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October 1, 1999Cardiovascular Research582 citationsOpen Access

Ionic mechanisms of electrical remodeling in human atrial fibrillation

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RBRalph Bosch

Key Result

Chronic atrial fibrillation was associated with shortened action potential duration and an approximate 70% reduction in L-type calcium and transient outward currents compared to stable sinus rhythm.

Key Points

  • This research aims to explore the ionic mechanisms contributing to electrical remodeling in human atrial fibrillation (AF).
  • Studied action potentials and ionic currents using the patch clamp technique in single atrial myocytes.
  • Compared cellular activity from patients with chronic AF to those in stable sinus rhythm.
  • AF associated with a significant shortening of action potential duration and reduced atrial repolarization response.
  • L-type calcium current (ICa,L) and transient outward current (Ito) decreased by ~70% in AF.
  • Increased outward currents and potassium currents (IKI, IKACh) were noted at different potentials in AF.

Study Design

Type

Observational

PICO

P
Population
Chronic atrial fibrillation
I
Intervention / Comparator
Chronic atrial fibrillation (exposure) vs Stable sinus rhythm
O
Primary Outcome
Action potentials and ionic currents (ICa,L, Ito, IKI, IKACh, INa)

Abstract

OBJECTIVES: Atrial fibrillation (AF) is associated with a decrease in atrial ERP and ERP adaptation to rate as well as changes in atrial conduction velocity. The cellular changes in repolarization and the underlying ionic mechanisms in human AF are only poorly understood. METHODS: Action potentials (AP) and ionic currents were studied with the patch clamp technique in single atrial myocytes from patients in chronic AF and compared to those from patients in stable sinus rhythm (SR). RESULTS: The presence of AF was associated with a marked shortening of the AP duration and a decreased rate response of atrial repolarization. L-type calcium current (ICa,L) and the transient outward current (Ito) were both reduced about 70% in AF, whereas an increased steady-state outward current was detectable at test potentials between -30 and 0 mV. The inward rectifier potassium current (IKI) and the acetylcholine-activated potassium current (IKACh) were increased in AF at hyperpolarizing potentials. Voltage-dependent inactivation of the fast sodium current (INa) was shifted to more positive voltages in AF. CONCLUSIONS: AF in humans leads to important changes in atrial potassium and calcium currents that likely contribute to the decrease in APD and APD rate adaptation. These changes contribute to electrical remodeling in AF and are therefore important factors for the perpetuation of the arrhythmia.

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Cite This Study

Ralph Bosch (1999) conducted an observational in Chronic atrial fibrillation. Chronic atrial fibrillation (exposure) vs. Stable sinus rhythm was evaluated on Action potentials and ionic currents (ICa,L, Ito, IKI, IKACh, INa). Chronic atrial fibrillation was associated with shortened action potential duration and an approximate 70% reduction in L-type calcium and transient outward currents compared to stable sinus rhythm.

synapsesocial.com/papers/6a0f808d9e54838161fccc91https://doi.org/10.1016/s0008-6363(99)00178-9
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Also Consider

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

  1. 1Properties of human atrial ICa at physiological temperatures and relevance to action potential1997 · 107 citations
  2. 2Two types of transient outward currents in adult human atrial cells1987 · 230 citations
  3. 3Adenosine-induced changes in atrial action potential: contribution of Ca and K currents1990 · 47 citations
  4. 4Transient outward and delayed rectifier currents in canine atrium: properties and role of isolation methods1996 · 156 citations
  5. 5Identity of a novel delayed rectifier current from human heart with a cloned K+ channel current.1993 · 354 citations