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Lipidomics reveals a remarkable diversity of lipids in human plasma

Journal of Lipid Research · 2010 · Vol. 51(11) · pp. 3299–3305
Oswald QuehenbergerAaron M. ArmandoAlex BrownStephen MilneDavid S. MyersAlfred H. MerrillSibali BandyopadhyayKristin N. JonesSamuel KellyRebecca L. ShanerCameron SullardsElaine WangRobert C. MurphyRobert M. BarkleyThomas J. LeikerChristian R.H. RaetzZiqiang GuanGregory M. LairdDavid A. SixDavid W. RussellJeffrey G. McDonaldShankar SubramaniamEoin FahyEdward A. Dennis

Abstract

The focus of the present study was to define the human plasma lipidome and to establish novel analytical methodologies to quantify the large spectrum of plasma lipids. Partial lipid analysis is now a regular part of every patient's blood test and physicians readily and regularly prescribe drugs that alter the levels of major plasma lipids such as cholesterol and triglycerides. Plasma contains many thousands of distinct lipid molecular species that fall into six main categories including fatty acyls, glycerolipids, glycerophospholipids, sphingolipids, sterols, and prenols. The physiological contributions of these diverse lipids and how their levels change in response to therapy remain largely unknown. As a first step toward answering these questions, we provide herein an in-depth lipidomics analysis of a pooled human plasma obtained from healthy individuals after overnight fasting and with a gender balance and an ethnic distribution that is representative of the US population. In total, we quantitatively assessed the levels of over 500 distinct molecular species distributed among the main lipid categories. As more information is obtained regarding the roles of individual lipids in health and disease, it seems likely that future blood tests will include an ever increasing number of these lipid molecules.

Lipid metabolism and biosynthesisMetabolomics and Mass Spectrometry StudiesSphingolipid Metabolism and SignalingLipidomeLipidomicsGlycerophospholipidsSphingolipidBlood lipidsPopulationCholesterolBiologyComputational biologyChemistry

MeSH terms

HumansLipidsComputational BiologyLipid Metabolism

Funding

  • National Institutes of Health
  • National Institute of Diabetes and Digestive and Kidney Diseases
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References
Update of the LIPID MAPS comprehensive classification system for lipids
Journal of Lipid Research · 2008 · 1,763 citations
A comprehensive classification system for lipids
Journal of Lipid Research · 2005 · 1,795 citations
Quantitative determination of the neutral glycosyl ceramides in human blood
Journal of Lipid Research · 1967 · 660 citations
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