Analytical Method Development and Validation for the Analysis of Donepezil Hydrochloride and Its Related Substances Using Ultra Perfomance Liquid Chromatography

V. Mahalingam, V. Kalaivani, T. Somanathan, S. Vijayabaskar
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Abstract

A novel, economic and time-efficient reverse-phase ultra-performance liquid chromatographic (RP-UPLC) method has been developed for the analysis of Donepezil hydrochloride in the presence of both impurities and degradation products generated by forced degradation. When Donepezil hydrochloride was subjected to acid hydrolysis, oxidative, base hydrolysis, photolytic, and thermal stress, degradation was observed only in oxidative and base hydrolysis. The drug was found to be stable to other stress conditions. Successful chromatographic separation of the drug from impurities formed during synthesis and from degradation products formed under stress conditions was achieved on a Waters Acquity C18, 50 mm x 2.1mm, 1.7µ particle size column, UV detection at 286nm and a gradient elution of Trifluoroacetic acid, Acetonitrile and methanol as mobile phase. The method was validated for specificity, precision, linearity, accuracy, robustness and can be used in quality control during manufacture and for assessment of the stability samples of Donepezil hydrochloride. Total elution time was about 6 min and equilibration time of about 2 min which allowed analysis of more than 100 samples per day. The analytical method discussed in British Pharmacopeia was pH sensitive and not compatible to LC-MS analysis but the method reported in this study is more compatible to LC-MS which will be more suitable to perform LC-MS.
盐酸多奈哌齐及其相关物质超高效液相色谱分析方法的建立与验证
建立了一种新颖、经济、高效的反相超高效液相色谱(RP-UPLC)分析盐酸多奈哌齐在杂质和强制降解产物存在下的分析方法。盐酸多奈哌齐在酸水解、氧化水解、碱水解、光解和热应激条件下,仅在氧化水解和碱水解条件下发生降解。人们发现这种药物在其他压力条件下是稳定的。采用Waters Acquity C18, 50 mm x 2.1mm, 1.7µ粒径柱,286nm紫外检测,以三氟乙酸、乙腈和甲醇为流动相梯度洗脱,成功地将药物与合成过程中形成的杂质和在应力条件下形成的降解产物进行了色谱分离。该方法具有专属性、精密度、线性、准确度、鲁棒性等特点,可用于盐酸多奈哌齐制剂的质量控制和稳定性评价。总洗脱时间约为6分钟,平衡时间约为2分钟,每天可分析100多个样品。英国药典中讨论的分析方法对pH敏感,与LC-MS分析不兼容,而本研究报道的方法与LC-MS的兼容性更强,更适合进行LC-MS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。
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