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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Chemometrically assisted development and validation of LC-MS/MS method for the analysis of potential genotoxic impurities in meropenem active pharmaceutical ingredient
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Chemometrically assisted development and validation of LC-MS/MS method for the analysis of potential genotoxic impurities in meropenem active pharmaceutical ingredient

机译:Meropenem活性药物成分中潜在遗传毒性杂质分析LC-MS / MS方法的化学辅助开发和验证

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摘要

A sensitive Liquid Chromatography tandem mass spectrometry (LC MS/MS) method was developed and validated for the quantitative analysis of three potential genotoxic impurities (318BP, M9, S5) in meropenem Active Pharmaceutical Ingredient (API). Due to the requirement for LOD values in ppb range, a high concentration of meropenem API (30 ing/mL) had to be injected. Therefore, efficient determination of meropenem from its impurities became a critical aim of this study, in order to divert meropenem to waste, via a switching valve. After the selection of the important factors affecting analytes' elution, a Box-Behnken design was utilized to set the plan of experiments conducted with UV detector. As responses, the separation factors between the last eluting impurity and meropenem, as well as meropenem retention factor k were used. Grid point search methodology was implemented aiming to obtain the optimal conditions that simultaneously comply to the conflicted criteria. Optimal mobile phase consisted of ACN, methanol and 0.09% HCOOH at a ratio 71/3.5/15.5 v/v. All impurities and internal standard omeprazole were eluted before 7.5 min and at 8.0 min the eluents were directed to waste. The protocol was transferred to LC-MS/MS and validated according to ICH guidelines. (C) 2017 Elsevier B.V. All rights reserved.
机译:敏感的液相色谱串联质谱(LC MS / MS)方法开发并验证,用于在Meropenem活性药物成分(API)中的三种潜在遗传毒性杂质(318bp,m9,s5)的定量分析。由于PPB范围内的LOD值的要求,必须注入高浓度的梅洛宁API(30 ing / mL)。因此,从其杂质中有效测定梅洛宁成为本研究的关键目标,以便通过切换阀转移梅洛涅克来浪费。在选择影响分析物洗脱的重要因素之后,利用了一个盒式设计,将用UV检测器进行实验计划。作为反应,使用最后一种洗脱杂质和梅洛宁之间的分离因子,以及梅洛涅克保留因子k。实施网格点搜索方法旨在获得同时符合冲突标准的最佳条件。最佳流动相由ACN,甲醇和0.09%HCOOH组成,其比例71 / 3.5 / 15.5 V / v。在7.5分钟之前洗脱所有杂质和内标奥美唑并在8.0分钟,洗脱液涉及废物。该方案被转移到LC-MS / MS并根据ICH指南验证。 (c)2017年Elsevier B.V.保留所有权利。

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