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Mass defect filter technique and its applications to drug metabolite identification by high-resolution mass spectrometry

机译:质量缺陷过滤器技术及其在高分辨率代谢物鉴定中的应用

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Identification of drug metabolites by liquid chromatography/mass spectrometry (LC/MS) involves metabolite detection in biological matrixes and structural characterization based on product ion spectra. Traditionally, metabolite detection is accomplished primarily on the basis of predicted molecular masses or fragmentation patterns of metabolites using triple-quadrupole and ion trap mass spectrometers. Recently, a novel mass defect filter (MIDIF) technique has been developed, which enables high-resolution mass spectrometers to be utilized for detecting both predicted and unexpected drug metabolites based on narrow, well-defined mass defect ranges for these metabolites. This is a new approach that is completely different from, but complementary to, traditional molecular mass- or MS/MS fragmentation-based LC/MS approaches. This article reviews the mass defect patterns of various classes of drug metabolites and the basic principles of the MDF approach. Examples are given on the applications of the MDF technique to the detection of stable and chemically reactive metabolites in vitro and in vivo. Advantages, limitations, and future applications are also discussed on MDF and its combinations with other data mining techniques for the detection and identification of drug metabolites. Copyright
机译:通过液相色谱/质谱(LC / MS)鉴定药物代谢物涉及在生物基质中检测代谢物,并基于产物离子光谱进行结构表征。传统上,使用三重四极杆和离子阱质谱仪主要根据预测的代谢物分子质量或片段化模式完成代谢物检测。近来,已经开发了一种新颖的质量缺陷过滤器(MIDIF)技术,该技术使高分辨率质谱仪可用于基于狭窄,明确定义的这些代谢物的质量缺陷范围来检测预测的和未预期的药物代谢物。这是一种新方法,与传统的基于分子质量或MS / MS片段化的LC / MS方法完全不同,但又与之互补。本文回顾了各种类别的药物代谢物的质量缺陷模式以及MDF方法的基本原理。给出了将MDF技术应用于体外和体内检测稳定和化学反应性代谢物的实例。还讨论了MDF及其与其他数据挖掘技术的组合,用于检测和鉴定药物代谢物的优势,局限性和将来的应用。版权

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