Pleiotropic Effects of Cardiac Resynchronization Therapy on Cardiometabolic Modulation in Heart Failure
Panagiotis Theofilis1, Panagiotis Iliakis1, Aikaterini-Eleftheria Karanikola1
1First Department of Cardiology, National and Kapodistrian University of Athens, Hippokration General Hospital of Athens, 115 27 Athens, Greece.
Insights
Cardiac resynchronization therapy (CRT) improves heart failure outcomes by enhancing mechanical efficiency and restoring cardiometabolic function. This therapy normalizes energy metabolites and improves substrate utilization, benefiting patients with advanced heart failure.
Area of Science:
- Cardiology
- Metabolic Medicine
- Biomedical Engineering
Background:
- Cardiac resynchronization therapy (CRT) is a key treatment for heart failure (HF) patients with electrical dyssynchrony.
- Evidence suggests CRT offers benefits beyond mechanical synchrony, impacting cardiometabolic processes.
Purpose of the Study:
- To review the emerging data on how CRT influences myocardial energy metabolism.
- To discuss CRT's effects on ventricular-arterial interactions and peripheral metabolic pathways.
Main Methods:
- Review of existing literature on CRT's metabolic and mechanical effects.
- Analysis of metabolomic profiling studies in CRT patients.
- Correlation of metabolic changes with cardiac remodeling and function.
Main Results:
- CRT enhances myocardial efficiency and shifts substrate utilization towards fatty acids and ketones.
- Metabolomic studies show CRT normalizes energy metabolites and improves glucose-lipid balance.
- Metabolic adaptations correlate with improved diastolic function, RV function, and ventriculo-arterial coupling.
Conclusions:
- CRT provides both mechanical and metabolic restoration in advanced heart failure.
- CRT reconditions myocardial energy metabolism and influences systemic metabolic pathways.
- Understanding these mechanisms may help differentiate CRT responders and optimize therapy.
Abstract:
Cardiac resynchronization therapy (CRT) is a cornerstone intervention for patients with heart failure (HF) and electrical dyssynchrony, improving quality of life, functional capacity, and survival. Beyond mechanical synchrony, mounting evidence suggests CRT exerts systemic and myocardial cardiometabolic benefits. CRT acutely enhances mechanical efficiency and shifts substrate utilization toward greater oxidation of fatty acids and ketones, effects that correlate with long-term reverse remodeling on cardiac magnetic resonance imaging. Earlier metabolomic profiling demonstrated that CRT normalizes circulating energy metabolites, improving Krebs cycle intermediates and substrate balance between glucose and lipids, while baseline metabolite patterns may differentiate responders from non-responders. These metabolic adaptations accompany favorable changes in diastolic performance, right ventricular function, and ventriculo-arterial coupling. In parallel, improved splanchnic perfusion and reduced congestion may ameliorate gut dysbiosis and endotoxemia, mitigating systemic inflammation. Collectively, these findings position CRT as a therapy capable of both mechanical and metabolic restoration in advanced HF. In this review, we discuss the emerging data on how CRT reconditions myocardial energy metabolism, influences ventricular-arterial interactions, and modulates peripheral and gut-derived metabolic pathways.
More Related Videos
Related Concept Videos
Heart Failure Drugs: Inhibitors of Renin-Angiotensin System
Cardiomyopathy V: Interprofessional Care
Heart Failure V: Medical Management
Cardiomyopathy II: Dilated Cardiomyopathy
Cardiomyopathy III: Hypertrophic Cardiomyopathy
Heart Failure VI: Adjunct Therapies


