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Updated: Sep 26, 2026

A Pacing-Controlled Procedure for the Assessment of Heart Rate-Dependent Diastolic Functions in Murine Heart Failure Models
Published on: July 21, 2023
Effect of PDE5 inhibition on coronary hemodynamics in pacing-induced heart failure
YingJie Chen1, Jay H Traverse, Mingxiao Hou
1Department of Medicine, Division of Cardiology, University of Minnesota Medical School, 420 Delaware Street SE, Minneapolis, MN 55455, USA.
Insights
Sildenafil, a phosphodiesterase type 5 (PDE5) inhibitor, did not improve coronary blood flow in dogs with congestive heart failure (CHF). PDE5 inhibition has minimal impact on coronary hemodynamics in this condition.
Area of Science:
- Cardiovascular Physiology
- Pharmacology
Background:
- Congestive heart failure (CHF) involves endothelial dysfunction and altered cGMP metabolism.
- Phosphodiesterase type 5 (PDE5) inhibition increases cGMP, potentially affecting vascular tone.
Purpose of the Study:
- To investigate the effects of PDE5 inhibition with sildenafil on coronary hemodynamics in a canine model of CHF.
Main Methods:
- CHF was induced in dogs via rapid ventricular pacing.
- Hemodynamic parameters, coronary blood flow, and myocardial oxygen consumption were measured at rest and during exercise.
- Sildenafil was administered orally.
- Western blotting assessed PDE5 protein expression.
Main Results:
- Sildenafil decreased aortic pressure but did not alter heart rate, left ventricular pressure, or coronary blood flow in dogs with CHF.
- Sildenafil failed to augment endothelium-dependent vasodilation in failing hearts.
- PDE5 protein expression was reduced in the myocardium of failing hearts.
Conclusions:
- PDE5 inhibition has a limited role in regulating coronary hemodynamics in the setting of CHF.
- Reduced PDE5 expression may contribute to the lack of response to sildenafil in CHF.
Abstract:
Inhibition of phosphodiesterase type 5 (PDE5) can relax systemic and coronary vessels by causing accumulation of cGMP. Both the endothelial dysfunction with decreased nitric oxide production and increased natriuretic peptide levels in congestive heart failure (CHF) have the potential to alter cGMP production, thereby influencing the response to PDE5 inhibition. Consequently, this study examined the effects of PDE5 inhibition with sildenafil in dogs with CHF produced by rapid ventricular pacing. CHF resulted in decreases of left ventricular (LV) systolic pressure, coronary blood flow, and the maximal first time derivative of LV pressure (LV dP/dt(max)) at rest and during treadmill exercise compared with normal, whereas resting LV end-diastolic pressure increased from 10 +/- 1.4 to 23 +/- 1.4 mmHg. Sildenafil (2 and 10 mg/kg per os) caused a 5- to 6-mmHg decrease of aortic pressure (P < 0.05), with no change of heart rate, LV systolic pressure, or LV dP/dt(max). Sildenafil caused no change in coronary flow or myocardial oxygen consumption in animals with CHF at rest or during exercise. In contrast to findings in normal animals, sildenafil did not augment endothelium-dependent coronary vasodilation in response to acetylcholine in animals with CHF. Furthermore, Western blotting showed decreased PDE5 protein expression in myocardium from failing hearts. These findings demonstrate that PDE5 contributes little to regulation of coronary hemodynamics in CHF.
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