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November 20, 2001Circulation322 citations

Molecular Basis of Downregulation of G-Protein–Coupled Inward Rectifying K+Current (IK,ACh) in Chronic Human Atrial Fibrillation

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DDDobromir DobrevEGEva GrafEWErich Wettwer

Key Result

Chronic human atrial fibrillation is associated with an approximately 50% reduction in I(K,ACh) density and decreased GIRK4 mRNA levels compared to sinus rhythm.

Study Design

Type

Observational (n=63)

PICO

P
Population
Chronic atrial fibrillation (n=63)
I
Intervention / Comparator
Chronic atrial fibrillation vs Sinus rhythm
O
Primary Outcome
Density of I(K,ACh) and level of GIRK4 mRNA

Abstract

BACKGROUND: Clinical and experimental evidence suggest that the parasympathetic nervous system is involved in the pathogenesis of atrial fibrillation (AF). However, it is unclear whether changes in G-protein-coupled inward rectifying K(+) current (I(K,ACh)) contribute to chronic AF. METHODS AND RESULTS: In the present study, we used electrophysiological recordings and competitive reverse-transcription polymerase chain reaction to study changes in I(K,ACh) and the level of the I(K,ACh) GIRK4 subunit in isolated human atrial myocytes and the atrial tissue of 39 patients with sinus rhythm and 24 patients with chronic AF. The density of I(K,ACh) was approximately 50% smaller in myocytes from patients with AF compared with those in sinus rhythm, and this was accompanied by decreased levels of GIRK4 mRNA. The current density of the inward rectifying K(+) current (I(K1)) was 2-fold larger during AF than in sinus rhythm, in correspondence with an increase in Kir2.1 mRNA. The larger I(K1) in AF is consistent with more negative membrane potentials in right atrial trabeculae from AF patients. Moreover, action potential duration was reduced in AF, and the action potential shortening produced by muscarinic receptor stimulation was attenuated, indicating that the changes of I(K1) and I(K,ACh) were functionally relevant. CONCLUSIONS: Chronic human AF induces transcriptionally mediated upregulation of I(K1) but downregulation of I(K,ACh) and attenuates the muscarinic receptor-mediated shortening of atrial action potentials. This suggests that atrial myocytes adapt to a chronically high rate by downregulating I(K,ACh) to counteract the shortening of the atrial effective refractory period due to electrical remodeling.

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Cite This Study

Dobrev et al. (2001) conducted an observational in Chronic atrial fibrillation (n=63). Chronic atrial fibrillation vs. Sinus rhythm was evaluated on Density of I(K,ACh) and level of GIRK4 mRNA. Chronic human atrial fibrillation is associated with an approximately 50% reduction in I(K,ACh) density and decreased GIRK4 mRNA levels compared to sinus rhythm.

synapsesocial.com/papers/6a0f808d9e54838161fccc8dhttps://doi.org/10.1161/hc4601.099466
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Electrophysiological properties of diseased human atrium. I. Low diastolic potential and altered cellular response to potassium.1979 · 108 citations
  2. 2Depressed transient outward and calcium currents in dilated human atria1994 · 154 citations
  3. 3Intra-atrial reentry as a mechanism for atrial flutter induced by acetylcholine and rapid pacing in the dog.1984 · 279 citations
  4. 4Cardiac muscarinic receptors decrease with age. In vitro and in vivo studies.1998 · 141 citations
  5. 5Ion Channel Remodeling Is Related to Intraoperative Atrial Effective Refractory Periods in Patients With Paroxysmal and Persistent Atrial Fibrillation2001 · 252 citations