Clopidogrel attenuates atheroma formation and induces a stable plaque phenotype in apolipoprotein E knockout mice

Arnon Afek1, Evgeny Kogan, Sofia Maysel-Auslender

  • 1The Department of Cardiology, Tel Aviv Sourasky Medical Center, Tel Aviv University, Sackler School of Medicine, Tel Aviv, Israel.

Microvascular Research
|March 28, 2009
PubMed

Insights

Clopidogrel treatment reduced plaque size and improved stability in atherosclerosis-prone mice. This may involve increasing regulatory T cells and splenic endothelial progenitor cells, suggesting new therapeutic uses.

Area of Science:

  • Cardiovascular Research
  • Immunology
  • Pharmacology

Background:

  • Clopidogrel is an anti-thrombotic drug used to prevent cardiovascular events.
  • Atherosclerosis involves immune and endothelial dysfunction.
  • Clopidogrel exhibits anti-inflammatory effects by attenuating platelet activation.

Purpose of the Study:

  • To investigate the effects of clopidogrel on plaque size and composition.
  • To test the hypothesis that clopidogrel influences atherosclerosis in apolipoprotein E knockout (apoE KO) mice.

Main Methods:

  • Atherosclerosis-prone apoE KO mice were treated with clopidogrel (1 mg or 2 mg) or PBS for 10 weeks.
  • Plaque size and stability in the aortic sinus were evaluated.
  • Cellular and humoral immune responses, regulatory T cells, and endothelial progenitors were analyzed using flow cytometry (FACS).

Main Results:

  • Clopidogrel treatment significantly reduced aortic plaque size and increased plaque stability.
  • A significant increase in atheroprotective regulatory CD4+CD25+ T cells was observed.
  • Clopidogrel elevated splenic Sca-1+/flk-1+ endothelial progenitor cells but not bone marrow-derived ones.

Conclusions:

  • Clopidogrel effectively reduces atheroma burden and stabilizes plaques in apoE KO mice.
  • Upregulation of regulatory T cells and splenic endothelial progenitor cells may mediate these effects.
  • Findings suggest potential expanded therapeutic applications for clopidogrel in human atherosclerosis.
Abstract

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