Daali Y, Cherkaoui S, Christen P, Veuthey J L
Laboratory of Pharmaceutical Analytical Chemistry, University of Geneva, Switzerland.
Electrophoresis. 1999 Nov;20(17):3424-31. doi: 10.1002/(SICI)1522-2683(19991101)20:17<3424::AID-ELPS3424>3.0.CO;2-Z.
A capillary zone electrophoresis method was developed for the enantioseparation of celiprolol enantiomers, using a sulfated beta-cyclodextrin (beta-CD) as a chiral selector. The use of a coated capillary was necessary to achieve stable and reproducible enantioseparations. A central composite design was applied to optimize the method and four parameters were selected for this study: the buffer pH, the buffer concentration, the sulfated beta-CD concentration and the temperature. Resolution between celiprolol enantiomers as well as analysis time and generated current were established as responses. For each response, a model was obtained by a second-degree mathematical expression. From the models, the most favorable conditions were determined by optimizing the resolution between celiprolol enantiomers and by setting the two other responses at threshold values. Response surfaces were also used to assess the robustness of the analytical method around the optimal region. Successful results were obtained with a 52 mM acetate buffer at pH 4.0 in the presence of 3.0 mM sulfated beta-CD at a temperature of 19.5 degrees C. Under these optimized conditions, baseline separation of the celiprolol enantiomers was achieved in less than 10 min. The method showed good validation data in terms of precision, accuracy and linearity, and was found to be suitable in determining celiprolol enantiomers in pharmaceutical preparations and in biological fluids.
建立了一种毛细管区带电泳方法,用于以硫酸化β-环糊精(β-CD)作为手性选择剂对塞利洛尔对映体进行对映体拆分。使用涂层毛细管对于实现稳定且可重复的对映体拆分是必要的。采用中心复合设计对该方法进行优化,本研究选择了四个参数:缓冲液pH值、缓冲液浓度、硫酸化β-CD浓度和温度。将塞利洛尔对映体之间的分离度以及分析时间和产生的电流作为响应指标。对于每个响应指标,通过二阶数学表达式获得模型。根据这些模型,通过优化塞利洛尔对映体之间的分离度并将另外两个响应指标设定为阈值来确定最有利的条件。响应面也用于评估分析方法在最佳区域附近的稳健性。在19.5℃的温度下,于pH 4.0的52 mM乙酸盐缓冲液中加入3.0 mM硫酸化β-CD时获得了成功的结果。在这些优化条件下,不到10分钟即可实现塞利洛尔对映体的基线分离。该方法在精密度、准确度和线性方面显示出良好的验证数据,并且发现适用于测定药物制剂和生物流体中的塞利洛尔对映体。