School of Pharmaceutical Sciences, University of Geneva, Quai Ernest Ansermet 30, CH-1211, Geneva 4.
Chem Biodivers. 2009 Nov;6(11):1828-36. doi: 10.1002/cbdv.200900115.
Different experimental strategies using short columns in both conventional liquid chromatography (HPLC) and ultra-high pressure liquid chromatography (UHPLC) were evaluated to allow, for the first time with these techniques, the lipophilicity determination of compounds with log P>5. Various organic modifiers, stationary phases, and elution modes were tested on 14 rigid compounds with a CLogP between 5 and 8, and 38 compounds with log P(oct) from 0 to 5. The best results in HPLC were obtained with the 20-mm Discovery RP Amide C16 stationary phase in isocratic mode using MeOH as organic modifier. To improve analysis time, the UHPLC approach was then evaluated. Consequently, a generic method was developed with a 30-mm Acquity BEH Shield RP18 column in gradient mode using MeOH as organic modifier, allowing a fourfold gain of time compared to the HPLC method, for the highly lipophilic compounds tested. Finally, the most rapid and accurate results were obtained with a 10-mm Hypersil GOLD Javelin HTS stationary phase in UHPLC, enabling an eightfold gain of time compared to the HPLC method.
分别采用传统高效液相色谱(HPLC)和超高效液相色谱(UHPLC)中的短柱实验策略,首次允许使用这些技术测定 log P>5 的化合物的亲脂性。对 14 种刚性化合物(CLogP 在 5 到 8 之间)和 38 种 log P(辛醇)从 0 到 5 的化合物进行了各种有机改性剂、固定相和洗脱模式的测试。在等度模式下使用 20mm Discovery RP Amide C16 固定相和甲醇作为有机改性剂时,在 HPLC 中获得了最佳结果。为了缩短分析时间,然后评估了 UHPLC 方法。因此,使用甲醇作为有机改性剂,在梯度模式下,开发了一种通用方法,用于 30mm Acquity BEH Shield RP18 柱,与 HPLC 方法相比,对测试的高度亲脂性化合物可提高四倍的分析时间。最后,在 UHPLC 中使用 10mm Hypersil GOLD Javelin HTS 固定相可获得最快和最准确的结果,与 HPLC 方法相比可提高八倍的分析时间。