of the European Parliament and of the Council concerning the protection of animals used for scientific purposes, the number of experiments involving the use of animals needs to be reduced. The methods which can replace animal testing include computational prediction methods, for instance, the quantitative structure-activity relationships (QSAR). These methods are designed to find a cohesive relationship between differences in the values of the properties of molecules and the biological activity of a series of test compounds. This paper compares the results of the author's own results of examination on the n-octanol/water coefficient for the hydroxyester HE-1 with those generated by means of three models: Kowwin, MlogP, AlogP. The test results indicate that, in the case of molecular similarity, the highest determination coefficient was obtained for the model MlogP and the lowest root-mean square error was obtained for the Kowwin method. When comparing the mean logP value obtained using the QSAR models with the value resulting from the author's own experiments, it was observed that the best conformity was that recorded for the model AlogP, where relative error was 15.2%.
机译:根据欧洲议会的指令和关于用于科学目的的动物保护理事会,以减少涉及使用的动物实验需要的数量。可替代动物试验的方法包括计算预测方法,例如,定量结构 - 活性关系(QSAR)。这些方法被设计来查找分子的性质和一系列测试化合物的生物活性的值差之间的凝聚力的关系。 KOWWIN,MlogP,AlogP:本文作者自己的对羟基酯HE-1与由三种型号装置产生与正辛醇/水系数检查结果的比较结果。试验结果表明,在分子相似性的情况下,对于模型MlogP获得了最高判定系数和用于KOWWIN的方法得到的最低均方根误差。当比较使用QSAR模型与作者自己的实验结果值获得的平均logP值。,有人认为最好的整合是记录模型AlogP,其中相对误差为15.2%。

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