International Journal of Cardiology

ISSN 2996-8215

International Journal of Cardiology | Vol. 5, No. 6, June 2014 | pp. 41–48

DOI: 10.46882/2014/IJC/000063

Original Research Article

Cardioprotective Effects of Dapagliflozin in a Rat Model of Diabetic Cardiomyopathy: Role of Mitochondrial Fusion

Kenji Tanaka¹, Satoshi Yamada¹, Takashi Sato²

¹Department of Cardiovascular Medicine, Kyoto University Graduate School of Medicine, Kyoto, Japan

²Division of Metabolic Diseases, Tokyo Medical and Dental University, Tokyo, Japan

Abstract:
Diabetic cardiomyopathy leads to progressive diastolic failure and myocardial structural derangement. Sodium-glucose cotransporter 2 (SGLT2) inhibitors reduce heart failure event rates, but their direct impact on cardiomyocyte mitochondrial dynamics remains characterized. This study investigated the protective effects of dapagliflozin on myocardial remodeling and mitochondrial structural integrity in a rat model of type 2 diabetes. Type 2 diabetes was induced in adult male Wistar rats via a high-fat diet combined with a low-dose streptozotocin injection. Diabetic rats were randomized to receive either dapagliflozin (1.0 mg/kg/day, n = 15) or vehicle control (n = 15) via oral gavage for 8 weeks. Cardiac function was monitored using tissue Doppler echocardiography, and structural mitochondrial alignment was assessed via transmission electron microscopy. Dapagliflozin significantly improved the diastolic mitral inflow E/A ratio compared to the vehicle group (1.45 ± 0.12 vs. 1.05 ± 0.08, p < 0.01). Electron microscopy revealed that dapagliflozin treatment prevented mitochondrial fragmentation, preserving mitochondrial aspect ratios (2.42 ± 0.15 vs. 1.54 ± 0.11, p < 0.01). Western blot analysis demonstrated that dapagliflozin up-regulated the expression of mitofusin-2 (Mfn2) and down-regulated dynamin-related protein 1 (Drp1), suppressing pro-apoptotic pathways. Dapagliflozin significantly improves diastolic performance and mitigates diabetic cardiomyopathy in rats by preserving mitochondrial fusion structural pathways and optimizing metabolic morphology.

Keywords: Diabetic cardiomyopathy, Dapagliflozin, SGLT2 inhibitors, Mitochondrial dynamics, Mitofusin-2, Diastolic function

Received: March 10, 2014; Revised: April 22, 2014; Accepted: May 12, 2014; Published: June 18, 2014

Citation: International Journal of Cardiology, 2014, Vol. 5, No. 6, pp. 41–48, DOI: 10.46882/2014/IJC/000063