Department of Chemical and Biological Engineering, University at Buffalo, State University of New York, Buffalo, New York 14260-4200, USA.
J Pharm Sci. 2013 Jan;102(1):136-44. doi: 10.1002/jps.23342. Epub 2012 Nov 6.
An important series of papers by Xiang, Anderson, and coworkers has established the strong correlation between phospholipid bilayer membrane permeability and the 1,9-decadiene/water partition coefficient over a wide range of compounds, elevating the importance of K(decadiene/w) as a predictor of molecular bioavailability. On the basis of a 58-point dataset developed by these authors, this research note develops an optimal correlation predicting log(10) K(decadiene/w) in terms of the octanol/water partition coefficient and four of the Abraham solvation parameters, namely A (hydrogen bond acidity), S (polarity/polarizability), E (excess molar refraction), and V (McGowan characteristic volume). The fitted dataset is described to within a root-mean-square error of 0.42, and the probable error in making a prediction for a compound not present therein is 0.49. It is shown that this correlation error for K(decadiene/w) is the dominant source of uncertainty in applying a comprehensive new model of phospholipid bilayer membrane permeability developed in a companion paper (Nitsche and Kasting, submitted for publication), which superposes the effects of molecular size and lipid density upon the decadiene lipophilicity scale. Thus, more experimental studies to augment the limited existing database on K(decadiene/w) are called for.
湘、安德森及其同事的一系列重要论文已经证实,在广泛的化合物范围内,磷脂双层膜通透性与 1,9-癸二烯/水分配系数之间存在很强的相关性,这提高了 K(decadiene/w)作为分子生物利用度预测因子的重要性。基于这些作者开发的 58 个数据集点,本研究报告提出了一种最佳相关性,根据辛醇/水分配系数和 Abraham 溶剂化参数中的四个参数(即 A(氢键酸度)、S(极性/极化率)、E(超额摩尔折射度)和 V(麦高恩特征体积))来预测 log(10)K(decadiene/w)。拟合数据集的均方根误差描述为 0.42,对于不在其中的化合物进行预测的可能误差为 0.49。结果表明,对于 K(decadiene/w),这种相关性误差是应用在一篇相关论文(Nitsche 和 Kasting,提交出版)中开发的磷脂双层膜通透性综合新模型的主要不确定性来源,该模型叠加了分子大小和脂质密度对癸二烯亲脂性尺度的影响。因此,需要进行更多的实验研究来扩充关于 K(decadiene/w)的有限现有数据库。