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手性毛细管区电泳在手性拆分和西那卡塞杂质分析中的应用:在方法开发中使用质量源于设计原则。

Chiral capillary zone electrophoresis in enantioseparation and analysis of cinacalcet impurities: Use of Quality by Design principles in method development.

机构信息

Department of Chemistry "U. Schiff", University of Florence, Via U. Schiff 6, Via della Lastruccia 3-13, 50019, Sesto Fiorentino, Florence, Italy.

Department of Chemistry "U. Schiff", University of Florence, Via U. Schiff 6, Via della Lastruccia 3-13, 50019, Sesto Fiorentino, Florence, Italy.

出版信息

J Chromatogr A. 2018 Sep 21;1568:205-213. doi: 10.1016/j.chroma.2018.07.021. Epub 2018 Jul 5.

Abstract

A capillary electrophoresis method for the simultaneous determination of the enantiomeric purity and of impurities of the chiral calcimimetic drug cinacalcet hydrochloride has been developed following Quality by Design principles. The scouting phase was aimed to select the separation operative mode and to identify a suitable chiral selector. Among the tested cyclodextrins, (2-carboxyethyl)-β-cyclodextrin and (2-hydroxypropyl)-γ-cyclodextrin (HPγCyD) showed good chiral resolving capabilities. The selected separation system was solvent-modified capillary zone electrophoresis with the addition of HPγCyD and methanol. Voltage, buffer pH, methanol concentration and HPγCyD concentration were investigated as critical method parameters by a multivariate strategy. Critical method attributes were represented by enantioresolution and analysis time. A Box-Behnken Design allowed the contour plots to be drawn and quadratic and interaction effects to be highlighted. The Method Operable Design Region (MODR) was identified by applying Monte-Carlo simulations and corresponded to the multidimensional zone where both the critical method attributes fulfilled the requirements with a desired probability π≥90%. The working conditions, with the MODR limits, corresponded to the following: capillary length, 48.5cm; temperature, 18°C; voltage, 26kV (26-27kV); background electrolyte, 150mM phosphate buffer pH 2.70 (2.60-2.80), 3.1mM (3.0-3.5mM) HPγCyD; 2.00% (0.00-8.40%) v/v methanol. Robustness testing was carried out by a Plackett-Burman matrix and finally a method control strategy was defined. The complete separation of the analytes was obtained in about 10min. The method was validated following the International Council for Harmonisation guidelines and was applied for the analysis of a real sample of cinacalcet hydrochloride tablets.

摘要

已开发出一种毛细管电泳法,可根据质量设计原则同时测定手性钙敏药物盐酸西那卡塞的对映体纯度和杂质。探索阶段旨在选择分离操作模式并确定合适的手性选择器。在测试的环糊精中,(2-羧乙基)-β-环糊精和(2-羟丙基)-γ-环糊精(HPγCyD)显示出良好的手性拆分能力。所选分离系统为溶剂改性毛细管区带电泳,添加 HPγCyD 和甲醇。通过多元策略研究了电压,缓冲液 pH,甲醇浓度和 HPγCyD 浓度等关键方法参数。关键方法属性由对映体分辨率和分析时间表示。Box-Behnken 设计允许绘制轮廓图并突出二次和相互作用效应。通过应用蒙特卡罗模拟确定方法可操作设计区域(MODR),并且对应于多维区域,其中关键方法属性都以所需概率π≥90%满足要求。工作条件,具有 MODR 限制,对应于以下条件:毛细管长度,48.5cm;温度,18°C;电压,26kV(26-27kV);背景电解质,150mM 磷酸盐缓冲液 pH 2.70(2.60-2.80),3.1mM(3.0-3.5mM)HPγCyD;2.00%(0.00-8.40%)v/v 甲醇。通过 Plackett-Burman 矩阵进行稳健性测试,最后定义了方法控制策略。在大约 10min 内即可获得分析物的完全分离。该方法是根据国际协调委员会的指导原则进行验证的,并应用于盐酸西那卡塞片的实际样品分析。

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