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.
Abstract

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