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Updated: Jan 31, 2026

Author Spotlight: Investigating the Underlying Mechanisms of Right Ventricular Failure in Pulmonary Hypertension
Published on: June 14, 2024
PPARdelta activation normalizes cardiac substrate metabolism and reduces right ventricular hypertrophy in congestive
Beat M Jucker1, Christopher P Doe, Christine G Schnackenberg
1Cardiovascular and Urogenital Center of Excellence for Drug Discovery, and Genomics Research, GlaxoSmithKline, King of Prussia, PA 19406, USA.
Abstract:
Previously, it was shown that selective deletion of peroxisome proliferator activated receptor delta (PPARdelta) in the heart resulted in a cardiac lipotoxicity, hypertrophy, and heart failure. The aim of the present study was to determine the effects of chronic and selective pharmacological activation of PPARdelta in a model of congestive heart failure. PPARdelta-specific agonist treatment (GW610742X at 30 and 100 mg/kg/day for 6-9 weeks) was initiated immediately postmyocardial infarction (MI) in Sprague-Dawley rats. Magnetic resonance imaging/spectroscopy was used to assess cardiac function and energetics. A 1-(13)C glucose clamp was performed to assess relative cardiac carbohydrate versus fat oxidation. Additionally, cardiac hemodynamics and reverse-transcription polymerase chain reaction gene expression analysis was performed. MI rats had significantly reduced left ventricle (LV) ejection fractions and whole heart phosphocreatine/adenosine triphosphate ratio compared with Sham animals (reduction of 43% and 14%, respectively). However, GW610742X treatment had no effect on either parameter. In contrast, the decrease in relative fat oxidation rate observed in both LV and right ventricle (RV) following MI (decrease of 58% and 54%, respectively) was normalized in a dose-dependent manner following treatment with GW610742X. These metabolic changes were associated with an increase in lipid transport/metabolism target gene expression (eg, CD36, CPT1, UCP3). Although there was no difference between groups in LV weight or infarct size measured upon necropsy, there was a dramatic reduction in RV hypertrophy and lung congestion (decrease of 22-48%, P<0.01) with treatment which was associated with a >7-fold decrease (P<0.05) in aterial natriuretic peptide gene expression in RV. Diuretic effects were not observed with GW610742X. In conclusion, chronic treatment with a selective PPARdelta agonist normalizes cardiac substrate metabolism and reduces RV hypertrophy and pulmonary congestion consistent with improvement in congestive heart failure.
Insights
Selective activation of PPARdelta in heart failure normalizes fat metabolism and reduces right ventricle hypertrophy and lung congestion. This PPARdelta agonist treatment improved congestive heart failure symptoms in a rat model.
Area of Science:
- Cardiovascular Research
- Metabolic Disease
- Pharmacology
Background:
- Selective deletion of peroxisome proliferator activated receptor delta (PPARdelta) in the heart leads to cardiac lipotoxicity, hypertrophy, and heart failure.
- Understanding the role of PPARdelta in heart failure is crucial for developing new therapeutic strategies.
Purpose of the Study:
- To investigate the effects of chronic, selective pharmacological activation of PPARdelta in a rat model of congestive heart failure.
- To assess the impact of PPARdelta agonism on cardiac function, energetics, substrate metabolism, and structural changes post-myocardial infarction (MI).
Main Methods:
- PPARdelta-specific agonist (GW610742X) treatment initiated post-MI in Sprague-Dawley rats.
- Assessment of cardiac function and energetics using magnetic resonance imaging/spectroscopy.
- Evaluation of cardiac substrate oxidation via 1-(13)C glucose clamp and gene expression analysis.
Main Results:
- MI rats exhibited reduced left ventricle ejection fraction and phosphocreatine/adenosine triphosphate ratio.
- GW610742X treatment normalized the decreased fat oxidation rate in both ventricles post-MI.
- Treatment significantly reduced right ventricle hypertrophy and lung congestion, with associated changes in gene expression.
Conclusions:
- Chronic treatment with a selective PPARdelta agonist normalizes cardiac substrate metabolism in heart failure.
- PPARdelta activation effectively reduces right ventricle hypertrophy and pulmonary congestion, indicating improvement in congestive heart failure.
- The study highlights the therapeutic potential of PPARdelta agonists in managing heart failure complications.
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