Key result
Mdivi-1 reduces neointimal hyperplasia ~68% in mice by reprogramming macrophages to an anti-inflammatory phenotype.
Why the study?
New treatments are needed to prevent neointimal hyperplasia contributing to post-angioplasty and stent restenosis in patients with CAD and PAD.
Does Mdivi-1 prevent post-vascular injury neointimal hyperplasia in mice and human macrophages?
Does Mdivi-1 prevent post-vascular injury neointimal hyperplasia in mice and human macrophages?
Mdivi-1 reduces post-vascular injury neointimal hyperplasia by metabolically reprogramming macrophages toward an anti-inflammatory phenotype, suggesting a potential therapeutic strategy for preventing restenosis.
Mdivi-1 reduced neointimal hyperplasia in preclinical models via macrophage reprogramming; leaves open clinical translation for restenosis prevention in CAD/PAD.
BACKGROUND AND AIMS: New treatments are needed to prevent neointimal hyperplasia that contributes to post-angioplasty and stent restenosis in patients with coronary artery disease (CAD) and peripheral arterial disease (PAD). We investigated whether modulating mitochondrial function using mitochondrial division inhibitor-1 (Mdivi-1) could reduce post-vascular injury neointimal hyperplasia by metabolic reprogramming of macrophages from a pro-inflammatory to anti-inflammatory phenotype. METHODS AND RESULTS: mice fed a high-fat diet and subjected to carotid-wire injury decreased neointimal hyperplasia by 68%, reduced numbers of plaque vascular smooth muscle cells and pro-inflammatory M1-like macrophages, and decreased plaque inflammation, endothelial activation, and apoptosis, when compared to control. Mdivi-1 treatment of human THP-1 macrophages shifted polarization from a pro-inflammatory M1-like to an anti-inflammatory M2-like phenotype, reduced monocyte chemotaxis and migration to CCL2 and macrophage colony stimulating factor (M-CSF) and decreased secretion of pro-inflammatory mediators. Finally, treatment of pro-inflammatory M1-type-macrophages with Mdivi-1 metabolically reprogrammed them to an anti-inflammatory M2-like phenotype by inhibiting oxidative phosphorylation and attenuating the increase in succinate levels and correcting the decreased levels of arginine and citrulline. CONCLUSIONS: We report that treatment with Mdivi-1 inhibits post-vascular injury neointimal hyperplasia by metabolic reprogramming macrophages towards an anti-inflammatory phenotype thereby highlighting the therapeutic potential of Mdivi-1 for preventing neointimal hyperplasia and restenosis following angioplasty and stenting in CAD and PAD patients.
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Crespo-Avilan et al. (2024) studied post-vascular injury neointimal hyperplasia. Mitochondrial division inhibitor-1 (Mdivi-1) vs. control was evaluated on neointimal hyperplasia. Mitochondrial division inhibitor-1 (Mdivi-1) decreased post-vascular injury neointimal hyperplasia by 68% in mice and reprogrammed macrophages to an anti-inflammatory phenotype.
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