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Induction of Atherosclerotic Plaques Through Activation of Mineralocorticoid Receptors in Apolipoprotein E-deficient Mice
Published on: September 26, 2018
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.
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.
Aim:
Clopidogrel is a widely used anti-thrombotic for the prevention of stent thrombosis and cardiovascular events in patients with coronary atherosclerosis. Clopidogrel has been shown to exhibit anti-inflammatory effects that are related to the attenuated activation of platelets. Atherosclerosis is a complex process in which the immune system and the endothelium appear to play a prominent role. Herein, we tested the hypothesis that clopidogrel will influence plaque size and composition in the atherosclerosis prone apolipoprotein E knockout (apoE KO) mouse model.
Methods And Results:
Eight week old mice were fed daily with either PBS, 1 mg or 2 mg of clopidogrel for 10 weeks. Plaque size was evaluated in the aortic sinus and cellular and humoral responses were studied as well as splenic and bone marrow endothelial progenitors by FACS. Treatment with either 1 mg and 2 mg of clopidogrel significantly reduced plaque size and augmented its stability by increasing atheromatous fibrous area. Whereas antigen specific oxLDL immune response was not influenced by clopidogrel feeding, the number of atheroprotective regulatory CD4+CD25+ T cells was significantly increased. Moreover, clopidogrel treatment resulted in a prominent rise in splenic but not bone marrow derived Sca-1+/flk-1+ endothelial progenitors.
Conclusion:
Clopidogrel significantly reduces atheroma burden and stabilizes aortic sinus plaques in apoE KO mice. These effects may partially be mediated by upregulation of the regulatory T cell pool and splenic endothelial progenitor cells. These findings may expand the potential applications of clopidogrel in human subjects.
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