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September 13, 2023British Journal of Pharmacology6 citations

Dual action of macrophage miR‐204 confines cyclosporine A‐induced atherosclerosis

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JSJiahui SuHYHong YuCHCong‐Cong Han

Key Result

Macrophage miR-204 overexpression inhibited cyclosporine A-induced atherosclerotic plaque formation by reducing the expression of scavenger receptors SR-BII and CD36.

Structured PICO

Does macrophage miR-204 overexpression prevent cyclosporine A-induced atherosclerosis in mice?

P
Population
Mice with macrophage-miR-204 overexpression subjected to cyclosporine A (CsA)-induced atherosclerosis
I
Intervention
Macrophage-miR-204 overexpression
C
Comparator
Control mice
O
Outcome
CsA-induced atherosclerotic plaque formationsurrogate

Macrophage miR-204 ameliorates cyclosporine A-induced atherosclerosis by suppressing SR-BII and CD36 expression, highlighting a potential therapeutic target for post-transplant atherosclerosis.

Abstract

BACKGROUND AND PURPOSE: Atherosclerosis induced by cyclosporine A (CsA), an inhibitor of the calcineurin/nuclear factor of activated T cells (NFAT) pathway, is a major concern after organ transplantation. However, the atherosclerotic mechanisms of CsA remain obscure. We previously demonstrated that calcineurin/NFAT signalling inhibition contributes to atherogenesis via suppressing microRNA-204 (miR-204) transcription. We therefore hypothesised that miR-204 is involved in the development of CsA-induced atherosclerosis. EXPERIMENTAL APPROACH: mice with macrophage-miR-204 overexpression were generated to determine the effects of miR-204 on CsA-induced atherosclerosis. Luciferase reporter assays and chromatin immunoprecipitation sequencing were performed to explore the targets mediating miR-204 effects. KEY RESULTS: mice, respectively. miR-204 levels decreased in circulating monocytes and plaque lesions during CsA-induced atherosclerosis. The upregulation of miR-204 in macrophages inhibited CsA-induced atherosclerotic plaque formation but did not affect serum lipid levels. miR-204 limited the CsA-induced foam cell formation by reducing the expression of the scavenger receptors SR-BII and CD36. SR-BII was post-transcriptionally regulated by mature miR-204-5p via 3'-UTR targeting. Additionally, nuclear-localised miR-204-3p prevented the CsA-induced binding of Ago2 to the CD36 promoter, suppressing CD36 transcription. SR-BII or CD36 expression restoration dampened the beneficial effects of miR-204 on CsA-induced atherosclerosis. CONCLUSION AND IMPLICATIONS: Macrophage miR-204 ameliorates CsA-induced atherosclerosis, suggesting that miR-204 may be a potential target for the prevention and treatment of CsA-related atherosclerotic side effects.

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Cite This Study

Su et al. (2023) studied Cyclosporine A-induced atherosclerosis. Macrophage-miR-204 overexpression was evaluated on Cyclosporine A-induced atherosclerotic plaque formation. Macrophage miR-204 overexpression inhibited cyclosporine A-induced atherosclerotic plaque formation by reducing the expression of scavenger receptors SR-BII and CD36.

synapsesocial.com/papers/6a976000827cb52371a66364https://doi.org/10.1111/bph.16240
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