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IMPROVED METHOD FOR ESTIMATING WATER SOLUBILITY FROM OCTANOL/WATER PARTITION COEFFICIENT

机译:辛醇/水分配系数估算水溶解度的改进方法

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摘要

Water solubility is a critical property in risk assessments for chemicals, but measured values are often unavailable. The most practical approach to estimating solubility for diverse and complex structures involves regression against the logarithm of the octanol/water partition coefficient (log K_(ow)). However, currently used equations were developed from relatively small training sets (200-300 compounds). Our objective was to upgrade log K_(ow)-based methods by examining a much larger and diverse training set and, if possible, to improve estimation accuracy further by incorporating a series of simple correction factors. We also evaluated the contributions of melting temperature (T_m) and molecular weight (MW). Measured values of water solubility, log K_(ow) and T_m (solids only) were available for all compounds in the training set (n = 1,450). The best equation for this dataset included log K_(ow), T_m, MW, and 12 correction factors as independent variables, with r~2 = 0.970, SD = 0.409, ME = 0.313. Statistics for an independent validation set of 817 compounds were consistent with these results: r~2 = 0.902, SD = 0.615, ME = 0.480. We found that T_m contributed significantly to estimation accuracy for solids; addition of MW also increased accuracy; measured values of log K_(ow) and T_m produced more accurate solubility estimates than did estimated values; and the new method outperformed other widely used general-purpose equations based on log K_(ow).
机译:水溶性是化学品风险评估中的关键属性,但通常无法获得测量值。估算各种复杂结构的溶解度的最实用方法是针对辛醇/水分配系数的对数(log K_(ow))进行回归。但是,当前使用的方程式是从相对较小的训练集(200-300种化合物)中开发出来的。我们的目标是通过检查更大和多样的训练集来升级基于log K_(ow)的方法,并在可能的情况下,通过合并一系列简单的校正因子来进一步提高估计准确性。我们还评估了熔融温度(T_m)和分子量(MW)的贡献。训练集中所有化合物的水溶解度,log K_(ow)和T_m(仅固体)的测量值均可用(n = 1,450)。该数据集的最佳公式包括log K_(ow),T_m,MW和12个校正因子作为自变量,其中r〜2 = 0.970,SD = 0.409,ME = 0.313。独立验证的817种化合物的统计数据与以下结果一致:r〜2 = 0.902,SD = 0.615,ME = 0.480。我们发现T_m对固体的估计精度有很大的贡献。 MW的增加也提高了准确性; log K_(ow)和T_m的测量值比估计值产生更准确的溶解度估计值;新方法的性能优于其他基于log K_(ow)的通用方程。

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