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Genetic Atrial Cardiomyopathies: Common Features, Specific Differences, and Broader Relevance to Understanding Atrial
Edouard Marcoux1,2, Deanna Sosnowski1,3, Sandro Ninni1,4
1Research Center, Montreal Heart Institute, Université de Montréal. (E.M., D.S., S. Ninni, M.M., S. Nattel).
Insights
Genetic atrial-selective cardiomyopathy (ASCM) involves rare variants affecting heart and other tissues. This review analyzes ASCM
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Atrial cardiomyopathy (AC) involves atrial dysfunction, often alongside ventricular issues.
- Isolated atrial-selective cardiomyopathy (ASCM) is rare, linked to genetic variants affecting cardiac and extracardiac tissues.
- Atrial enlargement and fibrillation are common ASCM complications.
Purpose of the Study:
- To review literature on genetic ASCM, focusing on molecular pathogenesis and phenotypic spectrum.
- To identify genotype-specific features of ASCM and its arrhythmias.
- To correlate in vitro/in vivo research findings with patient outcomes.
Main Methods:
- Literature review of genetic ASCM studies.
- Analysis of basic research models (in vitro and in vivo).
- Correlation of genetic findings with clinical patient data.
Main Results:
- Identified genes involved in ASCM impact diverse biological functions.
- ASCM presents with distinct features and arrhythmias related to specific genotypes.
- Research models provide insights into ASCM pathogenesis and clinical outcomes.
Conclusions:
- A comprehensive understanding of genetic ASCM pathogenesis and treatment is still developing.
- Further research into genetic ASCM can illuminate common forms of atrial cardiomyopathy.
- Improved models and investigations are needed for genetic ASCM patients.
Abstract:
Atrial cardiomyopathy is a condition that causes electrical and contractile dysfunction of the atria, often along with structural and functional changes. Atrial cardiomyopathy most commonly occurs in conjunction with ventricular dysfunction, in which case it is difficult to discern the atrial features that are secondary to ventricular dysfunction from those that arise as a result of primary atrial abnormalities. Isolated atrial cardiomyopathy (atrial-selective cardiomyopathy [ASCM], with minimal or no ventricular function disturbance) is relatively uncommon and has most frequently been reported in association with deleterious rare genetic variants. The genes involved can affect proteins responsible for various biological functions, not necessarily limited to the heart but also involving extracardiac tissues. Atrial enlargement and atrial fibrillation are common complications of ASCM and are often the predominant clinical features. Despite progress in identifying disease-causing rare variants, an overarching understanding and approach to the molecular pathogenesis, phenotypic spectrum, and treatment of genetic ASCM is still lacking. In this review, we aim to analyze the literature relevant to genetic ASCM to understand the key features of this rather rare condition, as well as to identify distinct characteristics of ASCM and its arrhythmic complications that are related to specific genotypes. We outline the insights that have been gained using basic research models of genetic ASCM in vitro and in vivo and correlate these with patient outcomes. Finally, we provide suggestions for the future investigation of patients with genetic ASCM and improvements to basic scientific models and systems. Overall, a better understanding of the genetic underpinnings of ASCM will not only provide a better understanding of this condition but also promises to clarify our appreciation of the more commonly occurring forms of atrial cardiomyopathy associated with ventricular dysfunction.
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