DEPOLARIZATION-INDUCED INFLUX OF SODIUM IN RESPONSE TO PHENYLEPHRINE IN RAT ATRIAL HEART-MUSCLE

被引:24
作者
JAHNEL, U
NAWRATH, H
CARMELIET, E
VEREECKE, J
机构
[1] UNIV MAINZ,INST PHARMACOL,W-6500 MAINZ,GERMANY
[2] CATHOLIC UNIV LEUVEN,INST FYS,B-3030 HEVERLEE,BELGIUM
来源
JOURNAL OF PHYSIOLOGY-LONDON | 1991年 / 432卷
关键词
D O I
10.1113/jphysiol.1991.sp018404
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. The effects of alpha-1-adrenoceptor stimulation on transmembrane potential, currents and ion fluxes were investigated in multicellular preparations and/or single cells obtained from the left atrium of rat hearts. 2. In multicellular preparations, phenylephrine caused a concentration-dependent positive inotropic effect, an increase in action potential duration, and a decrease in resting potential; the effects were antagonized by phentolamine. 3. In the presence of phenylephrine (100-mu-mol/l), two levels of resting potential were observed when the preparations were, alternately, electrically stimulated or kept at rest (-74 +/- mV during activity and -62 +/- 4 mV at rest; means +/- S.E.M.; n = 9). 4. In resting preparations, the depolarization in response to phenylephrine was eliminated in low-Na+ solution (12 mmol/l) and antagonized by tetrodotoxin (10-mu-mol/l). 5. The phenylephrine-induced depolarization was also seen in nominally Ca2+-free solution and in the presence of (-)-devapamil (1-mu-mol/l). 6. The alkylating agent N-ethyl-maleimide (30-mu-mol/l) abolished the depolarizing effect of phenylephrine. 7. Phorbol 12,13-dibutyrate (10-mu-mol/l) also abolished the depolarizing effect of phenylephrine. 8. Phenylephrine caused a significant increase of Na-22+ uptake in resting preparations and Ca-45(2+) uptake in beating preparations. 9. The depolarizing effect of phenylephrine was also observed in single atrial myocytes. Steady-state membrane currents in response to 500 ms depolarizing and hyperpolarizing voltage clamp steps were decreased. The cross-over of I-V curves under control and test conditions was at about -70 mV. The effects of phenylephrine were antagonized in the presence of phentolamine. 10. After suppression of potassium currents by substitution of CsCl for internal and external KCl ([KCl]i and [KCl]0), phenylephrine had no effect on membrane currents. 11. In conclusion, we presume the following sequence of events in response to phenylephrine in rat atrial heart muscle. First, the stimulation of alpha-1-adrenoceptors decreases the K+ conductance thereby producing a depolarization in the presence of an inward current. Second, the change of the membrane potential in the depolarizing direction induces a TTX-sensitive Na+ window current which further propels the depolarization. Third, the increase in Na+ influx may increase Ca2+ influx by activating the Na+-Ca2+ exchange mechanism. The greater influx of Ca2+ may contribute to the positive inotropic effect in response to phenylephrine.
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页码:621 / 637
页数:17
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