Analytical Research, CMC Japan, Pharmaceutical Science & Technology Function Unit, Eisai Co. Ltd., 1-3 Tokodai, Tsukuba, Ibaraki 300-2635, Japan.
Talanta. 2011 May 15;84(3):809-13. doi: 10.1016/j.talanta.2011.02.015. Epub 2011 Feb 19.
In this study, a frozen water phase method for logD measurement using a 96-well plate was developed. In the case of logD measurement of compounds, the problem of octanol contamination often occurs; in lipophilic compounds, the concentration of the octanol phase is much higher than that of the water phase. When the water phase is separated from the octanol phase, a small amount of octanol phase contamination could strongly influence the concentration of the water phase. To avoid this problem, the frozen water phase method was developed. The water phase was frozen in liquid nitrogen and then the unfrozen octanol phase was removed. To remove the portion of the octanol remaining on the frozen water phase, the surface of the frozen water phase was washed with octanol and water/ethanol (50/50, v/v). The validity of the method was confirmed by results of commercially available drugs at the logD range from 0 to 4. Further, it was found that this method had the ability to evaluate the pH-logD profile of compounds in the range from pH 2 to pH 12. As a result, we developed the convenient and accurate method that is effective in preventing contamination with a wide dynamic range.
本研究开发了一种使用 96 孔板的冷冻水相法来测量 logD。在测定化合物的 logD 时,经常会出现辛醇污染的问题;在亲脂性化合物中,辛醇相的浓度远高于水相。当将水相从辛醇相分离时,少量的辛醇相污染可能会强烈影响水相的浓度。为避免这个问题,开发了冷冻水相法。将水相在液氮中冷冻,然后去除未冻结的辛醇相。为了去除残留在冷冻水相上的辛醇部分,用辛醇和水/乙醇(50/50,v/v)洗涤冷冻水相的表面。通过在 logD 范围为 0 到 4 的市售药物的结果证实了该方法的有效性。此外,还发现该方法能够评估化合物在 pH 2 到 pH 12 范围内的 pH-logD 曲线。因此,我们开发了一种方便且准确的方法,该方法在防止污染方面具有广泛的动态范围。