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Arrhythmias as Presentation of Genetic Cardiomyopathy
J Lukas Laws1, Megan C Lancaster1, M Ben Shoemaker1
1Division of Cardiovascular Medicine, Vanderbilt Heart and Vascular Institute, Vanderbilt University Medical Center, Nashville, TN.
Insights
Genetic cardiomyopathies often present as arrhythmias, even without known heart disease. Genetic testing is crucial for early diagnosis, risk assessment, and targeted therapies, improving outcomes for patients and families.
Area of Science:
- Cardiology
- Genetics
- Electrophysiology
Background:
- Arrhythmias can be the initial manifestation of genetic cardiomyopathies, often misdiagnosed as idiopathic.
- Arrhythmogenic cardiomyopathy spectrum now includes left ventricular involvement, presenting as dilated cardiomyopathy.
- Genetic evaluation is vital for unexplained arrhythmias, conduction disease, and early atrial fibrillation.
Purpose of the Study:
- To highlight the significance of genetic cardiomyopathies presenting with arrhythmias.
- To emphasize the limitations of current risk stratification (e.g., LVEF) for sudden death in these conditions.
- To discuss the clinical management implications, including genetic counseling and emerging therapies.
Main Methods:
- Review of current evidence on genetic cardiomyopathies and arrhythmias.
- Analysis of diagnostic challenges and risk stratification limitations.
- Discussion of clinical management strategies and future therapeutic directions.
Main Results:
- Genetic cardiomyopathies are a significant cause of arrhythmias, often preceding overt heart muscle disease.
- Left ventricular ejection fraction is insufficient for predicting sudden death risk in many genetic cardiomyopathies.
- Genetic diagnoses guide personalized management, including exercise, pharmacotherapy, and cascade screening.
Conclusions:
- Genetic testing is essential for diagnosing cardiomyopathies presenting with arrhythmias.
- Current sudden death risk assessment tools are inadequate for genetic cardiomyopathies.
- Personalized genetic information facilitates tailored interventions, cascade screening, and development of novel therapies.
Abstract:
There is increasing evidence regarding the prevalence of genetic cardiomyopathies, for which arrhythmias may be the first presentation. Ventricular and atrial arrhythmias presenting in the absence of known myocardial disease are often labelled as idiopathic, or lone. While ventricular arrhythmias are well-recognized as presentation for arrhythmogenic cardiomyopathy in the right ventricle, the scope of arrhythmogenic cardiomyopathy has broadened to include those with dominant left ventricular involvement, usually with a phenotype of dilated cardiomyopathy. In addition, careful evaluation for genetic cardiomyopathy is also warranted for patients presenting with frequent premature ventricular contractions, conduction system disease, and early onset atrial fibrillation, in which most detected genes are in the cardiomyopathy panels. Sudden death can occur early in the course of these genetic cardiomyopathies, for which risk is not adequately tracked by left ventricular ejection fraction. Only a few of the cardiomyopathy genotypes implicated in early sudden death are recognized in current indications for implantable cardioverter defibrillators which otherwise rely upon a left ventricular ejection fraction ≤0.35 in dilated cardiomyopathy. The genetic diagnoses impact other aspects of clinical management such as exercise prescription and pharmacological therapy of arrhythmias, and new therapies are coming into clinical investigation for specific genetic cardiomyopathies. The expansion of available genetic information and implications raises new challenges for genetic counseling, particularly with the family member who has no evidence of a cardiomyopathy phenotype and may face a potentially negative impact of a genetic diagnosis. Discussions of risk for both probands and relatives need to be tailored to their numeric literacy during shared decision-making. For patients presenting with arrhythmias or cardiomyopathy, extension of genetic testing and its implications will enable cascade screening, intervention to change the trajectory for specific genotype-phenotype profiles, and enable further development and evaluation of emerging targeted therapies.
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