Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10842895 | Progress in Lipid Research | 2013 | 25 Pages |
Abstract
Mass spectrometry is now an indispensable tool for lipid analysis and is arguably the driving force in the renaissance of lipid research. In its various forms, mass spectrometry is uniquely capable of resolving the extensive compositional and structural diversity of lipids in biological systems. Furthermore, it provides the ability to accurately quantify molecular-level changes in lipid populations associated with changes in metabolism and environment; bringing lipid science to the “omics” age. The recent explosion of mass spectrometry-based surface analysis techniques is fuelling further expansion of the lipidomics field. This is evidenced by the numerous papers published on the subject of mass spectrometric imaging of lipids in recent years. While imaging mass spectrometry provides new and exciting possibilities, it is but one of the many opportunities direct surface analysis offers the lipid researcher. In this review we describe the current state-of-the-art in the direct surface analysis of lipids with a focus on tissue sections, intact cells and thin-layer chromatography substrates. The suitability of these different approaches towards analysis of the major lipid classes along with their current and potential applications in the field of lipid analysis are evaluated.
Keywords
DArTFFATLCPNATCNQPSIliquid extraction surface analysisDHBLESALAESILPETAGGangliosideAP-MALDILDIDESIEASILacCerGSL9-AAGalCerglycosphingolipidCIDPTFEIR-MALDINIMSSSSPDesorption atmospheric pressure photoionization1,8-Bis(dimethylamino)naphthaleneFAEEAPCIPVDFLPSMBTp-nitroanilineESI2-Mercaptobenzothiazole2,4,6-Trihydroxyacetophenone2,5-dihydroxybenzoic acid7,7,8,8-Tetracyanoquinodimethane9-AminoacridineMS/MSPCACHCAfatty acid ethyl esterCollision-induced dissociationsphingomyelinα-cyano-4-hydroxycinnamic acidphosphatidic acidFree fatty acidTHAPDirect analysis in real timePrincipal component analysisTriacylglyceridesmass spectrometry imagingLTPDIOSDHAdiacylglyceridepolyvinylidene difluorideDAGReimsCerceramideCeramide-1-phosphateSulfatideSIMSsecondary ion mass spectrometryTandem mass spectrometryFAMEphosphatidylinositolphosphatidylcholinephosphatidylglycerolphosphatidylethanolaminePhosphatidylserinePhospholipidlactosylceramidelaser ablation electrospray ionizationLipidomicsInfraredMALDIFatty acid methyl esterASAPDANPESILow temperature plasmaPMMAPoly(methyl methacrylate)polytetrafluoroethylenethin-layer chromatographygalactosylceramidePaper spray ionizationelectrospray ionizationdesorption electrospray ionizationLaser desorption ionizationatmospheric pressure chemical ionizationmatrix-assisted laser desorption ionizationAmbient ionization
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Authors
Shane R. Ellis, Simon H. Brown, Marc in het Panhuis, Stephen J. Blanksby, Todd W. Mitchell,