Abraham M H, Chadha H S, Whiting G S, Mitchell R C
Department of Chemistry, University College London, UK.
J Pharm Sci. 1994 Aug;83(8):1085-100. doi: 10.1002/jps.2600830806.
A general linear solvation energy equation has been used to analyze published partition coefficients in the systems water-octanol (613 solutes), water-hexadecane (370 solutes), water-alkane (200 solutes), and water-cyclohexane (170 solutes). The descriptors used in the equation are R2, an excess molar refraction; phi H2, the solute dipolarity/polarizability; sigma alpha H2 and sigma beta H2, the effective solute hydrogen-bond acidity and basicity; and Vx, the characteristic volume of McGowan. It is shown that the water-octanol partition coefficient is dominated by solute hydrogen-bond basicity, which favors water, and by solute size, which favors octanol, but solute excess molar refraction and dipolarity/polarizability are also significant. For the water-alkane partition coefficients, the same factors are at work, together with solute hydrogen-bond acidity as a major influence that favors water. An analysis of 288 delta log P values shows that solute hydrogen-bond acidity is the major factor but that solute hydrogen-bond basicity and, to a lesser extent, solute dipolarity/polarizability and size are also significant factors that influence the delta log P parameter.
一个通用的线性溶剂化能方程已被用于分析已发表的水 - 辛醇体系(613种溶质)、水 - 十六烷体系(370种溶质)、水 - 烷烃体系(200种溶质)和水 - 环己烷体系(170种溶质)中的分配系数。该方程中使用的描述符包括R2,即过量摩尔折射;phi H2,溶质的偶极矩/极化率;sigma alpha H2和sigma beta H2,有效溶质氢键酸度和碱度;以及Vx,麦高恩特征体积。结果表明,水 - 辛醇分配系数主要受有利于水的溶质氢键碱度和有利于辛醇的溶质大小的影响,但溶质过量摩尔折射和偶极矩/极化率也很重要。对于水 - 烷烃分配系数,相同的因素起作用,同时溶质氢键酸度是有利于水的主要影响因素。对288个δlog P值的分析表明,溶质氢键酸度是主要因素,但溶质氢键碱度以及在较小程度上溶质偶极矩/极化率和大小也是影响δlog P参数的重要因素。