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May 11, 2007Cardiovascular Research158 citationsOpen Access

Early electrical remodeling in rabbit pulmonary vein results from trafficking of intracellular SK2 channels to membrane sites

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NÖNazira ÖzgenWDWen DunESEugene A. Sosunov

Key Result

A 3-hour intermittent burst pacing protocol induced acceleration of repolarization in rabbit pulmonary veins resulting from SK2 channel trafficking to the membrane.

Structured PICO

Does a burst pacing protocol induce early electrical remodeling via SK channel trafficking in rabbit pulmonary veins?

P
Population
Isolated rabbit left atria and cells dispersed from pulmonary vein (PV) and Bachmann's bundle (BB) regions
I
Intervention
3-h intermittent burst pacing protocol (BPP) mimicking ectopic pulmonary vein foci
C
Comparator
Sham-paced atria
O
Outcome
Action potential duration (APD) and apamin-sensitive currentssurrogate

Burst pacing induces early electrical remodeling in rabbit pulmonary veins through the trafficking of SK2 channels to the cell membrane, providing a potential mechanism for the evolution of an arrhythmogenic substrate in atrial fibrillation.

Abstract

OBJECTIVE: Atrial fibrillation is often initiated by bursts of ectopic activity arising in the pulmonary veins. We have previously shown that a 3-h intermittent burst pacing protocol (BPP), mimicking ectopic pulmonary vein foci, shortens action potential duration (APD) locally at the pulmonary vein-atrial interface (PV) while having no effect elsewhere in rabbit atrium. This shortening is Ca(2+) dependent and is prevented by apamin, which blocks small conductance Ca(2+)-activated K(+) channels (SK(Ca)). The present study investigates the ionic and molecular mechanisms whereby two apamin-sensitive SK(Ca) channels, SK2 and SK3, might contribute to the regional APD changes. METHODS: Microelectrode and patch clamp techniques were used to record APDs and apamin-sensitive currents in isolated rabbit left atria and cells dispersed from PV and Bachmann's bundle (BB) regions. SK2 and SK3 mRNA and protein levels were quantified, and immunofluorescence was used to observe channel protein distribution. RESULTS: There was a direct relationship between APD shortening and apamin-sensitive current in burst-paced but not sham-paced PV. Moreover, apamin-sensitive current density increased in PV but not BB after BPP. SK2 mRNA, protein, and current were increased in PV after BPP, while SK2 immunostaining shifted from a perinuclear pattern in sham atria to predominance at sites near or at the PV membrane. CONCLUSIONS: BPP-induced acceleration of repolarization in PV results from SK2 channel trafficking to the membrane, leading to increased apamin-sensitive outward current. This is the first indication of involvement of Ca(2+)-activated K(+) currents in atrial remodeling and provides a possible basis for evolution of an arrhythmogenic substrate.

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Cite This Study

Özgen et al. (2007) studied Atrial fibrillation. 3-h intermittent burst pacing protocol (BPP) vs. sham-paced was evaluated on Action potential duration (APD) shortening and apamin-sensitive current density. A 3-hour intermittent burst pacing protocol induced acceleration of repolarization in rabbit pulmonary veins resulting from SK2 channel trafficking to the membrane.

synapsesocial.com/papers/6a6cd58b78a11c550e07ae4dhttps://doi.org/10.1016/j.cardiores.2007.05.008
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