Diabetic cardiomyopathy (DCM) is a major contributor to mortality in diabetic patients, characterized by a multifaceted pathogenesis and limited therapeutic options. While lactate, a byproduct of glycolysis, is known to be significantly elevated in type 2 diabetes, its specific role in DCM remains uncertain. This study reveals an abnormal upregulation of monocarboxylate transporter 4 (MCT4) on the plasma membrane of cardiomyocytes in type 2 diabetes, leading to excessive lactate efflux from these cells. The disruption in lactate transport homeostasis perturbs the intracellular lactate-pyruvate balance in cardiomyocytes, resulting in oxidative stress and inflammatory responses that exacerbate myocardial damage. Additionally, our findings suggest increased lactate efflux augments histone H4K12 lactylation in macrophages, facilitating inflammatory infiltration within the microenvironment. In vivo experiments have demonstrated that inhibiting MCT4 effectively alleviates myocardial oxidative stress and pathological damage, reduces inflammatory macrophage infiltration, and enhances cardiac function in type 2 diabetic mice. Furthermore, a clinical prediction model has been established, demonstrating a notable association between peripheral blood lactate levels and diastolic dysfunction in individuals with type 2 diabetes. This underscores the potential of lactate as a prognostic biomarker for DCM. Ultimately, our findings highlight the pivotal involvement of MCT4 in the dysregulation of cardiac energy metabolism and macrophage-mediated inflammation in type 2 diabetes. These insights offer novel perspectives on the pathogenesis of DCM and pave the way for the development of targeted therapeutic strategies against this debilitating condition.
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http://dx.doi.org/10.1186/s12933-024-02178-2 | DOI Listing |
Background: Type 2 diabetes mellitus (T2DM) significantly affects the quality of life (QoL), necessitating comprehensive management strategies. In resource-limited settings such as Nigeria, managing diabetes can be challenging due to limited access to medications, which impacts patients' QoL. Diabetes Self-Management Education (DSME) empowers patients through knowledge and skills, potentially improving their QoL.
View Article and Find Full Text PDFAliment Pharmacol Ther
December 2024
Division of Gastroenterology, MASLD Research Center, University of California at San Diego, San Diego, California, USA.
Aliment Pharmacol Ther
December 2024
Division of Gastroenterology, Hepatology and Nutrition, Department of Internal Medicine, University of Utah Health, Salt Lake City, Utah, USA.
Pol J Vet Sci
December 2024
Department of Basic sciences, Faculty of Veterinary Medicine, Tabriz medical sciences branch, Islamic Azad University, 5159115705, Tabriz, Iran.
Male fertility is adversely influenced by diabetes. The beneficial effects of antioxidant bioflavonoids in improving fertility have been reported. This study was conducted to evaluate the effects of silymarin on diabetes mellitus-induced male reproductive impairment in rats by investigating its role in Hsp70 and Hsp90 expression.
View Article and Find Full Text PDFFront Biosci (Landmark Ed)
December 2024
Center for Immunology and Cellular Biotechnology, Institute of Medicine and Life Sciences, Immanuel Kant Baltic Federal University, 236001 Kaliningrad, Russia.
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