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Published on: February 22, 2018
[Primary electrical heart disease in adulthood--electrophysiological findings and therapy]
R Schimpf1, J Kuschyk, C Veltmann
1I. Medizinische Klinik, Universitätsklinikum Mannheim, Theodor-Kutzer-Ufer 1-3, 68167 Mannheim. rainer.schimpf@med.ma.uni-heidelberg.de
Insights
Sudden cardiac death affects 100,000 Germans annually. In younger individuals, primary electrical heart diseases like Brugada syndrome are key causes, necessitating genetic screening for targeted therapy.
Area of Science:
- Cardiology
- Genetics
- Electrophysiology
Context:
- Sudden cardiac death (SCD) impacts 100,000 individuals in Germany yearly.
- While structural heart disease is common, 5-10% of SCDs occur in patients without apparent structural abnormalities.
- This percentage rises to 10-20% in younger patients (<40 years).
Purpose:
- To explore the causes and diagnostic approaches for sudden cardiac death, particularly in younger individuals without structural heart disease.
- To highlight the role of primary electrical heart diseases and molecular genetic screening in understanding SCD.
- To review current diagnostic and therapeutic strategies, including implantable cardioverter-defibrillators and potential genotype-guided treatments.
Summary:
- Younger SCD patients often have primary electrical diseases (e.g., Long QT syndrome, Brugada syndrome) rather than structural issues.
- Molecular genetic screening identifies specific ion channel mutations causing these conditions.
- While implantable cardioverter-defibrillators are standard for symptomatic patients, future genotype-guided therapies hold promise.
Impact:
- Advances in molecular genetics enable precise identification of ion channel defects underlying SCD.
- This knowledge facilitates a deeper understanding of arrhythmogenesis.
- Future research may lead to personalized, genotype-guided therapies for preventing sudden cardiac death.
Abstract:
Sudden cardiac death accounts for 100,000 victims in Germany per year. Predominantly, patients with structural heart disease such as coronary artery disease or dilated cardiomyopathy are affected. However, approximately 5-10% of sudden deaths hit patients without structural disease of the heart. The proportion of young patients (< 40 years of age) in this group is even higher (10-20%). In younger patients significantly more diseases like hypertrophic cardiomyopathy, arrhythmogenic right ventricular dysplasia and primary electrical diseases of the heart could be observed such as long QT syndrome, short QT syndrome, Brugada syndrome and catecholaminergic polymorphic ventricular tachycardia. The primary electrical diseases are different concerning their electrocardiographical pattern, clinical triggers of arrhythmias, results of invasive diagnostics and therapy. Meanwhile, molecular genetic screening can reveal specific mutations of ion channels and can identify consecutive functional defects. The significance of programmed ventricular stimulation is at present unclear concerning risk stratification in patients with Brugada syndrome and short QT syndrome and of no significance in long QT syndrome and catecholaminergic polymorphic ventricular tachycardias. The implantable cardioverter defibrillator is the therapy of choice in most symptomatic patients. With increasing knowledge as a result of sophisticated molecular genetic screening, identification of underlying ion channel defects and new details of the mechanisms of arrhythmogenesis, a potential genotype-guided therapy will gain more importance in the future.
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