Repolarizing K+ currents in rabbit heart Purkinje cells

被引:98
作者
Cordeiro, JM
Spitzer, KW
Giles, WR
机构
[1] Univ Calgary, Sch Med, Dept Physiol & Biophys, Calgary, AB T2N 4N1, Canada
[2] Univ Utah, Sch Med, Nora Eccles Harrison Cardiovasc Res & Training In, Salt Lake City, UT USA
来源
JOURNAL OF PHYSIOLOGY-LONDON | 1998年 / 508卷 / 03期
关键词
D O I
10.1111/j.1469-7793.1998.811bp.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. Electrophysiological experiments on single myocytes obtained from Purkinje fibres and ventricular tissue of adult rabbit hearts were done to compare the contributions of three potassium (K+) currents to the action potentials in these two tissues. 2. In Purkinje cells reductions in extracellular potassium, [K+](o), from normal (5.4 mM) to 2.0 mM resulted in a large hyperpolarization and marked lengthening of the action potential. In ventricular myocytes, these changes were much less pronounced. Voltage clamp measurements demonstrated that these differences were mainly due to a much smaller inward rectifier K+ current, I-K1, in Purkinje cells than in ventricular myocytes. 3. Application of 4-aminopyridine (4-AP, 2 mM) showed that all Purkinje cells exhibited a very substantial Ca2+-independent transient K+ outward current, I-t. 4-AP significantly broadened the early, rapid repolarization phase of the action potential. 4. Selective inhibitors of the fast component, I-K,I-r (MK-499, 200 nar) and the slow component I-K,I-s (L-735821 (propenamide), 20 nM) of the delayed rectifier K+ currents both significantly lengthened the action potential, suggesting that these conductances are present, but very small (< 20 pA) in Purkinje cells. Attempts to identify time-and voltage-dependent delayed rectifier K+ current(s) in Purkinje cells failed, although a slow delayed rectifier was observed in ventricular myocytes. 5. These results demonstrate significant differences in action potential waveform, and underlying K+ currents in rabbit Purkinje and ventricular myocytes. Purkinje cells express a much smaller I-K1, and a larger I-t than ventricular myocytes. These differences in current densities can explain some of the most important electrophysiological properties of these two tissues.
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页码:811 / 823
页数:13
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