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Globally Optimized Targeted Mass Spectrometry: Reliable Metabolomics Analysis with Broad Coverage

机译:全球优化的目标质谱:覆盖范围广泛的可靠的代谢组学分析

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摘要

Targeted detection is one of the most important methods in mass spectrometry (MS)-based metabolomics; however, its major limitation is the reduced metabolome coverage that results from the limited set of targeted metabolites typically used in the analysis. In this study we describe a new approach, globally optimized targeted (GOT)-MS, that combines many of the advantages of targeted detection and global profiling in metabolomics analysis, including the capability to detect unknowns, broad metabolite coverage, and excellent quantitation. The key step in GOT-MS is a global search of precursor and product ions using a single liquid chromatography–triple quadrupole (LC–QQQ) mass spectrometer. Here, focused on measuring serum metabolites, we obtained 595 precursor ions and 1 890 multiple reaction monitoring (MRM) transitions, under positive and negative ionization modes in the mass range of 60–600 Da. For many of the MRMs/metabolites under investigation, the analytical performance of GOT-MS is better than or at least comparable to that obtained by global profiling using a quadrupole-time-of-flight (Q-TOF) instrument of similar vintage. Using a study of serum metabolites in colorectal cancer (CRC) as a representative example, GOT-MS significantly outperformed a large targeted MS assay containing ∼160 biologically important metabolites and provided a complementary approach to traditional global profiling using Q-TOF-MS. GOT-MS thus expands and optimizes the detection capabilities for QQQ-MS through a novel approach and should have the potential to significantly advance both basic and clinical metabolic research.
机译:靶向检测是基于质谱(MS)的代谢组学中最重要的方法之一。然而,它的主要局限性是由于分析中通常使用的目标代谢物有限而导致代谢组覆盖率降低。在这项研究中,我们描述了一种新方法,即全局优化的靶向(GOT)-MS,它结合了代谢组学分析中靶向检测和全局分析的许多优点,包括检测未知物的能力,广泛的代谢物覆盖范围和出色的定量分析。 GOT-MS的关键步骤是使用单个液相色谱-三重四极杆(LC-QQQ)质谱仪对前体离子和产物离子进行全局搜索。在这里,着重于测量血清代谢物,我们获得了595个前体离子和1 890个多反应监测(MRM)跃迁,在正负离子化模式下质量数为60-600 Da。对于许多正在研究的MRM /代谢物,GOT-MS的分析性能优于或至少可与使用类似年份的四极飞行时间(Q-TOF)仪器进行的全局分析相比。以大肠癌(CRC)中血清代谢物的研究为代表,GOT-MS明显优于包含约160种重要生物代谢物的大型靶向MS分析,并为使用Q-TOF-MS进行传统全球概况分析提供了一种补充方法。因此,GOT-MS通过一种新颖的方法扩展并优化了QQQ-MS的检测能力,并且应该具有极大地促进基础代谢和临床代谢研究的潜力。

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