4.6 Article

Macrophage polarization state affects lipid composition and the channeling of exogenous fatty acids into endogenous lipid pools

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 297, 期 6, 页码 -

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ELSEVIER
DOI: 10.1016/j.jbc.2021.101341

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资金

  1. Diabetes Australia of Australia
  2. National Health and Medical Research Council of Australia [GNT1189012]
  3. Victorian Governments Operational Support Program
  4. joint Baker Heart and Diabetes Institute Research Scholarship-La Trobe University Scholarship
  5. CIHR
  6. NSERC
  7. CSL Centenary Fellowship

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This study reveals that interactions between adipose-tissue-resident macrophages and fatty acids play a crucial role in maintaining metabolic homeostasis and triggering inflammation. Different macrophage subsets exhibit distinct utilization of exogenous fatty acids, contributing to their sensitivity/resistance to inflammatory effects.
Adipose-tissue-resident macrophages (ATMs) maintain metabolic homeostasis but also contribute to obesity-induced adipose tissue inflammation and metabolic dysfunction. Central to these contrasting effects of ATMs on metabolic homeostasis is the interaction of macrophages with fatty acids. Fatty acid levels are increased within adipose tissue in various pathological and physiological conditions, but appear to initiate inflammatory responses only upon interaction with particular macrophage subsets within obese adipose tissue. The molecular basis underlying these divergent outcomes is likely due to phenotypic differences between ATM subsets, although how macrophage polarization state influences the metabolism of exogenous fatty acids is relatively unknown. Herein, using stable isotope-labeled and nonlabeled fatty acids in combination with mass spectrometry lipidomics, we show marked differences in the utilization of exogenous fatty acids within inflammatory macrophages (M1 macrophages) and macrophages involved in tissue homeostasis (M2 macrophages). Specifically, the accumulation of exogenous fatty acids within triacylglycerols and cholesterol esters is significantly higher in Ml macrophages, while there is an increased enrichment of exogenous fatty acids within glycerophospholipids, ether lipids, and sphingolipids in M2 macrophages. Finally, we show that functionally distinct ATM populations in vivo have distinct lipid compositions. Collectively, this study identifies new aspects of the metabolic reprogramming that occur in distinct macrophage polarization states. The channeling of exogenous fatty acids into particular lipid synthetic pathways may contribute to the sensitivity/resistance of macrophage subsets to the inflammatory effects of increased environmental fatty acid levels.

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