LONGITUDINAL ASSESSMENT OF DIASTOLIC FUNCTION AND MYOCARDIAL STRAIN IN TYPE 2 DIABETES: A COMPARISON OF EMPAGLIFLOZIN AND LINAGLIPTIN

Oğuz Kaan KAYA, Gökhan KÖKER

The Anatolian Journal of Cardiology - 2026;30(10):700-707

Department of Cardiology, Antalya Training and Research Hospital, University of Health Sciences, Antalya, Türkiye

 

Background: The cardiovascular effects of sodium-glucose cotransporter-2 inhibitors and dipeptidyl ppetidase-4 inhibitors have attracted increasing interest in patients with type 2 diabetes mellitus. This study aimed to compare the time-dependent effects of empagliflozin and linagliptin on left ventricular diastolic function and global longitudinal strain (GLS). Methods: This prospective longitudinal study included 350 patients with type 2 diabetes mellitus treated with empagliflozin (n = 200) or linagliptin (n = 150). Transthoracic echocardiography and speckle-tracking strain analysis were performed at baseline, 1 month, and 6 months. Diastolic function was evaluated using septal e? velocity, E/e? ratio, isovolumetric relaxation time (IVRT), and mitral E-wave deceleration time. Longitudinal changes were analyzed using linear mixed-effects models including treatment group, time, and group x time interaction. Results: Diastolic function parameters improved significantly over time in both groups (all P < .001). At follow-up, HbA1c levels decreased in both groups, with comparable glycemic control achieved at 6 months. Significant group x time interactions were observed for septal e? velocity, E/e? ratio, and IVRT (all P < .001). These findings remained consistent after adjustment for baseline differences. At 6 months, empagliflozin was associated with greater improvement in septal e? velocity and IVRT, whereas linagliptin resulted in a more pronounced reduction in the E/e? ratio. Although GLS improved in both groups, its temporal pattern differed significantly between treatments (P < .001). Conclusion: Empagliflozin and linagliptin exert distinct effects on left ventricular diastolic function and myocardial deformation in type 2 diabetes mellitus. Empagliflozin appears to provide earlier improvement in diastolic relaxation and GLS, whereas linagliptin may have a greater effect on filling pressures. These findings should be interpreted cautiously and considered hypothesis-generating; confirmation in randomized controlled trials is required to determine their clinical relevance.