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在分析方法开发和验证过程中,规避小分子量分析物在溶液中稳定性受玻璃小瓶和稀释剂影响。

Circumventing glass vial and diluent effects on solution stability of small molecule analytes during analytical method development and validation.

机构信息

Chemical Process Development, Global Product Development and Supply, Bristol Myers Squibb Company, New Brunswick, New Jersey, USA.

Analytical Strategy & Operations, Global Product Development and Supply, Bristol Myers Squibb Company, Summit, New Jersey, USA.

出版信息

J Pharm Biomed Anal. 2022 May 10;213:114676. doi: 10.1016/j.jpba.2022.114676. Epub 2022 Feb 24.

Abstract

Solution stability of analytes plays an important part in qualitative analysis, especially in conducting accurate, quantitative analyses. Sample diluents and glass vials as sample containers for HPLC analyses can play a critical role and should be evaluated during chromatographic method development. We have encountered several instances during pharmaceutical development where the glass vial/diluent combination has negatively impacted method performance. One case encompasses adsorption of piperazine, a secondary amine, to non-silanized glass vials, resulting in recovery failures during analytical method transfer. Two further cases describe the propensity for peracetylated C-aryl glucosides being subject chemical transformations relating to sample diluent. The first reports transesterification with methanol-based diluents and the second describes hydrolysis with acetonitrile/water diluents mediated by the mild alkalinity of certain brands of Type I borosilicate vials. A final case explores development of a related substance method, it was found that an impurity was prone to hydrolysis and another impurity with a primary amine tended to be adsorbed on glass vials. Diluents of appropriate pH and buffer strength were strategically selected to neutralize the mild alkalinity of the glass vials as well as to mitigate adsorption of the amine analyte on glass vials. As a result, excellent sample stability and reproducibility were achieved, regardless the quality and brand of Type I glass vials used. Here we present four case studies that demonstrate how the negative impact of Type I glass vials on those susceptible analytes can be effectively eliminated by using appropriate sample diluents, which is essential to ensure accurate analytical data and provide for a smooth method validation and transfer.

摘要

分析物的溶液稳定性在定性分析中起着重要作用,特别是在进行准确的定量分析时。用于 HPLC 分析的样品稀释剂和玻璃小瓶作为样品容器可以发挥关键作用,在开发色谱方法时应进行评估。在药物开发过程中,我们遇到了几种情况,其中玻璃小瓶/稀释剂组合对方法性能产生了负面影响。一种情况包括哌嗪(一种仲胺)吸附到非硅烷化玻璃小瓶上,导致分析方法转移过程中回收率失败。另外两种情况描述了乙酰化 C-芳基葡萄糖苷易发生与样品稀释剂有关的化学转化的倾向。第一种情况报告了与甲醇基稀释剂的酯交换,第二种情况描述了在某些品牌的 I 型硼硅酸盐小瓶的温和碱性的介导下,用乙腈/水稀释剂进行水解。最后一个案例探讨了相关物质方法的开发,发现一种杂质易水解,另一种带有伯胺的杂质易吸附在玻璃小瓶上。有策略地选择了适当 pH 值和缓冲强度的稀释剂,以中和玻璃小瓶的温和碱性,并减轻胺分析物在玻璃小瓶上的吸附。结果,无论使用哪种 I 型玻璃小瓶的质量和品牌,都实现了出色的样品稳定性和重现性。在这里,我们提出了四个案例研究,展示了如何通过使用适当的样品稀释剂有效消除 I 型玻璃小瓶对那些易受影响的分析物的负面影响,这对于确保准确的分析数据以及顺利进行方法验证和转移至关重要。

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