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Updated: Oct 2, 2026

A Rat Model of Pressure Overload Induced Moderate Remodeling and Systolic Dysfunction as Opposed to Overt Systolic Heart Failure
Published on: April 30, 2020
Heart failure in pressure overload hypertrophy. The relative roles of ventricular remodeling and myocardial
Gavin R Norton1, Angela J Woodiwiss, William H Gaasch
1Laboratory of Cardiovascular Pathophysiology, Department of Physiology, University of the Witwatersrand, Johannesburg, South Africa.
Insights
Heart failure in pressure overload hypertrophy (POH) is primarily driven by detrimental left ventricular (LV) remodeling, not reduced myocardial function. This study distinguishes between eccentric remodeling leading to heart failure and concentric remodeling maintaining compensation.
Area of Science:
- Cardiology
- Physiology
- Pathophysiology
Background:
- Heart failure in pressure overload hypertrophy (POH) arises from adverse left ventricular (LV) chamber remodeling, decreased myocardial function, or both.
- Understanding the distinct contributions of remodeling versus function is crucial for POH pathogenesis.
Purpose of the Study:
- To investigate the relative roles of ventricular remodeling and myocardial dysfunction in the development of heart failure within the context of POH.
- To differentiate the mechanisms leading to heart failure versus compensated hypertrophy in POH models.
Main Methods:
- Rats underwent suprarenal aortic banding to induce POH, categorized into heart failure (POH-HF) and no heart failure (POH-NHF) groups after 20 weeks.
- In vivo and ex vivo assessments evaluated LV chamber dimensions, systolic and diastolic function, and myocardial properties.
Main Results:
- LV mass was comparable, but POH-HF showed eccentric remodeling (enlarged LV, normal wall thickness), while POH-NHF exhibited concentric remodeling (normal size, thickened wall).
- LV systolic function was impaired in POH-HF, but myocardial contractility and stiffness were similar across POH groups.
- Diastolic chamber stiffness was reduced in POH-HF, indicating altered chamber compliance.
Conclusions:
- The primary divergence between compensated and failing POH lies in the remodeling pattern, with eccentric remodeling leading to heart failure.
- Deleterious LV remodeling, rather than depressed myocardial function, is the principal determinant of heart failure in pressure overload hypertrophy.
Objectives:
We sought to explore the relative contributions of ventricular remodeling and myocardial dysfunction to heart failure in pressure overload hypertrophy (POH).
Background:
The mechanism that underlies heart failure in POH is adverse left ventricular (LV) chamber remodeling or decreased myocardial function, or a combination of these.
Methods:
Twenty weeks after suprarenal aortic banding in rats, animals with POH were classified as those with heart failure (POH-HF) or those with no heart failure (POH-NHF). The LV chamber and myocardial systolic and diastolic functions were determined from in vivo and ex vivo experiments.
Results:
The LV mass was similar in both POH groups. Chamber remodeling in the POH-HF group was characterized by marked LV enlargement with a normal relative wall thickness (eccentric remodeling), whereas remodeling in the POH-NHF group was characterized by a normal chamber size and increased relative wall thickness (concentric remodeling). The LV systolic function, as determined in vivo from the end-systolic pressure-diameter relationship and ex vivo from the pressure-volume relationship, was lower in the POH-HF group than in the POH-NHF and sham-operated control groups. In contrast, myocardial function was similar in both POH groups, as determined in vivo from the stress-midwall fractional shortening relationship and myocardial systolic stiffness, and ex vivo from the slope of the LV systolic stress-strain relationship. The diastolic chamber stiffness constant was lower in the POH-HF group than in the POH-NHF group, but the myocardial stiffness constant was similar in the two POH groups.
Conclusions:
The two POH groups differed primarily in their remodeling process, which led to a chronically compensated state in one group and to heart failure in the other. Hence, heart failure in POH is more closely related to deleterious LV remodeling than to depressed myocardial function.
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