Morikawa Go, Suzuka Chihiro, Shoji Atsushi, Shibusawa Yoichi, Yanagida Akio
Division of Pharmaceutical and Biomedical Analysis, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo 192-0392, Japan.
Division of Pharmaceutical and Biomedical Analysis, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo 192-0392, Japan.
J Pharm Biomed Anal. 2016 Jan 5;117:338-44. doi: 10.1016/j.jpba.2015.09.019. Epub 2015 Sep 25.
A high-throughput method for determining the octanol/water partition coefficient (P(o/w)) of a large variety of compounds exhibiting a wide range in hydrophobicity was established. The method combines a simple shake-flask method with a novel two-phase solvent system comprising an acetonitrile-phosphate buffer (0.1 M, pH 7.4)-1-octanol (25:25:4, v/v/v; AN system). The AN system partition coefficients (K(AN)) of 51 standard compounds for which log P(o/w) (at pH 7.4; log D) values had been reported were determined by single two-phase partitioning in test tubes, followed by measurement of the solute concentration in both phases using an automatic flow injection-ultraviolet detection system. The log K(AN) values were closely related to reported log D values, and the relationship could be expressed by the following linear regression equation: log D=2.8630 log K(AN) -0.1497(n=51). The relationship reveals that log D values (+8 to -8) for a large variety of highly hydrophobic and/or hydrophilic compounds can be estimated indirectly from the narrow range of log K(AN) values (+3 to -3) determined using the present method. Furthermore, log K(AN) values for highly polar compounds for which no log D values have been reported, such as amino acids, peptides, proteins, nucleosides, and nucleotides, can be estimated using the present method. The wide-ranging log D values (+5.9 to -7.5) of these molecules were estimated for the first time from their log K(AN) values and the above regression equation.
建立了一种高通量方法,用于测定多种疏水性范围广泛的化合物的正辛醇/水分配系数(P(o/w))。该方法将简单的摇瓶法与一种新型的两相溶剂体系相结合,该体系由乙腈 - 磷酸盐缓冲液(0.1 M,pH 7.4)- 正辛醇(25:25:4,v/v/v;AN体系)组成。通过在试管中进行单次两相分配,然后使用自动流动注射 - 紫外检测系统测量两相中的溶质浓度,测定了51种已报道log P(o/w)(在pH 7.4时;log D)值的标准化合物的AN体系分配系数(K(AN))。log K(AN)值与报道的log D值密切相关,这种关系可以用以下线性回归方程表示:log D = 2.8630 log K(AN) - 0.1497(n = 51)。该关系表明,对于多种高疏水性和/或亲水性化合物,其log D值(+8至 -8)可通过使用本方法测定的log K(AN)值的窄范围(+3至 -3)间接估算。此外,对于尚未报道log D值的高极性化合物,如氨基酸、肽、蛋白质、核苷和核苷酸,其log K(AN)值可以使用本方法估算。这些分子的log D值范围很广(+5.9至 -7.5),首次根据其log K(AN)值和上述回归方程进行了估算。