Cholesterol lowering attenuates pressure overload-induced heart failure in mice with mild hypercholesterolemia

Ilayaraja Muthuramu1, Mudit Mishra1, Joseph Pierre Aboumsallem1

  • 1Centre for Molecular and Vascular Biology, Department of Cardiovascular Sciences, Catholic University of Leuven, Leuven 3000, Belgium.

Aging
|September 5, 2019
PubMed

Insights

Cholesterol lowering gene therapy using adeno-associated viral serotype 8 (AAV8)-mediated low-density lipoprotein receptor (LDLr) gene transfer effectively reduced cardiac remodeling and oxidative stress in mice with mild hypercholesterolemia.

Area of Science:

  • Cardiovascular Biology
  • Gene Therapy
  • Metabolic Disorders

Background:

  • Non-high-density lipoprotein cholesterol is linked to heart failure incidence.
  • Hypercholesterolemia contributes to cardiac remodeling and dysfunction.
  • Pressure overload models mimic heart failure conditions.

Purpose of the Study:

  • To investigate the impact of AAV8-mediated LDLr gene transfer on cardiac remodeling and oxidative stress.
  • To assess the efficacy of cholesterol-lowering gene therapy in a mouse model of heart failure.
  • To evaluate the effects on cardiac function and fibrosis following transverse aortic constriction (TAC).

Main Methods:

  • Utilized female C57BL/6 LDLr knockout mice with mild hypercholesterolemia.
  • Administered AAV8-mediated LDLr gene transfer to lower cholesterol levels.
  • Induced pressure overload via TAC and assessed cardiac structure, function, and molecular markers.

Main Results:

  • Gene therapy significantly reduced plasma cholesterol by 65.9%.
  • AAV8-LDLr treatment decreased left ventricular wall area, pro-hypertrophic proteins, and fibrosis.
  • Improved cardiac systolic and diastolic function, reduced lung congestion, and counteracted myocardial oxidative stress.

Conclusions:

  • Cholesterol-lowering gene therapy attenuates pressure overload-induced heart failure.
  • Targeting LDLr with AAV8 is a promising strategy for managing hypercholesterolemia-related heart conditions.
  • Preservation of myocardial fatty acid oxidation contributes to improved cardiac health.

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