Pharmacological exploration of the resting membrane potential reserve: Impact on atrial fibrillation

Publication date

2016-01-15

Authors

van der Heyden, MAGORCID 0000-0002-4225-7942ISNI 0000000391802748
Jespersen, Thomas

Editors

Advisors

Supervisors

Document Type

Article

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License

taverne

Abstract

The cardiac action potential arises and spreads throughout the myocardium as a consequence of highly organized spatial and temporal expression of ion channels conducting Na(+), Ca(2+) or K(+) currents. The cardiac Na(+) current is responsible for the initiation and progression of the action potential. Altered Na(+) current has been found implicated in a number of different arrhythmias, including atrial fibrillation. In the atrium, the resting membrane potential is more depolarized than in the ventricles, and as cardiac Na(+) channels undergo voltage-dependent inactivation close to this potential, minor changes in the membrane potential have a relatively large impact on the atrial Na(+) current. The atrial resting membrane potential is established following ionic currents through the inwardly rectifying K(+) currents IK1, IK,ACh and IK,Ca and to a lesser extent by other ion channels as well as by exchangers and pumps. This review will focus on the relative and regulated contribution of IK1, IK,ACh and IK,Ca, and on pharmacological modification of the channels underlying these currents in respect to the resting membrane potential, Na(+) channel availability and atrial electrophysiology in health and disease.

Keywords

IK1, IK,ACh, IK,Ca, INa, Restingmembranepotential, Atrial fibrillation, Taverne, Journal Article, Research Support, Non-U.S. Gov't, Review

Citation

van der Heyden, MAG & Jespersen, T 2016, 'Pharmacological exploration of the resting membrane potential reserve : Impact on atrial fibrillation', European Journal of Pharmacology, vol. 771, pp. 56-64. https://doi.org/10.1016/j.ejphar.2015.11.026