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October 17, 2005Circulation192 citations

Molecular Basis of Arrhythmias

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MSManish H. ShahFAFadi G. AkarGTGordon F. Tomaselli

Key Result

Characterization of single gene disorders and pathological remodeling of ionic currents provides insights into the fundamental mechanisms of inherited and acquired cardiac arrhythmias.

Key Points

  • Summarize the molecular and cellular mechanisms governing cardiac electrical activity to clarify the fundamental pathophysiology of inherited and acquired arrhythmias.
  • Synthesized molecular, genetic, and electrophysiological findings on primary electrical heart diseases and acquired arrhythmogenic states.
  • Evaluated the impact of ion channel subunit gene mutations and structural electrical remodeling on cardiac conduction.
  • Linked single gene mutations in ion channel subunits directly to primary arrhythmogenic disorders, including long-QT syndrome, short-QT syndrome, Brugada syndrome, and catecholaminergic polymorphic ventricular tachycardia.
  • Identified pathological remodeling of ionic currents and tissue-level network properties as critical drivers in initiating and sustaining acquired cardiac arrhythmias.

PICO

P
Population
Cardiac arrhythmias

Abstract

The characterization of single gene disorders has provided important insights into the molecular pathogenesis of cardiac arrhythmias. Primary electrical diseases including long-QT syndrome, short-QT syndrome, Brugada syndrome, and catecholaminergic polymorphic ventricular tachycardia have been associated with mutations in a variety of ion channel subunit genes that promote arrhythmogenesis. Pathological remodeling of ionic currents and network properties of the heart critical for normal electrical propagation plays a critical role in the initiation and maintenance of acquired arrhythmias. This review focuses on the molecular and cellular basis of electrical activity in the heart under normal and pathophysiological conditions to provide insights into the fundamental mechanisms of inherited and acquired cardiac arrhythmias. Improved understanding of the basic biology of cardiac arrhythmias holds the promise of identifying new molecular targets for the treatment of cardiac arrhythmias.

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Cite This Study

Shah et al. (2005) conducted a review in Cardiac arrhythmias. Characterization of single gene disorders and pathological remodeling of ionic currents provides insights into the fundamental mechanisms of inherited and acquired cardiac arrhythmias.

synapsesocial.com/papers/6a11f8ce48c8e5314fad1113https://doi.org/10.1161/circulationaha.104.494476
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