基于多糖的手性固定相手性LC-MS分离原料药中(+)和(-)-盐酸美贝弗林对映体方法的建立与验证

B. Gowramma, S. Ramachandran, Kaviarasan Lakshmanan, R. Kalirajan, S. N. Meyyanathan, G. Swaminathan
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摘要

摘要:本研究旨在建立一种简便、特异、灵敏、精确的液相色谱-质谱法测定制剂中美贝弗林对映体的方法,并按照ICH指南进行验证。色谱柱为Phenomenex®Lux Cellulose 1 (250 mm × 4.6 mm i.d, 5μm粒径),流动相为乙腈:10 mm醋酸铵(85:15),流速为0.8 mL/min。在LC-MS谱分析中,Mebeverine标准溶液在m/z为430.70处出现主峰,归属于Mebeverine的[m +H]离子。Mebeverine对映体(±)在15 ~ 75 ng /mL范围内呈线性,相关系数(r2 = 0.999)。(+) Mebeverine的检出限为5 ng/mL, (-) Mebeverine的定量限为15 ng/mL。对片剂中美贝弗林的回收率进行了研究,回收率为99.16%。Mebeverine标准液和流动相稳定时间至少为48h。Mebeverine对映体分离效果良好,平均保留时间分别为1.16 min和1.20 min。结果表明,该方法可靠、准确、精密度高,适用于片剂型美贝弗林对映体的分析。图形抽象
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Development and validation of a chiral LC-MS method for the enantiomeric resolution of (+) and (-)-Mebeverine Hydrochloride in bulk drug by using polysaccharide-based chiral stationary phase
Abstract The aim of this study was to develop a simple, specific, sensitive and precise LC-MS method for the determination of mebeverine enantiomers in pharmaceutical formulations and it was validated as per ICH guidelines. The chromatographic separation was achieved on Phenomenex® Lux Cellulose 1 (250 mm x 4.6 mm i.d, 5μm particle size) column using mobile phase system containing acetonitrile: 10 mM ammonium acetate (85:15) at the flow rate of 0.8 mL/min. In the spectral investigation by LC-MS, the standard solution of Mebeverine showed major peak at m/z of 430.70, which was assigned to the [M+H] ion of Mebeverine. The described method was linear over the range of 15–75 ng /mL for (±) Mebeverine enantiomers with a correlation coefficient (r2 = 0.999). Detection limits and quantification limits of (+) Mebeverine and (-) Mebeverine were found to be 5 ng/mL and 15 ng/mL respectively. The recovery study of mebeverine from tablet formulation was found to be 99.16%. Mebeverine standard solution and mobile phase were found to be stable for at least 48h. The Mebeverine enantiomers were well resolved with mean retention times of about 1.16 min and 1.20 min respectively. The developed method was extensively validated and proved to be robust, accurate, precise, and suitable for analysis of Mebeverine enantiomers in tablet dosage form. GRAPHICAL ABSTRACT
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