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Molecular Pathogenesis of Arrhythmogenic Cardiomyopathy: Mechanisms and Therapeutic Perspectives
Eliza Popa1,2, Sorin Hostiuc1,2
1National Institute of Legal Medicine, 042122 Bucharest, Romania.
Insights
Arrhythmogenic cardiomyopathy (ACM) is a genetic heart condition causing cell loss and fibrofatty replacement, increasing sudden death risk. This review explores pathogenic pathways and emerging therapies targeting ACM
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Arrhythmogenic cardiomyopathy (ACM) is a genetic cardiac disease causing cardiomyocyte loss and fibrofatty replacement.
- It leads to ventricular arrhythmias and sudden cardiac death, particularly in young individuals.
- Exercise exacerbates ACM progression, and current treatments are largely palliative.
Purpose of the Study:
- To review pathogenic molecular pathways in ACM development.
- To highlight emerging therapies targeting disease modification.
- To underscore the need for a deeper understanding of ACM pathogenesis.
Main Methods:
- Review of scientific literature on ACM.
- Analysis of molecular and cellular mechanisms.
- Inclusion of insights from animal models and induced pluripotent stem cells.
Main Results:
- Complex molecular and cellular mechanisms link genetic mutations to cardiac anomalies.
- Advances in understanding ACM pathogenesis through murine models and iPSCs.
- Identification of emerging therapeutic strategies for disease modification.
Conclusions:
- Current ACM therapies are palliative, necessitating novel approaches.
- Understanding molecular pathways is crucial for developing targeted treatments.
- Future therapies aim to modify ACM progression rather than just prevent events.
Abstract:
Arrhythmogenic cardiomyopathy (ACM) is a genetic cardiac disease characterized by a progressive loss of cardiomyocytes associated with fibrofatty myocardial replacement, resulting in a heightened risk of ventricular arrhythmias and sudden cardiac death. ACM is a common cause of sudden death in young individuals, and exercise has been proven to be a factor in disease progression. Current therapeutic strategies, including lifestyle modification, antiarrhythmic pharmacological therapy, catheter ablation, and the placement of implantable cardioverter-defibrillators, remain primarily palliative options rather than addressing the underlying molecular substrate. The pathogenesis of ACM includes complex molecular and cellular mechanisms, linking genetic mutations to structural and electrical anomalies of the ventricle. The lack of targeted therapies contributes to a challenging approach to the disease. It highlights the need for a better understanding of the mechanisms that lead to myocardial remodeling and arrhythmic predisposition. With the help of animal models (especially murine) and induced pluripotent stem cells, there have been advances in understanding the molecular pathogenesis of ACM. In this review, we summarized some of the pathogenic molecular pathways involved in the development of ACM and emerging therapies targeted towards disease modification, not just prevention.
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