Literature DB >> 10533568

Atrial electrophysiological remodeling caused by rapid atrial activation: underlying mechanisms and clinical relevance to atrial fibrillation.

S Nattel1.   

Abstract

One of the most exciting developments in our understanding of atrial fibrillation (AF) over the last several years has been the recognition that AF itself modifies atrial electrical properties in a way that promotes the occurrence and maintenance of the arrhythmia, a process termed 'atrial remodeling'. The principle stimulus for AF-induced atrial remodeling is the rapid atrial rate that results: rapid regular atrial pacing produces changes similar to those caused by AF in animal models. The mechanisms of atrial tachycardia-induced remodeling have been extensively explored, and involve changes in atrial electrophysiology associated with altered ion channel function. The most important ionic change is a reduction in L-type Ca2+ current, which reduces action potential duration (APD) and APD adaptation to rate. AF-induced changes in ion channel function appear to be due both to rapid voltage- and time-dependent alterations in channel availability caused by tachycardia and to slower downregulation of messenger RNA concentrations encoding alpha-subunits of specific ion channels. Atrial remodeling likely contributes importantly to a wide variety of clinical phenomena of previously unrecognized mechanism, including atrial dysfunction after cardioversion of AF, the increasing resistance to therapy of longer-standing AF, the association of AF with other forms of supraventricular tachyarrhythmia and the tendency of paroxysmal AF to become chronic. The present paper reviews the state of knowledge regarding the mechanisms and clinical consequences for AF of atrial remodeling caused by rapid atrial activation.

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Year:  1999        PMID: 10533568     DOI: 10.1016/s0008-6363(99)00022-x

Source DB:  PubMed          Journal:  Cardiovasc Res        ISSN: 0008-6363            Impact factor:   10.787


  23 in total

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Review 3.  Atrial remodeling, fibrosis, and atrial fibrillation.

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6.  Role of angiotensin-converting enzyme inhibitors and angiotensin receptor blockers in the management of atrial fibrillation.

Authors:  Rafik R Anis
Journal:  Exp Clin Cardiol       Date:  2009

7.  Identification of a KCNE2 gain-of-function mutation in patients with familial atrial fibrillation.

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Journal:  Am J Hum Genet       Date:  2004-09-13       Impact factor: 11.025

8.  Inhibition of atrial fibrillation by low-level vagus nerve stimulation: the role of the nitric oxide signaling pathway.

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Journal:  J Interv Card Electrophysiol       Date:  2012-11-20       Impact factor: 1.900

9.  Remodeling of the left atrium in pacing-induced atrial cardiomyopathy.

Authors:  Brian D Hoit; Yasuchika Takeishi; Michael J Cox; Marorie Gabel; Darryl Kirkpatrick; Richard A Walsh; Suresh C Tyagi
Journal:  Mol Cell Biochem       Date:  2002-09       Impact factor: 3.396

10.  Energetic metabolism during acute stretch-related atrial fibrillation.

Authors:  Jérôme Kalifa; Jean-Michel Maixent; Thierry Chalvidan; Christiane Dalmasso; David Colin; Dragos Cozma; Pierre Laurent; Jean-Claude Deharo; Pierre Djiane; Patrick Cozzone; Monique Bernard
Journal:  Mol Cell Biochem       Date:  2008-06-16       Impact factor: 3.396

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