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金属诱导降解对药物化合物纯度测定的影响及缓解策略。

Impact of metal-induced degradation on the determination of pharmaceutical compound purity and a strategy for mitigation.

机构信息

Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, IN 46285, USA.

出版信息

J Pharm Biomed Anal. 2011 Apr 5;54(5):987-94. doi: 10.1016/j.jpba.2010.11.035. Epub 2010 Nov 30.

Abstract

Case studies are presented demonstrating how exposure to traces of transition metals such as copper and/or iron during sample preparation or analysis can impact the accuracy of purity analysis of pharmaceuticals. Some compounds, such as phenols and indoles, react with metals in the presence of oxygen to produce metal-induced oxidative decomposition products. Compounds susceptible to metal-induced decomposition can degrade following preparation for purity analysis leading to falsely high impurity results. Our work has shown even metals at levels below 0.1 ppm can negatively impact susceptible compounds. Falsely low results are also possible when the impurities themselves react with metals and degrade prior to analysis. Traces of metals in the HPLC mobile phase can lead to chromatographic artifacts, affecting the reproducibility of purity results. To understand and mitigate the impact of metal induced decomposition, a proactive strategy is presented. The pharmaceutical would first be tested for reactivity with specific transition metals in the sample solvent/diluents and in the HPLC mobile phase. If found to be reactive, alternative sample diluents and/or mobile phases with less reactive solvents or addition of a metal chelator would be explored. If unsuccessful, glassware cleaning or sample solution refrigeration could be investigated. By employing this strategy during method development, robust purity methods would be delivered to the quality control laboratories, preventing future problems from potential sporadic contamination of glassware with metals.

摘要

案例研究表明,在样品制备或分析过程中接触到痕量的过渡金属(如铜和/或铁)会如何影响药物纯度分析的准确性。一些化合物,如酚类和吲哚类,在有氧存在的情况下与金属反应,产生金属诱导的氧化分解产物。易受金属诱导分解的化合物在准备纯度分析时可能会降解,导致杂质结果偏高。我们的工作表明,即使金属含量低于 0.1ppm,也会对易受影响的化合物产生负面影响。当杂质本身与金属反应并在分析前降解时,也可能出现假低值结果。HPLC 流动相中的痕量金属会导致色谱假象,影响纯度结果的重现性。为了理解和减轻金属诱导分解的影响,提出了一种主动策略。首先,将药物在样品溶剂/稀释剂和 HPLC 流动相中与特定过渡金属进行反应性测试。如果发现有反应性,将探索使用替代的样品稀释剂和/或具有低反应性溶剂的流动相,或添加金属螯合剂。如果不成功,可以研究玻璃器皿的清洗或样品溶液的冷藏。通过在方法开发过程中采用这种策略,可以向质量控制实验室提供稳健的纯度方法,防止未来因金属偶然污染玻璃器皿而出现潜在问题。

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