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Macrophage ATP citrate lyase deficiency stabilizes atherosclerotic plaques

  • Vrije Universiteit Amsterdam
  • Maastricht University
  • University of Edinburgh
  • Leiden University Medical Center
  • Ludwig Maximilian University of Munich
  • University of Pennsylvania
  • Department of Radiology and Nuclear Medicine, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands; Department of Neurology, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands; Neurosurgical Center Amsterdam, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands; Department of Biomedical Engineering & Physics AUMC...
  • Department of Biochemistry, Cardiovascular Research Institute Maastricht, Maastricht University, Maastricht, Netherlands; Department of Clinical Epidemiology and Medical Technology Assessment, School for Public Health and Primary Care, Maastricht University, Maastricht, Netherlands; Department of Internal Medicine, Maastricht University Medical Centre, Maastricht, Netherlands.
  • From the Department of Radiology and Nuclear Medicine, Cancer Center Amsterdam, De Boelelaan 1117, 1081 HV Amsterdam, the Netherlands (A.H.R., L.G.P.H.V., B.G., R.S.P., S.N., J.J.J.d.V., H.J.S., M.R.M.); Department of Surgery, Cancer Center Amsterdam, Amsterdam UMC, University of Amsterdam, the Netherlands (E.v.V., M.G.B.); Department of Surgery, Cancer Center Amsterdam...
  • Systems Bioinformatics, Amsterdam, Netherlands
  • Department of Dermatology, University of Pennsylvania, Philadelphia, Pennsylvania.

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Abstract

Macrophages represent a major immune cell population in atherosclerotic plaques and play central role in the progression of this lipid-driven chronic inflammatory disease. Targeting immunometabolism is proposed as a strategy to revert aberrant macrophage activation to improve disease outcome. Here, we show ATP citrate lyase (Acly) to be activated in inflammatory macrophages and human atherosclerotic plaques. We demonstrate that myeloid Acly deficiency induces a stable plaque phenotype characterized by increased collagen deposition and fibrous cap thickness, along with a smaller necrotic core. In-depth functional, lipidomic, and transcriptional characterization indicate deregulated fatty acid and cholesterol biosynthesis and reduced liver X receptor activation within the macrophages in vitro. This results in macrophages that are more prone to undergo apoptosis, whilst maintaining their capacity to phagocytose apoptotic cells. Together, our results indicate that targeting macrophage metabolism improves atherosclerosis outcome and we reveal Acly as a promising therapeutic target to stabilize atherosclerotic plaques.
Original languageEnglish
Article number6296
JournalNature communications
Volume11
Issue number1
DOIs
Publication statusPublished - 1 Dec 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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