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Published on: July 21, 2023
Long-Term Caloric Restriction Improves Cardiac Function, Remodeling, Adrenergic Responsiveness, and Sympathetic
Claudio de Lucia1, Giuseppina Gambino1, Laura Petraglia1
1From the Division of Geriatrics, Department of Translational Medical Sciences, Federico II University of Naples, Italy (C.d.L., G.G., L.P., A.E., K.K., G.D.F., M.L.D., R.F., D. Liccardo, D. Leosco, N.F., G.R.); Center for Translational Medicine (C.d.L., D. Liccardo, W.J.K.), Department of Pharmacology (C.d.L., D. Liccardo, W.J.K.) and Cardiovascular Research Center (G.B., S.R.H.), Lewis Katz School of Medicine, Temple University, Philadelphia, PA; Salvatore Maugeri Foundation, IRCCS, Scientific Institute of Telese Terme (BN), Italy (G.G., A.E., M.L.D., M.N., N.F., G.R.); and Neurology Imaging Unit, Imperial College London, United Kingdom (G.D.F.).
Insights
Caloric restriction (CR) improves heart failure by enhancing cardiac function and sympathetic nerve activity. This long-term diet, initiated after heart damage, offers significant cardioprotective benefits in a rat model.
Area of Science:
- Cardiology
- Metabolic Research
- Molecular Biology
Background:
- Chronic ischemic heart failure (HF) is linked to impaired cardiac sympathetic innervation and beta-adrenergic receptor signaling.
- Reduced inotropic reserve is a hallmark of heart failure, impacting overall cardiac function.
Purpose of the Study:
- To investigate the long-term effects of caloric restriction (CR) on cardiac function in a rat model of postischemic heart failure.
- To assess the impact of CR on cardiac sympathetic innervation and beta-adrenergic receptor responsiveness in established heart failure.
Main Methods:
- Adult male rats underwent myocardial infarction or sham surgery, followed by randomization to a 1-year caloric restriction (CR) or normal diet.
- Echocardiography, invasive hemodynamics, and molecular analyses were used to evaluate cardiac structure, function, and signaling pathways.
Main Results:
- Caloric restriction significantly reduced body and heart weight, ameliorated left ventricular remodeling, and improved cardiac inotropic reserve in heart failure rats.
- CR led to increased cardiac sympathetic innervation and normalized beta-adrenergic receptor levels in failing myocardium compared to normal diet-fed rats.
Conclusions:
- Chronic caloric restriction, initiated after heart failure onset, can effectively ameliorate cardiac dysfunction and enhance inotropic reserve.
- CR positively impacts molecular mechanisms by improving sympathetic cardiac innervation and beta-adrenergic receptor levels in the failing heart.
Background:
Caloric restriction (CR) has been described to have cardioprotective effects and improve functional outcomes in animal models and humans. Chronic ischemic heart failure (HF) is associated with reduced cardiac sympathetic innervation, dysfunctional β-adrenergic receptor signaling, and decreased cardiac inotropic reserve. We tested the effects of a long-term CR diet, started late after myocardial infarction on cardiac function, sympathetic innervation, and β-adrenergic receptor responsiveness in a rat model of postischemic HF.
Methods And Results:
Adult male rats were randomly assigned to myocardial infarction or sham operation and 4 weeks later were further randomized to a 1-year CR or normal diet. One year of CR resulted in a significant reduction in body weight, heart weight, and heart weight/tibia length ratio when compared with normal diet in HF groups. At the end of the study period, echocardiography and histology revealed that HF animals under the CR diet had ameliorated left ventricular remodeling compared with HF rats fed with normal diet. Invasive hemodynamic showed a significant improvement of cardiac inotropic reserve in CR HF rats compared with HF-normal diet animals. Importantly, CR dietary regimen was associated with a significant increase of cardiac sympathetic innervation and with normalized cardiac β-adrenergic receptor levels in HF rats when compared with HF rats on the standard diet.
Conclusions:
We demonstrate, for the first time, that chronic CR, when started after HF established, can ameliorate cardiac dysfunction and improve inotropic reserve. At the molecular level, we find that chronic CR diet significantly improves sympathetic cardiac innervation and β-adrenergic receptor levels in failing myocardium.
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