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Published on: December 22, 2023
Molecular mechanisms of inherited arrhythmias
Cordula M Wolf1, Charles I Berul
1Department of Cardiology, Children's Hospital Boston, Department of Pediatrics, Harvard Medical School, Boston, MA, USA.
Insights
Inherited arrhythmias, caused by genetic defects in ion channels and connexins, lead to sudden cardiac death. Understanding these molecular bases enables genotype-specific treatments and targeted therapies for better patient outcomes.
Area of Science:
- Cardiovascular Electrophysiology
- Human Genetics
- Molecular Cardiology
Background:
- Inherited arrhythmias and conduction system diseases are significant causes of sudden cardiac death.
- Genetic defects and molecular disturbances underlie arrhythmogenesis in both structurally normal and altered hearts.
- Congenital heart disease and cardiomyopathies increase the risk of cardiac electrical abnormalities.
Purpose of the Study:
- To review the molecular basis of inherited arrhythmias in structurally normal and altered hearts.
- To summarize recent discoveries in the molecular and functional mechanisms of inherited arrhythmia syndromes.
- To highlight the potential for genotype-specific therapies and pharmacogenomics in cardiac electrophysiology.
Main Methods:
- Review of human genetics and animal model studies.
- Analysis of molecular defects in ion channels and connexins.
- Examination of genotype-phenotype correlations in inherited arrhythmia syndromes.
Main Results:
- Minor cellular and molecular disturbances, particularly in ion channels, can trigger severe arrhythmias.
- Structural heart diseases exacerbate electrical abnormalities, while connexin alterations affect conduction velocity.
- Recent discoveries elucidate mechanisms of long QT syndrome, Brugada syndrome, and catecholaminergic polymorphic ventricular tachycardia.
Conclusions:
- Identification of molecular pathways provides novel therapeutic targets for inherited arrhythmias.
- Genotype-specific screening and treatment strategies are emerging.
- Pharmacogenomics holds promise for personalized management of cardiac electrical disorders.
Abstract:
Inherited arrhythmias and conduction system diseases are known causes of sudden cardiac death and are responsible for significant mortality and morbidity in patients with congenital heart disease and electrical disorders. Knowledge derived from human genetics and studies in animal models have led to the discovery of multiple molecular defects responsible for arrhythmogenesis. This review summarizes the molecular basis of inherited arrhythmias in structurally normal and altered hearts.On the cellular and molecular levels, minor disturbances can provoke severe arrhythmias. Ion channels are responsible for the initiation and propagation of the action potential within the cardiomyocyte. Structural heart diseases, such as hypertrophic or dilated cardiomyopathies, increase the likelihood of cardiac electrical abnormalities. Ion channels can also be up- or down-regulated in congenital heart disease, altering action potential cellular properties and therefore triggering arrhythmias. Conduction velocities may be inhomogeneously altered if connexin function, density or distribution changes. Another important group of electrophysiologic diseases is the heterogeneous category of inherited arrhythmias in the structurally normal heart, with a propensity to sudden cardiac death. There have been many recent relevant discoveries that help explain the molecular and functional mechanisms of long QT syndrome, Brugada syndrome, catecholaminergic polymorphic ventricular tachycardia, and other electrical myopathies. Identification of molecular pathways allows the identification of new therapeutic targets, for both disease palliation and cure. As more disease-causing mutations are identified and genotypic-phenotypic correlation is defined, families can be screened prior to symptom-onset and patients may potentially be treated in a genotype-specific manner, opening the doors of cardiac electrophysiology to the emerging field of pharmacogenomics.
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