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Normothermic Ex Situ Heart Perfusion in Working Mode: Assessment of Cardiac Function and Metabolism
Published on: January 12, 2019
Metabolic Modulation of Cardiac Metabolism in Heart Failure
Giuseppe Mc Rosano1, Cristiana Vitale1
1Department of Medical Sciences, IRCCS San Raffaele Pisana Rome, Italy.
Insights
Metabolic therapy, particularly trimetazidine, improves heart failure (HF) symptoms and function by optimizing cardiac metabolism. This approach enhances high-energy phosphate production, offering a new strategy for HF treatment.
Area of Science:
- Cardiology
- Metabolic Medicine
- Pharmacology
Background:
- Heart failure (HF) involves metabolic changes impairing cardiac and skeletal muscle energy production.
- Impaired cardiac metabolism exacerbates HF progression, affecting both systole and diastole.
Purpose of the Study:
- To review the current state of metabolic therapy in heart failure.
- To focus on the role of trimetazidine in managing HF.
Main Methods:
- Review of existing studies on metabolic agents in HF.
- Analysis of trimetazidine's effects on cardiac metabolism and HF outcomes.
Main Results:
- Metabolic agents optimize cardiac substrate metabolism without adverse hemodynamic effects.
- Studies show these agents improve HF symptoms, functional capacity, and prognosis when added to standard therapy.
Conclusions:
- Modulating cardiac metabolism is a key therapeutic strategy for HF, especially of ischemic or metabolic origin.
- Metabolic agents represent a promising, effective treatment strategy for heart failure.
Abstract:
Heart failure (HF) is associated with metabolic changes that cause a progressive impairment of cardiac and skeletal muscle high-energy phosphate production. As a consequence of the impaired cardiac metabolism, other processes are activated in the failing heart that further exacerbate the progression of HF. The reduced production of high-energy phosphates has important implications for both systole and diastole in HF with both preserved and reduced left ventricular function. The aim of this review is to summarise the state-of-the-art on metabolic therapy in HF with a particular focus on trimetazidine. Metabolic agents optimise cardiac substrate metabolism without exerting negative haemodynamic effects. In particular, as studies with metabolic agents modulating cardiac metabolism have consistently demonstrated, this approach is effective in improving symptoms, functional capacity and prognosis in people with HF when added to optimal medical therapy. Therefore, the modulation of cardiac metabolism is an important therapeutic approach to the treatment of HF, especially in patients where it is of ischaemic or metabolic origin. Although further studies are needed, metabolic agents might be a new, effective strategy for the treatment of HF.
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