| Literature DB >> 32808523 |
Katerina V Djambazova1,2, Dustin R Klein2,3, Lukasz G Migas4, Elizabeth K Neumann2,3, Emilio S Rivera2,3, Raf Van de Plas4, Richard M Caprioli1,2,3,5,6, Jeffrey M Spraggins1,2,3.
Abstract
Lipids are a structurally diverse class of molecules with important biological functions including cellular signaling and energy storage. Matrix-assisted laser desorption/ionization (MALDI) imaging mass spectrometry (IMS) allows for direct mapping of biomolecules in tissues. Fully characterizing the structural diversity of lipids remains a challenge due to the presence of isobaric and isomeric species, which greatly complicates data interpretation when only m/z information is available. Integrating ion mobility separations aids in deconvoluting these complex mixtures and addressing the challenges of lipid IMS. Here, we demonstrate that a MALDI quadrupole time-of-flight (Q-TOF) mass spectrometer with trapped ion mobility spectrometry (TIMS) enables a >250% increase in the peak capacity during IMS experiments. MALDI TIMS-MS separation of lipid isomer standards, including sn backbone isomers, acyl chain isomers, and double-bond position and stereoisomers, is demonstrated. As a proof of concept, in situ separation and imaging of lipid isomers with distinct spatial distributions were performed using tissue sections from a whole-body mouse pup.Entities:
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Year: 2020 PMID: 32808523 DOI: 10.1021/acs.analchem.0c02520
Source DB: PubMed Journal: Anal Chem ISSN: 0003-2700 Impact factor: 6.986