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首页> 外文期刊>Chromatographia >Development of Stereoselective Method for the Quantification of Stereoisomers and Geometrical Isomer of Pitavastatin Calcium by Enhanced Approach
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Development of Stereoselective Method for the Quantification of Stereoisomers and Geometrical Isomer of Pitavastatin Calcium by Enhanced Approach

机译:增强方法定量测定匹伐他汀钙立体异构体和几何异构体的立体选择方法的建立

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摘要

A new, simple, selective, and robust normalphase method for the accurate quantification of all the four stereoisomers and one geometrical isomer of pitavastatin calcium (PIT) in drug substances and drug products was developed. The method is capable of quantifying all the isomers in the presence of other related substances. Separation was achieved using immobilized amylose stationary phase (Chiralpak IA) with a mixture of n-heptane, 1-butanol, methanol, formic acid, and diethylamine. Multivariate analysis and statistical tools were used to develop this highly robust method in a short span of time. A central composite design was employed to study the main effects and interactions of the independent variables. The method exhibited consistent, high-quality recoveries [97.3 ± 1.7 to 99.3 ± 2.1 (mean ± RSD)] with a high precision for all the isomers. Linear regression analysis revealed an excellent correlation between peak responses and concentrations (r~2 values of 0.9990–0.9998) for the isomers. The method is sensitive enough to quantify any isomers above 0.02 % and detect any isomer above 0.006 % in PIT. Forced degradation studies proved that the method is specific for isomers. m/z values were determined for the major degradants and their possible structures were proposed on the basis of the known reactivity.
机译:开发了一种新的,简单的,选择性的和鲁棒的正相方法,用于准确定量原料药和药物产品中匹伐他汀钙(PIT)的所有四种立体异构体和一个几何异构体。该方法能够在存在其他相关物质的情况下定量所有异构体。使用固定的直链淀粉固定相(Chiralpak IA)与正庚烷,1-丁醇,甲醇,甲酸和二乙胺的混合物进行分离。多变量分析和统计工具被用来在短时间内开发这种高度可靠的方法。采用中央复合设计来研究自变量的主要作用和相互作用。该方法表现出一致的高质量回收率[97.3±1.7至99.3±2.1(平均值±RSD)],并且对所有异构体均具有较高的精密度。线性回归分析显示,异构体的峰响应与浓度(r〜2值为0.9990–0.9998)之间具有极好的相关性。该方法非常灵敏,可以定量测定PIT中高于0.02%的任何异构体并检测高于0.006%的任何异构体。强迫降解研究证明该方法对异构体具有特异性。确定了主要降解物的m / z值,并根据已知的反应性提出了其可能的结构。

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