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Strategies for the assessment of matrix effect in quantitative bioanalytical methods based on HPLC-MS/MS

机译:基于HPLC-MS / MS的定量生物分析方法中基质效应评估策略

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In recent years, high-performance liquid chromatography (HPLC) with tandem mass spectrometric (MS/MS) detection has been demonstrated to be a powerful technique for the quantitative determination of drugs and metabolites in biological fluids. However, the common and early perception that utilization of HPLC-MS/MS practically guarantees selectivity is being challenged by a number of reported examples of lack of selectivity due to ion suppression or enhancement caused by the sample matrix and interferences from metabolites. In light of these serious method liabilities, questions about how to develop and validate reliable HPLC-MS/MS methods, especially for supporting long-term human pharmacokinetic studies, are being raised. The central issue is what experiments, in addition to the validation data usually provided for the conventional bioanalytical methods, need to be conducted to confirm HPLC-MS/MS assay selectivity and reliability. The current regulatory requirements include the need for the assessment and elimination of the matrix effect in the bioanalytical. methods, but the experimental procedures necessary to assess the matrix effect are not detailed. Practical, experimental approaches for studying, identifying, and eliminating the effect of matrix on the results of quantitative analyses by HPLC-MS/MS are described in this paper. Using as an example a set of validation experiments performed for one of our investigational new drug candidates, the concepts of the quantitative assessment of the "absolute" versus "relative" matrix effect are introduced. In addition, experiments for the determination of, the "true" recovery of analytes using HPLC-MS/MS are described eliminating the uncertainty about the effect of matrix on the determination of this commonly measured method parameter. Determination of the matrix effect allows the assessment of the reliability and selectivity of an existing HPLC-MS/MS method. If the results of these studies are not satisfactory, the parameters determined may provide a guide to what changes in the method need to be made to improve assay selectivity. In addition, a direct comparison of the extent of the matrix effect using two different interfaces (a heated nebulizer, HN, and ion spray, ISP) under otherwise the same sample preparation and chromatographic conditions was made. It was demonstrated that, for the investigational drug under study, the matrix effect was clearly observed when ISP interface was utilized but it was absent when the HN interface was employed. [References: 15]
机译:近年来,具有串联质谱(MS / MS)检测功能的高效液相色谱(HPLC)已被证明是定量测定生物流体中药物和代谢物的强大技术。然而,人们普遍认为,使用HPLC-MS / MS实际上可以保证选择性,这正受到许多报道的实例的挑战,这些实例由于样品基质和离子干扰以及代谢物的干扰导致离子抑制或增强而缺乏选择性。鉴于这些严重的方法责任,人们提出了有关如何开发和验证可靠的HPLC-MS / MS方法(尤其是用于支持长期人类药代动力学研究)的问题。中心问题是,除了通常为常规生物分析方法提供的验证数据外,还需要进行哪些实验以确认HPLC-MS / MS分析的选择性和可靠性。当前的法规要求包括需要评估和消除生物分析中的基质效应。方法,但没有详细评估基质效应所需的实验程序。本文介绍了用于研究,鉴定和消除基质对HPLC-MS / MS定量分析结果影响的实用实验方法。以对我们的一种研究新药候选者进行的验证实验为例,介绍了“绝对”对“相对”基质效应的定量评估概念。此外,还描述了使用HPLC-MS / MS确定分析物“真实”回收率的实验,从而消除了确定该常用方法参数时基质影响的不确定性。确定基质效应可以评估现有HPLC-MS / MS方法的可靠性和选择性。如果这些研究的结果不令人满意,则确定的参数可能会指导需要改变方法以提高测定的选择性。此外,在其他样品制备和色谱条件相同的情况下,使用两种不同的界面(加热的雾化器,HN和离子喷雾器,ISP)直接比较了基质效应的程度。结果表明,对于所研究的研究药物,当使用ISP接口时可以清楚地观察到基质效应,而当使用HN接口时则没有。 [参考:15]

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