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基于质量源于设计的毛细管电泳测定左美丙嗪及其砜氧化物作为左美丙嗪杂质的方法。

A quality by design-based approach to a capillary electrokinetic assay for the determination of dextromepromazine and levomepromazine sulfoxide as impurities of levomepromazine.

机构信息

Department of Pharmaceutical and Medicinal Chemistry, Friedrich Schiller University Jena, Philosophenweg 14, 07743, Jena, Germany.

Department of Pharmaceutical and Medicinal Chemistry, Friedrich Schiller University Jena, Philosophenweg 14, 07743, Jena, Germany.

出版信息

J Pharm Biomed Anal. 2017 Nov 30;146:402-409. doi: 10.1016/j.jpba.2017.09.003. Epub 2017 Sep 8.

Abstract

Using a quality by design approach, a capillary electrophoresis method for the simultaneous determination of dextromepromazine and the oxidation product levomepromazine sulfoxide in levomepromazine was developed. The analytical target profile was defined that the method should be able to quantify 0.1% of both impurities with a precision of  ≤10%. Hydroxypropyl-γ-cyclodextrin was used as chiral selector. The critical process parameters cyclodextrin concentration, buffer pH and concentration as well as temperature and applied voltage were studied using a fractional factorial resolution V+ design for defining the knowledge space. A central composite face centered design was used as response surface methodology for deriving the design space by Monte Carlo simulations. The selected working point was a 100mM citric acid buffer, pH 2.85, containing 3.6mg/mL hydroxypropyl-γ-cyclodextrin, a temperature of 15°C and a voltage of 25kV. Robustness was estimated using a Plackett-Burman design. The method was subsequently validated in the relative concentration range of 0.1%-1.0% of the impurities for a solution containing 0.25mg/mL levomepromazine. The method was applied to the determination of the purity of the reference substance of the European Pharmacopoeia and of the drug in a commercial injection solution.

摘要

采用质量源于设计理念,开发了一种同时测定左美丙嗪中左美普罗嗪和氧化产物左美普罗嗪亚砜的毛细管电泳法。分析目标概况定义为该方法应能够定量测定两种杂质的 0.1%,精密度应≤10%。羟丙基-γ-环糊精被用作手性选择剂。使用分因子分辨率 V+设计研究了环糊精浓度、缓冲液 pH 值和浓度以及温度和施加电压等关键工艺参数,以定义知识空间。使用中心复合面心设计作为响应面法通过蒙特卡罗模拟得出设计空间。选择的工作点为 100mM 柠檬酸缓冲液,pH 值 2.85,含 3.6mg/mL 羟丙基-γ-环糊精,温度为 15°C,电压为 25kV。使用 Plackett-Burman 设计评估稳健性。该方法随后在含有 0.25mg/mL 左美普罗嗪的溶液中,杂质相对浓度范围为 0.1%-1.0%的情况下进行了验证。该方法应用于测定欧洲药典对照品和商业注射溶液中药物的纯度。

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