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环糊精-MEEKC 用于分析奥昔布宁及其杂质。

Cyclodextrin-MEEKC for the analysis of oxybutynin and its impurities.

机构信息

Department of Pharmaceutical Sciences, University of Florence, Florence, Italy.

出版信息

Talanta. 2009 Dec 15;80(2):781-8. doi: 10.1016/j.talanta.2009.07.071. Epub 2009 Aug 8.

Abstract

The development of a cyclodextrin-MEEKC method for the analysis of oxybutynin and five related impurities is described. Experimental design strategies were applied in order to reach baseline separation of the compounds in a short analysis time. Mixture design made it possible to find the best composition for the microemulsion acting as pseudostationary phase, which was constituted by 89.1% 10 mM borate buffer pH 9.2, 1.7% n-heptane, 9.2% SDS/n-butanol in 1:2 ratio. The addition of (2-hydroxypropyl)-beta-cyclodextrin to the background electrolyte was found to improve analysis performance. A Doehlert design, for the factors cyclodextrin concentration and voltage, was carried out and Derringer desirability function led to the identification of 18 mM and 29 kV as the optimal values. Applying the optimum conditions, separation of all the compounds, including the enantiomers of impurity 1, was obtained in less than 12 min. The method was validated according to ICH guidelines for drug assay and determination of impurities and was applied to oxybutynin tablet analysis.

摘要

描述了一种利用环糊精-MEKC 方法分析奥昔布宁和五种相关杂质的方法。为了在短分析时间内达到化合物的基线分离,应用了实验设计策略。混合设计使得有可能找到作为伪固定相的微乳液的最佳组成,该微乳液由 89.1% 10 mM 硼酸缓冲液 pH 9.2、1.7%正庚烷、9.2%SDS/正丁醇以 1:2 的比例构成。向背景电解质中添加(2-羟丙基)-β-环糊精被发现可以改善分析性能。对环糊精浓度和电压这两个因素进行了 Doehlert 设计,Derringer 适宜性函数确定了 18 mM 和 29 kV 为最佳值。在最优条件下,不到 12 分钟即可实现所有化合物的分离,包括杂质 1 的对映异构体。该方法根据药物分析和杂质测定的 ICH 指南进行了验证,并应用于奥昔布宁片剂分析。

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