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Updated: Sep 26, 2026

Studying Left Ventricular Reverse Remodeling by Aortic Debanding in Rodents
Published on: July 14, 2021
Inhibition of left ventricular remodelling preserves chamber systolic function in pressure-overloaded mice
Giuseppe Marano1, Sergio Palazzesi, Alessandro Vergari
1Laboratorio di Farmacologia, Istituto Superiore di Sanità, Viale Regina Elena 299, 00161 Rome, Italy. gmarano@iss.it
Insights
Inhibiting left-ventricular hypertrophy (LVH) delays cardiac dysfunction caused by pressure overload. Propranolol treatment attenuated LVH and preserved systolic function by targeting cardiomyocytes, not fibrosis.
Area of Science:
- Cardiology
- Physiology
- Pharmacology
Background:
- Left-ventricular hypertrophy (LVH) development as a compensatory mechanism for pressure overload is debated.
- Understanding the long-term effects of attenuating LVH on cardiac function is crucial.
Purpose of the Study:
- To investigate the long-term effects of inhibiting left-ventricular hypertrophy (LVH) on cardiac dysfunction under pressure overload.
- To determine if L- and D-propranolol, by attenuating LVH, can prevent cardiac dysfunction.
Main Methods:
- Aortic banding was performed in mice to induce pressure overload.
- Mice received L-propranolol, D-propranolol, or vehicle to attenuate LVH.
- Cardiac function and dimensions were assessed using MRI, echocardiography, and catheterization up to 8 weeks.
Main Results:
- Vehicle-treated mice developed concentric hypertrophy, followed by eccentric remodeling and systolic dysfunction.
- Propranolol-treated mice exhibited blunted hypertrophy, preserved systolic function, and normal cardiac dimensions.
- Propranolol attenuated cardiomyocyte hypertrophy but not myocardial fibrosis, and delayed, but did not prevent, LV dysfunction.
Conclusions:
- Inhibiting LVH delays the deterioration of left-ventricular systolic performance.
- Pressure overload-induced cardiac dysfunction is linked to eccentric remodeling.
- Propranolol's antihypertrophic effect is selective for cardiomyocytes, not collagen accumulation.
Abstract:
Controversy exists whether the development of left-ventricular hypertrophy (LVH) is a mechanism able to prevent cardiac dysfunction under conditions of pressure overload. In the present study we re-assessed the long-term effects of attenuating LVH by using L- and D-propranolol, which are equally able to inhibit the development of LVH induced by aortic banding. The aortic arch was banded proximal to the left common carotid artery in 71 CD-1 mice that were then assigned randomly to receive L-propranolol, D-propranolol (both 80 mg/kg per day) or vehicle. Concurrently, sham-operated mice were given L-propranolol, D-propranolol or vehicle. LV dimension and performance were evaluated under isoflurane anaesthesia by cine-magnetic resonance imaging, echocardiography and cardiac catheterization up to 8 weeks after surgery. After 2 weeks of pressure overload, the vehicle-treated banded mice had enhanced LV weight, normal chamber size and increased relative wall thickness (concentric hypertrophy), whereas L-propranolol- or D-propranolol-banded mice showed a markedly blunted hypertrophic response, i.e. normal chamber size and normal relative wall thickness, as well as preserved systolic LV chamber function. After 4 weeks, the vehicle-treated banded mice showed LV enlargement with a reduced relative wall thickness (eccentric remodelling) and a clear-cut deterioration in LV systolic function. In contrast, L-propranolol- or D-propranolol-treated banded mice showed normal chamber size with a normal relative wall thickness and preserved systolic function. A distinct histological feature was that in banded mice, L-or D-propranolol attenuated the development of cardiomyocyte hypertrophy but not the attendant myocardial fibrosis. At the 8-week stage, LV dysfunction was present in propranolol-treated banded mice although it was much less severe than in vehicle-treated banded mice. It is concluded that (i) deterioration of LV systolic performance is delayed if LV hypertrophy is inhibited, (ii) banding-induced deterioration of LV systolic function is associated with LV eccentric remodelling and (iii) the antihypertrophic effect of propranolol is due to a selective action on cardiomyocytes rather than on collagen accumulation
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