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在使用酸性流动相条件下,反相液相色谱柱的顺反异构体选择性的变化。

Changes in the cis-trans isomer selectivity of a reversed-phase liquid chromatography column during use with acidic mobile phase conditions.

机构信息

Department of Chemistry, Gustavus Adolphus College, 800W College Ave, St Peter, MN 56082 USA.

Chemical Process Development, Bristol Myers Squibb, 1 Squibb Dr, New Brunswick, NJ 08903 USA.

出版信息

J Chromatogr A. 2023 Oct 11;1708:464371. doi: 10.1016/j.chroma.2023.464371. Epub 2023 Sep 7.

Abstract

Reversed-phase liquid chromatography (RPLC) is the analytical tool of choice for monitoring process-related organic impurities and degradants in pharmaceutical materials. Its popularity is due to its general ease-of-use, high performance, and reproducibility in most cases, all of which have improved as the technique has matured over the past few decades. Nevertheless, in our work we still occasionally observe situations where RPLC methods are not as robust as we would like them to be in practice due to variations in stationary phase chemistry between manufactured batches (i.e., lot-to-lot variability), and changes in stationary phase chemistry over time. Over the last three decades several models of RPLC selectivity have been developed and used to quantify and rationalize the effects of numerous parameters (e.g., effect of bonded phase density) on separation selectivity. The Hydrophobic Subtraction Model (HSM) of RPLC selectivity has been used extensively for these purposes; currently the publicly available database of column parameters contains data for 750 columns. In this work we explored the possibility that the HSM could be used to better understand the chemical basis of observed differences in stationary phase selectivity when they occur - for example, lot-to-lot variations or changes in selectivity during column use. We focused our attention on differences and changes in the observed selectivity for a pair of cis-trans isomers of a pharmaceutical intermediate. Although this is admittedly a challenging case, we find that the observed changes in selectivity are not strongly correlated with HSM column parameters, suggesting that there is a gap in the information provided by the HSM with respect to cis-trans isomer selectivity specifically. Further work with additional probe molecules showed that larger changes in cis-trans isomer selectivity were observed for pairs of molecules with greater molecular complexity, compared to the selectivity changes observed for simpler molecules. These results do not provide definitive answers to questions about the chemical basis of changes in stationary phase chemistry that lead to observed differences in cis-trans isomer selectivity. However, the results do provide important insights about the critical importance of molecular complexity when choosing probe compounds and indicate opportunities to develop improved selectivity models with increased sensitivity for cis-trans isomer selectivity.

摘要

反相液相色谱(RPLC)是监测药物材料中与过程相关的有机杂质和降解产物的首选分析工具。由于其在大多数情况下易于使用、性能高且重现性好,因此在过去几十年中随着技术的成熟而广受欢迎。然而,在我们的工作中,我们仍然偶尔会遇到一些情况,即由于制造批次之间固定相化学性质的变化(即批间变异性)以及固定相化学性质随时间的变化,RPLC 方法并不像我们希望的那样稳健。在过去的三十年中,已经开发并使用了几种 RPLC 选择性模型来量化和合理化许多参数(例如键合相密度的影响)对分离选择性的影响。反相液相色谱选择性的疏水扣除模型(HSM)已被广泛用于这些目的;目前,公开的柱参数数据库包含 750 根柱的数据。在这项工作中,我们探讨了 HSM 可以用于更好地理解观察到的固定相选择性差异的化学基础的可能性,例如批间变化或柱使用过程中的选择性变化。我们将注意力集中在一对药物中间体顺反异构体的观察到的选择性差异和变化上。尽管这确实是一个具有挑战性的案例,但我们发现选择性的观察变化与 HSM 柱参数没有很强的相关性,这表明 HSM 提供的信息在顺反异构体选择性方面存在差距。用其他探针分子进行的进一步研究表明,与观察到的简单分子的选择性变化相比,具有更大分子复杂性的分子对的顺反异构体选择性变化更大。这些结果并没有为导致观察到的顺反异构体选择性差异的固定相化学变化的化学基础问题提供明确的答案。然而,结果确实提供了关于在选择探针化合物时分子复杂性的重要性的重要见解,并表明有机会开发具有更高顺反异构体选择性灵敏度的改进选择性模型。

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