Ng C L, Ong C P, Lee H K, Li S F
Department of Chemistry, National University of Singapore, Kent Ridge Crescent.
J Chromatogr A. 1994 Oct 7;680(2):579-86. doi: 10.1016/0021-9673(94)85157-3.
In the first part of this work, the use of capillary electrophoresis (CE) for the separation of two groups of pharmaceuticals, namely a metabolite of tamoxifen and a basic drug substance, DS1 was investigated. The effects of pH and types of modifiers, e.g. surfactant, bile salt, gamma-cyclodextrin and hydroxypropyl-beta-cyclodextrin on selectivity, separation and peak shape were studied. Besides achieving complete separation of the compounds, the CE system was capable of providing separation with significant improvements in overall peak shape of the compounds compared with HPLC. In the case of the basic drug substance DS1, validation of the CE system developed in terms of linearity, selectivity, sensitivity and reproducibility was satisfactorily performed. At the same time, a study of the sample solvent matrix effects on the separation of this group of compounds was examined. The system was successfully applied to the analysis of laboratory-synthesized samples. Good correlation was observed between CE and HPLC, although higher efficiency and faster speed of separation were obtained using the CE system developed. For the tamoxifen metabolite, special emphasis was placed on the use of CE for the separation of the pair of isomers. This was readily achieved through the introduction of gamma-cyclodextrin in the electrolyte. Resolution of at least 1.5 was obtained for the isomers using the CE method.
在本研究的第一部分,研究了使用毛细管电泳(CE)分离两组药物,即他莫昔芬的一种代谢物和一种碱性原料药DS1。研究了pH值和改性剂类型(如表面活性剂、胆盐、γ-环糊精和羟丙基-β-环糊精)对选择性、分离度和峰形的影响。除了实现化合物的完全分离外,与高效液相色谱(HPLC)相比,CE系统能够提供化合物整体峰形有显著改善的分离效果。对于碱性原料药DS1,对所开发的CE系统在线性、选择性、灵敏度和重现性方面进行的验证令人满意。同时,研究了样品溶剂基质对这组化合物分离的影响。该系统成功应用于实验室合成样品的分析。虽然使用所开发的CE系统获得了更高的分离效率和更快的分离速度,但CE和HPLC之间观察到了良好的相关性。对于他莫昔芬代谢物,特别强调使用CE分离这对对映异构体。通过在电解质中引入γ-环糊精很容易实现这一点。使用CE方法,异构体的分离度至少达到1.5。