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Empagliflozin Reduces Post-Myocardial Infarction Inflammation via BDH1/β-Hydroxybutyrate-Mediated NF-κB Modulation in
Ji'e Yang1,2,3,4, Ke Meng1,2, Guohong Wu1,2
1Department of Cardiology, The First Affiliated Hospital of USTC, Division of Life Science and Medicine, University of Science and Technology of China, Hefei 230000, Anhui, PR China.
Abstract:
Empagliflozin (EMPA), a sodium-glucose cotransporter 2 (SGLT2) inhibitor, demonstrates cardioprotective effects in heart failure, and recent trials suggest benefits in acute myocardial infarction (MI). However, the mechanisms underlying its efficacy, particularly its impact on the post-MI inflammatory response, are not fully elucidated. This study aimed to investigate whether EMPA modulates post-MI inflammation and to uncover the underlying molecular pathways. C57BL/6J mice undergoing MI were randomized to receive EMPA or saline for 7 days. EMPA treatment significantly improved survival, reduced fibrosis, and enhanced cardiac function. EMPA attenuated the systemic inflammatory response at day 1 post-MI, as evidenced by lower serum levels of IL-1β, IL-6, and CXCL-1. In the infarcted myocardium at day 1 post-MI, EMPA suppressed infiltration of neutrophils and pro-inflammatory macrophages while increasing anti-inflammatory macrophages. Mechanistically, EMPA upregulated the ketone body metabolic enzyme β-hydroxybutyrate dehydrogenase 1 (BDH1), increasing cardiac β-hydroxybutyrate (β-HB) levels, and subsequently inhibited NF-κB p65 phosphorylation. In immortalized bone marrow-derived macrophages, the anti-inflammatory effect of EMPA was mimicked by β-HB and abolished by Bdh1 knockdown, which was rescued by exogenous β-HB. In conclusion, EMPA attenuates maladaptive inflammation and confers cardioprotection after MI, potentially through a BDH1/β-HB/NF-κB pathway in macrophages. This ketone-mediated immunomodulatory axis, primarily defined in vitro, identifies a novel and potential pharmacological mechanism of SGLT2 inhibition in the context of post-MI inflammation.
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