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Application of a fluorous derivatization method for characterization of glutathione-trapped reactive metabolites with liquid chromatography-tandem mass spectrometry analysis

机译:一种荧光衍生化方法在液相色谱 - 串联质谱分析中表征谷胱甘肽截图反应性代谢物的表征

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The glutathione (GSH) trapping assay is commonly utilized for the screening and characterization of reactive metabolites produced by drug metabolism. This study describes a fluorous derivatization method for a more sensitive and selective analysis of reactive metabolites trapped by GSH using liquid chromatography-tandem mass spectrometry (LC-MS/MS). In this study, the GSH-trapped reactive metabolites, which were obtained after incubation of the test compounds with human liver microsome (HLM) in the presence of GSH and NADPH, were derivatized using the perfluoroalkylamine reagent through oxazolone chemistry. Since this reaction enabled the selective modification of the cz-carboxyl group in GSH, the structural compositions of the metabolites were not affected by the derivatization. Furthermore, the selective analysis of the resulting derivatives could be performed using perfluoroalkyl-modified stationary phase LC separation via the interaction between the perfluoroalkyl-containing compounds, such as fluorous affinity, followed by detection with the precursor ion and/or enhanced product ion scan modes in MS/MS. Finally, we demonstrated the applicability of this method by analyzing perfluoroalkyl derivatives of some drug metabolites trapped by GSH in HLM incubation. (C) 2020 Elsevier B.V. All rights reserved.
机译:谷胱甘肽(GSH)捕获测定通常用于筛选和表征药物代谢产生的反应性代谢物。本研究描述了使用液相色谱 - 串联质谱(LC-MS / MS)通过GSH捕获的反应性代谢物的更敏感和选择性分析的流衍生化方法。在该研究中,在GSH和NADPH存在于GSH和NADPH的存在之后获得的GSH截留的反应性代谢物,其在GSH和NADPH的存在下使用全氟烷基胺试剂衍生化。由于该反应使GSH中的CZ-羧基的选择性改性,代谢物的结构组合物不受衍生化的影响。此外,通过通过在含全氟烷基化合物(例如流氟化合物之间的相互作用)的相互作用,例如流氟亲和力,然后用前体离子和/或增强的产品离子扫描模式检测,可以使用全氟烷基改性的固定相LC分离进行所得衍生物的选择性分析。在MS / MS中。最后,我们通过分析GSH在HLM孵育中分析了一些药物代谢物的全氟烷基衍生物来证明了这种方法的适用性。 (c)2020 Elsevier B.v.保留所有权利。

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