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首页> 外文期刊>Chromatographia >Quality by Design-Based Development of a Chiral Capillary Electrophoresis Method for the Determination of Dextrodropropizine and 1-Phenylpiperazine as Impurities of Levodropropizine
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Quality by Design-Based Development of a Chiral Capillary Electrophoresis Method for the Determination of Dextrodropropizine and 1-Phenylpiperazine as Impurities of Levodropropizine

机译:基于设计的细胞毛细管电泳方法的高质量,用于测定右旋丙醇和1-苯基哌嗪作为左二丙二嗪的杂质

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摘要

Based on a quality by design approach, a capillary electrophoresis method for the simultaneous determination of dextrodropropizine and the achiral precursor 1-phenylpiperazine in levodropropizine was developed. The analytical target profile was defined as a method allowing the simultaneous determination below the 0.5% level within a maximum analysis time of 20 min with an acceptable precision and accuracy. Based on scouting experiments, sulfated beta-cyclodextrin in a 25 mM potassium phosphate buffer, pH 7.0, was selected. Subsequently, cyclodextrin concentration, propan-2-ol concentration, capillary temperature and applied voltage were identified as critical process parameters using a full factorial design followed by a central composite face-centered design for the final optimization of cyclodextrin concentration and temperature. The design space was obtained by Monte Carlo simulations. The final method comprised a 40/50.2 cm effective/total length, 75 mu m inner diameter fused-silica-capillary, 25 mM potassium phosphate buffer, pH 7.0, containing 23.5 mg mL(-1) sulfated beta-cyclodextrin and 10% (v/v) propan-2-ol as background electrolyte, 16.3 degrees C capillary temperature and an applied voltage of 16.5 kV. The robustness was assessed using a Plackett-Burman design followed by method validation. Finally, the method was applied to the analysis levodropropizine reference substance of the European Pharmacopoeia and a liquid dosage form.
机译:基于通过设计方法的质量,开发了一种毛细管电泳方法,用于同时测定乙二醇丙醇嗪的甲氧二丙烯嗪和甲基哌嗪的同时测定。分析目标轮廓定义为允许在20分钟的最大分析时间内同时测定的方法,其具有可接受的精度和精度。基于侦察实验,选择硫酸化β-环糊精在25mM磷酸钾缓冲液中,pH7.0。随后,使用完整的因子设计将环糊精浓度,丙酮-2-浓度,毛细管温度和施加的电压鉴定为关键工艺参数,然后是中央复合脸部中心设计,用于最终优化环糊精浓度和温度。通过蒙特卡罗模拟获得设计空间。最终方法包括40 / 50.2cm的有效/总长度,75μm内直径熔融二氧化硅 - 毛细管,25mm磷酸钾缓冲液,pH7.0,含有23.5mg ml(-1)硫酸化β-环糊精和10%( v / v)丙烷-2-OL作为背景电解质,16.3摄氏度,毛细管温度和施加电压为16.5 kV。使用Plackett-Burman设计进行评估鲁棒性,然后进行方法验证。最后,将该方法应用于欧洲药典和液体剂型的分析左二丙丙嗪参考物质。

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