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Comprehensive Lipidome Analysis by Shotgun Lipidomics on a Hybrid Quadrupole-Orbitrap-Linear Ion Trap Mass Spectrometer

机译:Shot弹枪脂质组学在混合四极杆-Orbitrap-线性离子阱质谱仪上的全面脂质组分析

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Here we report on the application of a novel shotgun lipidomics platform featuring an Orbitrap Fusion mass spectrometer equipped with an automated nanoelectrospray ion source. To assess the performance of the platform for in-depth lipidome analysis, we evaluated various instrument parameters, including its high resolution power unsurpassed by any other contemporary Orbitrap instrumentation, its dynamic quantification range and its efficacy for in-depth structural characterization of molecular lipid species by quadrupole-based higher-energy collisional dissociation (HCD), and ion trap-based resonant-excitation collision-induced dissociation (CID). This evaluation demonstrated that FTMS analysis with a resolution setting of 450,000 allows distinguishing isotopes from different lipid species and features a linear dynamic quantification range of at least four orders of magnitude. Evaluation of fragmentation analysis demonstrated that combined use of HCD and CID yields complementary fragment ions of molecular lipid species. To support global lipidome analysis, we designed a method, termed MSALL, featuring high resolution FTMS analysis for lipid quantification, and FTMS2 analysis using both HCD and CID and ITMS3 analysis utilizing dual CID for in-depth structural characterization of molecular glycerophospholipid species. The performance of the MSALL method was benchmarked in a comparative analysis of mouse cerebellum and hippocampus. This analysis demonstrated extensive lipidome quantification covering 311 lipid species encompassing 20 lipid classes, and identification of 202 distinct molecular glycerophospholipid species when applying a novel high confidence filtering strategy. The work presented here validates the performance of the Orbitrap Fusion mass spectrometer for in-depth lipidome analysis.
机译:在这里,我们报告了一种新型shot弹枪脂质组学平台的应用,该平台以配备自动纳米电喷雾离子源的Orbitrap Fusion质谱仪为特色。为了评估用于深度脂质组分析的平台的性能,我们评估了各种仪器参数,包括其任何其他当代Orbitrap仪器都无法比拟的高分辨率能力,其动态定量范围以及对分子脂质种类进行深入结构表征的功效通过基于四极的高能碰撞解离(HCD)和基于离子阱的共振激发碰撞诱导解离(CID)。该评估表明,FTMS分析的分辨率设置为450,000,可以区分不同脂质物种的同位素,并且线性动态定量范围至少为四个数量级。碎片分析的评估表明,结合使用HCD和CID可以产生分子脂质种类的互补碎片离子。为了支持全局脂质组分析,我们设计了一种名为MSALL的方法,该方法具有用于脂类定量的高分辨率FTMS分析,使用HCD和CID的FTMS2分析以及使用双CID的ITMS3分析来对分子甘油磷脂种类进行深入的结构表征。 MSALL方法的性能在对小鼠小脑和海马的比较分析中进行了基准测试。该分析表明,广泛的脂质组定量涵盖了涵盖20个脂质类别的311种脂质,并在应用新型高可信度过滤策略时鉴定了202种不同的分子甘油磷脂。此处介绍的工作验证了Orbitrap Fusion质谱仪用于深入脂质组分析的性能。

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