首页> 外文期刊>Acta pharmaceutica: a quarterly journal of Croatian Pharmaceutical Society and Slovenian Pharmaceutical Society, dealing with all branches of pharmacy and allied sciences >Chemometrically assissted optimization and validation of RP-HPLC method for the analysis of itraconazole and its impurities
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Chemometrically assissted optimization and validation of RP-HPLC method for the analysis of itraconazole and its impurities

机译:化学计量学方法测定伊曲康唑及其杂质的RP-HPLC方法的优化与验证

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This paper presents the chemometrically assisted optimization and validation of the RP-HPLC method intended for the quantitative analysis of itraconazole and its impurities in pharmaceutical dosage forms. To reach the desired chromatographic resolution with a limited number of experiments in a minimum amount of time, Box- -Behnken design was used to simultaneously optimize some important chromatographic parameters, such as the acetonitrile content in the mobile phase, pH of the aqueous phase and the column temperature. Separation between itraconazole and impurity F was identified as critical and selected as a response during the optimization. The set optimal mobile phase composition was acetonitrile/ water pH 2.5 adjusted with o-phosphoric acid (50:50, V/V). Separations were performed on a Zorbax Eclipse XDB-C18, 4.6 × 150 mm, 5 μm particle size column with the flow rate 1 mL min-1, column temperature set at 30 C and UV detection at 256 nm. The established method was then subjected to method validation and the required validation parameters were tested. For the robustness evaluation, fractional factorial 24-1 design was utilized and factors that might significantly affect the system performance were defined. As other validation parameters were also found to be suitable, the possibility to apply the proposed method for the determination of itraconazole, its impurities B and F in any laboratory under different circumstances has been proven.
机译:本文介绍了化学计量学上用于定量分析药物剂型中伊曲康唑及其杂质的RP-HPLC方法的优化和验证。为了在最短的时间内通过有限的实验次数达到所需的色谱分离度,采用Box-Behnken设计同时优化一些重要的色谱参数,例如流动相中的乙腈含量,水相的pH和柱温。伊曲康唑和杂质F之间的分离被确定为关键,并在优化过程中被选作响应。设定的最佳流动相组成是用邻磷酸(50:50,V / V)调节的乙腈/水pH 2.5。分离是在Zorbax Eclipse XDB-C18、4.6×150 mm,5μm粒径的色谱柱上进行的,流速为1 mL min-1,色谱柱温度设置为30 C,UV检测值为256 nm。然后对建立的方法进行方法验证,并测试所需的验证参数。为了进行鲁棒性评估,使用了分数阶24-1设计,并定义了可能会严重影响系统性能的因素。由于还发现其他验证参数也很合适,因此已经证明了在不同情况下在任何实验室中将拟议方法用于测定伊曲康唑,其杂质B和F的可能性。

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