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PMID: 16138883 Published · ppublish English Journal Article Review

Electrophysiological basis and genetics of Brugada syndrome.

Journal of cardiovascular electrophysiology ·Vol. 16 Suppl 1 ·2005-09-00 ·Pages S3-7

Grant AO

Abstract

Brugada syndrome is a primary arrhythmic syndrome arising in the structurally normal heart. Any proposed mechanism should account for the major features of the syndrome: localization of the ST segment and T-wave changes to the right precordial leads, association of conduction slowing at several levels, precipitation or aggravation of the major ECG changes by sodium channel-blocking drugs and the occurrence of ventricular fibrillation. Heterogeneity of repolarization across the ventricle wall plays a major role. Any agency that shifts the net current gradient during phase I outward would exaggerate the normal heterogeneity of repolarization and result in the ST segment and T-wave changes characteristic of the syndrome. When the outward current shift is marked, premature repolarization may occur in epicardial zone and the resulting gradient may precipitate reentry. The syndrome is inherited as an autosomal dominant. However, 75% of clinically affected individuals are males. In 20% of cases, the syndrome is associated with mutations of the cardiac sodium channel gene SCN5A. The mutations result in a loss-of-function as a result of the synthesis of a non-functional protein, altered protein trafficking, or change in gating. Agencies that reduce the sodium current may precipitate the characteristic ECG changes, for example, sodium channel blockers and membrane depolarization by hyperkalemia. Sympathetic stimulation may reverse the ECG changes and reduce arrhythmia recurrence. By its nonspecific potassium channel blocking action, quinidine may also reduce arrhythmia recurrence. We still do not know the basis for defect in the majority of patients with Brugada syndrome.

MeSH Terms
Bundle-Branch Block/diagnosis,epidemiology,genetics,physiopathology Electrocardiography/methods Genetic Predisposition to Disease/genetics Heart Conduction System/physiopathology Humans Ion Channel Gating/genetics Muscle Proteins/genetics NAV1.5 Voltage-Gated Sodium Channel Polymorphism, Genetic Sodium Channels/genetics Syndrome
Chemicals
Muscle Proteins NAV1.5 Voltage-Gated Sodium Channel SCN5A protein, human Sodium Channels
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Grant Augustus O
Cardiology Division, Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA. grant007@mc.duke.edu
Article Info
Journal
Journal of cardiovascular electrophysiology
Abbr.
J Cardiovasc Electrophysiol
ISSN
1045-3873
Published
2005-09-00
Pages
S3-7
Language
English
Region
United States
NLM ID
9010756
Subset
IM
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