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通过结构选择性离子淌度-质谱法进行脂质分析和脂质组学研究。

Lipid analysis and lipidomics by structurally selective ion mobility-mass spectrometry.

作者信息

Kliman Michal, May Jody C, McLean John A

机构信息

Department of Chemistry, Vanderbilt University, Nashville, TN, USA.

出版信息

Biochim Biophys Acta. 2011 Nov;1811(11):935-45. doi: 10.1016/j.bbalip.2011.05.016. Epub 2011 Jun 25.

Abstract

Recent advances in mass spectrometry approaches to the analysis of lipids include the ability to incorporate both lipid class identification with lipid structural information for increased characterization capabilities. The detailed examination of lipids and their biosynthetic and biochemical pathways made possible by novel instrumental and bioinformatics approaches is advancing research in fundamental cellular and medical studies. Recently, high-throughput structural analysis has been demonstrated through the use of rapid gas-phase separation on the basis of the ion mobility (IM) analytical technique combined with mass spectrometry (IM-MS). While IM-MS has been extensively utilized in biochemical research for peptide, protein and small molecule analysis, the role of IM-MS in lipid research is still an active area of development. In this review of lipid-based IM-MS research, we begin with an overview of three contemporary IM techniques which show great promise in being applied towards the analysis of lipids. Fundamental concepts regarding the integration of IM-MS are reviewed with emphasis on the applications of IM-MS towards simplifying and enhancing complex biological sample analysis. Finally, several recent IM-MS lipid studies are highlighted and the future prospects of IM-MS for integrated omics studies and enhanced spatial profiling through imaging IM-MS are briefly described.

摘要

质谱分析法在脂质分析方面的最新进展包括能够将脂质类别鉴定与脂质结构信息相结合,以提高表征能力。新型仪器和生物信息学方法使对脂质及其生物合成和生化途径的详细研究成为可能,这推动了基础细胞和医学研究的进展。最近,通过基于离子淌度(IM)分析技术与质谱联用(IM-MS)的快速气相分离,实现了高通量结构分析。虽然IM-MS已广泛应用于生化研究中的肽、蛋白质和小分子分析,但IM-MS在脂质研究中的作用仍是一个活跃的发展领域。在这篇关于基于脂质的IM-MS研究的综述中,我们首先概述三种当代IM技术,它们在脂质分析应用中显示出巨大潜力。回顾了关于IM-MS整合的基本概念,重点是IM-MS在简化和增强复杂生物样品分析方面的应用。最后,突出介绍了几项最近的IM-MS脂质研究,并简要描述了IM-MS在综合组学研究以及通过成像IM-MS增强空间分析方面的未来前景。

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