药物剂型中抗糖尿病药物的 RP-HPLC 方法开发与验证

Pranay Rathod, Prof. S. D. Sagrule, Dr. A. A. Gawai, Dr. K. R. Biyani
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摘要

本研究详细介绍了一种 RP-HPLC 方法的开发和验证,该方法用于估算药物剂型中的卡格列净和二甲双胍。SGLT2 抑制剂 Canagliflozin 和降糖药二甲双胍来自 Arti Drug Pvt.市售制剂 Invokamet 从当地采购。色谱分离采用 C18 色谱柱(250 x 4.6 mm,5 µm),流动相为甲醇:流动相为甲醇:水(80:20)加 0.1% 原磷酸,流速为 1.0 ml/min,检测波长为 254 nm。卡那格列净和二甲双胍的保留时间分别为 8.183 分钟和 3.633 分钟。方法验证参数包括系统适用性、准确度、精密度和稳健性。系统适用性测试确认了足够的分辨率和重复性。准确度通过 80%、100% 和 120% 浓度水平的回收率研究进行了评估,结果令人满意。日内和日间 % RSD 值均低于 2,证明了其精确性。通过改变流动相组成和流速评估了该方法的稳健性,结果表明保留时间和尾随因子保持一致。该方法选择性好、准确、精确、稳健,且运行时间短,有利于样品的快速定量。该方法适用于药物制剂中卡那利嗪和二甲双胍的常规质量控制分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and Validation RP-HPLC Method for Estimation of Antidiabetic Drugs in Pharmaceutical Dosage Form
This study details the development and validation of an RP-HPLC method for estimating Canagliflozin and Metformin in pharmaceutical dosage forms. Canagliflozin, an SGLT2 inhibitor, and Metformin, an antihyperglycemic agent, were obtained from Arti Drug Pvt. Ltd. Marketed formulation Invokamet was sourced locally. Chromatographic separation was achieved on a C18 column (250 x 4.6 mm, 5 µm) using a mobile phase of Methanol: Water (80:20) with 0.1% ortho phosphoric acid at a 1.0 ml/min flow rate and detection at 254 nm. The retention times for Canagliflozin and Metformin were 8.183 min and 3.633 min, respectively. Method validation parameters included system suitability, accuracy, precision, and robustness. System suitability tests confirmed adequate resolution and repeatability. Accuracy was evaluated through recovery studies at 80%, 100%, and 120% concentration levels, yielding satisfactory results. Precision was demonstrated with intra-day and inter-day % RSD values below 2. Robustness was assessed by varying mobile phase composition and flow rate, showing consistent retention times and tailing factors. The method proved selective, accurate, precise, and robust, with a short run time, facilitating rapid quantification of samples. It is suitable for routine quality control analysis of Canagliflozin and Metformin in pharmaceutical formulations
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