Abstract
Peroxisomal proliferator-activated receptor (PPAR)-α is a ligand-activated transcriptional factor that regulates genes involved in lipid metabolism and energy homeostasis. PPAR-α activators, including fibrates, have been used to treat dyslipidemia for several decades. In contrast to their known effects on lipids, the pharmacological consequences of PPAR-α activation on cardiac metabolism and function are not well understood. Therefore, we evaluated the role that PPAR-α receptors play in the heart. Our studies demonstrate that activation of PPAR-α receptors using a selective PPAR-α ligand results in cardiomyocyte necrosis in mice. Studies in PPAR-α-deficient mice demonstrated that cardiomyocyte necrosis is a consequence of the activation of PPAR-α receptors. Cardiac fatty acyl-CoA oxidase mRNA levels increased at doses in which cardiac damage was observed and temporally preceded cardiomyocyte degeneration, suggesting that peroxisomal β-oxidation correlates with the appearance of microscopic injury and cardiac injury biomarkers. Increased myocardial oxidative stress was evident in mice treated with the PPAR-α agonists coinciding with increased peroxisomal biomarkers of fatty acid oxidation. These findings suggest that activation of PPAR-α leads to increased cardiac fatty acid oxidation and subsequent accumulation of oxidative stress intermediates resulting in cardiomyocyte necrosis. Copyright © American Society for Investigative Pathology.
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CITATION STYLE
Pruimboom-Brees, I., Haghpassand, M., Royer, L., Brees, D., Aldinger, C., Reagan, W., … Francone, O. L. (2006). A critical role for peroxisomal proliferator-activated receptor-α nuclear receptors in the development of cardiomyocyte degeneration and necrosis. American Journal of Pathology, 169(3), 750–760. https://doi.org/10.2353/ajpath.2006.051110
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