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Prognostic relevance of metabolic approach in patients with heart failure
1Clinica Villa Pini d'Abruzzo, Dipartimento di Cardiologia, Chieti, Italy. dinapoli@unich.it
Insights
Heart failure survival is improving, but mortality from the condition remains high. Trimetazidine shows promise in improving heart function and reducing ventricular remodeling in heart failure patients.
Area of Science:
- Cardiology
- Metabolic Medicine
Background:
- Acute cardiac care advancements have increased survival post-myocardial infarction.
- This has led to a rise in heart failure (HF) prevalence, mortality, and healthcare costs, earning it the title 'epidemic of the 21st century'.
- Despite current treatments, HF patients face poor prognoses due to progressive contractile dysfunction and ventricular remodeling.
Purpose of the Study:
- To evaluate the role of metabolic alterations in myocardial dysfunction in heart failure.
- To investigate the potential of trimetazidine as a therapeutic agent for heart failure.
Main Methods:
- Review of emerging evidence on substrate metabolism alterations in heart failure.
- Analysis of studies investigating trimetazidine's effects on cardiac function, inflammation, endothelial function, and ventricular remodeling.
Main Results:
- Shifting cardiac metabolism from fatty acid oxidation towards carbohydrate oxidation may restore contractile function in failing hearts.
- Trimetazidine has demonstrated improvements in HF symptoms, ventricular function, inflammatory profile, and endothelial function.
- Emerging data suggests trimetazidine may also mitigate ventricular remodeling and slow HF progression.
Conclusions:
- Myocardial dysfunction in heart failure is linked to altered substrate metabolism.
- Trimetazidine shows potential as an effective adjunct therapy for heart failure.
- Further research into trimetazidine's role in reducing ventricular remodeling and improving long-term prognosis is warranted.
Abstract:
Progressions in acute cardiac care have improved survival after acute myocardial infarction, but in contraposition with this, there has been an increase in mortality because of heart failure. For this reason congestive heart failure is an increasingly widespread, costly and deadly disease, frequently named as epidemic of the XXI century. Despite advancement in modern treatment, mortality rate in heart failure patients remains high. In these patients more importance was attributed in the management of the left ventricle dysfunction. In fact, the heart failure patients have still a poor prognosis due to the ineluctable progression of contractile dysfunction and ventricular remodeling. The classical management of left ventricle dysfunction includes the pharmacological treatment with beta-blockers, ACE-inhibitors and aldosterone antagonists, and various surgical or electrophysiological interventions. Emerging evidence suggests that myocardium dysfunction is also due to substrate metabolism alterations. In particular, there is evidence that, in the failing heart, shifting metabolism away from a preference for fatty acids towards more carbohydrate oxidation could recover contractile function. Trimetazidine has been shown to improve symptoms and ventricular function and to have a beneficial effect on the inflammatory profile and endothelial function in these patients. Recently, it has been suggested that trimetazidine could also reduce ventricular remodeling, slowing down the progression of pump failure, and improve prognosis. These results suggest that trimetazidine is a useful adjunct to our current armamentarium for the treatment of heart failure patients.
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