Drug Metabolism and Pharmacokinetics, Genentech Inc, South San Francisco, California, USA.
Biomed Chromatogr. 2024 Mar;38(3):e5759. doi: 10.1002/bmc.5759. Epub 2023 Oct 16.
Matrix effect (ME) is commonly caused by coelution of compounds with target analytes, resulting in either suppression or enhancement of analyte ionization. Thus, to achieve the desired accuracy, precision, and sensitivity, ME needs to be evaluated and controlled during bioanalytical method development. As the application of supercritical fluid chromatography-mass spectrometry (SFC-MS) for analysis of biological samples has increased, ME using SFC-MS has also been investigated with a focus on the difference in ME in SFC-MS compared to other chromatographic techniques used for achiral separation in biological samples. Here, we provide a summary of the status of ME evaluation and mitigation in SFC-MS methods. This review presents an overview of the phenomenon of ME and methods for evaluating ME in bioanalysis. Next, the factors that can impact ME in SFC-MS-based bioanalytical methods are discussed in detail with an emphasis on SFC. A literature review of the evaluation of ME in targeted bioanalytical methods using SFC-MS is included at the end. Robust instrumentation, effective sample preparation, and superb separation selectivity are the foundations of reliable analytical methods as well as the ability to mitigate detrimental ME in SFC-MS methods.
基质效应(ME)通常是由于与目标分析物共洗脱的化合物引起的,导致分析物离子化的抑制或增强。因此,为了实现所需的准确性、精密度和灵敏度,在生物分析方法开发过程中需要评估和控制 ME。随着超临界流体色谱-质谱联用(SFC-MS)在分析生物样品中的应用增加,也已经对 SFC-MS 中的 ME 进行了研究,重点是 SFC-MS 中的 ME 与用于生物样品手性分离的其他色谱技术之间的差异。在这里,我们提供了 SFC-MS 方法中 ME 评估和缓解现状的总结。本文综述了 ME 的现象以及生物分析中评估 ME 的方法。接下来,详细讨论了可能影响基于 SFC-MS 的生物分析方法中 ME 的因素,并重点介绍了 SFC。文末还包括了使用 SFC-MS 对靶向生物分析方法中 ME 进行评估的文献综述。稳健的仪器、有效的样品制备和出色的分离选择性是可靠分析方法的基础,也是减轻 SFC-MS 方法中有害 ME 的能力的基础。