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Rapid identification of plasmalogen molecular species using targeted multiplexed selected reaction monitoring mass spectrometry. | LitMetric

AI Article Synopsis

  • Plasmalogens (Pls) are important lipids whose levels are changed in various neurological and metabolic diseases, and understanding their fatty alcohols and fatty acids is crucial for studying their functions.
  • A new method using multiplexed selected reaction monitoring mass spectrometry (SRM/MS) was developed, which is more effective than traditional mass spectrometry for detecting low-abundance Pls species.
  • The study successfully identified and quantified multiple Pls species in mouse brain samples, showing that the new LC-targeted multiplexed SRM/MS system is a powerful tool for lipid research and could significantly advance both basic and clinical studies.

Article Abstract

Plasmalogens (Pls) levels are reported to be altered in several neurological and metabolic diseases. Identification of fatty alcohols and fatty acids of different Pls species is necessary to determine the roles and mechanisms of action of Pls in different diseases. Previously, full-scan tandem mass spectrometry (MS/MS) was used for this purpose but is not effective for low-abundance Pls species. Recently, multiplexed selected reaction monitoring MS (SRM/MS) was found to be more selective and sensitive than conventional full-scan MS/MS for the identification of low-abundance compounds. In the present study, we developed a liquid chromatography (LC)-targeted multiplexed SRM/MS system for the identification and quantification of different Pls choline (Pls-PC) and Pls ethanolamine (Pls-PE) species. We determined five precursor-product ion transitions to identify and fragments of each Pls species. Consequently, and fatty acyl chains of 22 Pls-PC and 55 Pls-PE species were identified in mouse brain samples. Among them, some species had C20:0 and C20:1 fatty alcohols at the position. For quantification of Pls species in mouse brain samples, a single SRM transition was employed. Thus, our results suggest that the LC-targeted multiplexed SRM/MS system is very sensitive for the identification and quantification of low-abundance lipids such as Pls, and is thus expected to make a significant contribution to basic and clinical research in this field in the future.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8662339PMC
http://dx.doi.org/10.1016/j.jmsacl.2021.09.004DOI Listing

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