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Role of action potential configuration and the contribution of C²⁺a and K⁺ currents to isoprenaline-induced changes in canine ventricular cells.

Authors :
Szentandrássy N
Farkas V
Bárándi L
Hegyi B
Ruzsnavszky F
Horváth B
Bányász T
Magyar J
Márton I
Nánási PP
Szentandrássy, N
Farkas, V
Bárándi, L
Hegyi, B
Ruzsnavszky, F
Horváth, B
Bányász, T
Magyar, J
Márton, I
Nánási, P P
Source :
British Journal of Pharmacology; Oct2012, Vol. 167 Issue 3, p599-611, 13p
Publication Year :
2012

Abstract

<bold>Background and Purpose: </bold>Although isoprenaline (ISO) is known to activate several ion currents in mammalian myocardium, little is known about the role of action potential morphology in the ISO-induced changes in ion currents. Therefore, the effects of ISO on action potential configuration, L-type Ca²⁺ current (I(Ca)), slow delayed rectifier K⁺ current (I(Ks)) and fast delayed rectifier K⁺ current (I(Kr)) were studied and compared in a frequency-dependent manner using canine isolated ventricular myocytes from various transmural locations.<bold>Experimental Approach: </bold>Action potentials were recorded with conventional sharp microelectrodes; ion currents were measured using conventional and action potential voltage clamp techniques.<bold>Key Results: </bold>In myocytes displaying a spike-and-dome action potential configuration (epicardial and midmyocardial cells), ISO caused reversible shortening of action potentials accompanied by elevation of the plateau. ISO-induced action potential shortening was absent in endocardial cells and in myocytes pretreated with 4-aminopyridine. Application of the I(Kr) blocker E-4031 failed to modify the ISO effect, while action potentials were lengthened by ISO in the presence of the I(Ks) blocker HMR-1556. Both action potential shortening and elevation of the plateau were prevented by pretreatment with the I(Ca) blocker nisoldipine. Action potential voltage clamp experiments revealed a prominent slowly inactivating I(Ca) followed by a rise in I(Ks) , both currents increased with increasing the cycle length.<bold>Conclusions and Implications: </bold>The effect of ISO in canine ventricular cells depends critically on action potential configuration, and the ISO-induced activation of I(Ks) - but not I(Kr) - may be responsible for the observed shortening of action potentials. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00071188
Volume :
167
Issue :
3
Database :
Complementary Index
Journal :
British Journal of Pharmacology
Publication Type :
Academic Journal
Accession number :
104303668
Full Text :
https://doi.org/10.1111/j.1476-5381.2012.02015.x