ArticleNature cardiovascular research2026
A metabolic-epigenetic switch governs multicellular cardiac repair following succinate dehydrogenase inhibition.
Article in Nature cardiovascular research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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18 authors.
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Abstract
Cardiac regeneration is limited in the adult mammalian heart because of restricted cardiomyocyte proliferation and persistent fibrosis. We previously demonstrated that transient pharmacological inhibition of succinate dehydrogenase (SDH) with malonate promotes regeneration after myocardial infarction. Here, we integrate single-nucleus RNA sequencing and ATAC-seq to reveal multicellular transcriptional and epigenetic reprogramming underlying this response. Cell-specific Sdhb deletion dissected contributions of SDH inhibition; cardiomyocyte-specific Sdhb deletion transiently increased cardiomyocyte proliferation but did not improve post-myocardial infarction function, whereas myofibroblast-specific Sdhb deletion suppressed myofibroblast activation and fibrosis and improved cardiac function. SDH inhibition promoted reductive mitochondrial metabolism and remodeled H3K4me3-marked and H3K27me3-marked chromatin states in cardiomyocytes and fibroblasts. Integration of CUT&RUN, chromatin accessibility and transcriptional profiling identified regulatory targets linking metabolic and epigenetic remodeling to regenerative responses. Together, these findings establish SDH as a multicellular regulator of cardiac regeneration and define distinct cell-specific mechanisms contributing to the regenerative effects of transient pharmacological SDH inhibition.
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Registered trials
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