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Updated: Apr 6, 2026

Author Spotlight: Investigating HR-Dependent Cardiac Function in Mouse Models Through a Novel Atrial-Pacing Approach
Published on: July 21, 2023
Selective Heart Rate Reduction Improves Metabolic Syndrome-related Left Ventricular Diastolic Dysfunction
Nassiba Merabet1, Yuehua Fang, Lionel Nicol
1*Institut National de la Santé et de la Recherche Médicale U1096, Rouen, France; †Institute for Research and Innovation in Biomedicine, Rouen, France; ‡UFR de Médecine et Pharmacie, Rouen University, Rouen, France; §Plateau d'Imagerie CardioThoracique de l'Universite de Rouen, Rouen, France; ¶Equipe d'Acceuil 4651, Aliment Bioprocedes Toxicologie Environnement, Rouen, France; ‖Bruker Biospin MRI GMBH, Ettlingen, Germany; and **Servier, Suresnes, France.
Background:
Enhanced heart rate observed in metabolic syndrome (MS) contributes to the deterioration of left ventricular (LV) function via impaired LV filling and relaxation, increased myocardial O2 consumption, and reduced coronary perfusion. However, whether heart rate reduction (HRR) opposes LV dysfunction observed in MS is unknown.
Methods:
We assessed in Zucker fa/fa rats, a rat model of MS, the cardiovascular effects of HRR induced by the If current inhibitor S38844 (3 mg · kg(-1) · d(-1)).
Results:
Delayed short-term (4 days) and long-term (90 days) HRR induced by S38844 reduced LV end-diastolic pressure and LV end-diastolic pressure-volume relation, increased myocardial tissue perfusion, decreased myocardial oxidized glutathione levels, and preserved cardiac output, without modifying LV end-systolic pressure and LV end-systolic pressure-volume relation, although only long-term S38844 opposed LV collagen accumulation. Long-term S38844 improved flow-induced endothelium-dependent dilatation of mesenteric arteries, while metabolic parameters, such as plasma glucose levels, and Hb1c, were never modified.
Conclusions:
In rats with MS, HRR induced by the If inhibitor S38844 improved LV diastolic function and endothelium-dependent vascular dilatation, independent from modifications in metabolic status. Moreover, this improvement in cardiac function involves not only immediate effects such as improved myocardial perfusion and reduced oxidative stress but also long-term effects such as modifications in the myocardial structure.
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