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心脏浦肯野纤维中的兴奋-收缩偶联。咖啡因对细胞内[Ca2+]瞬变、膜电流和收缩的影响。

Excitation-contraction coupling in cardiac Purkinje fibers. Effects of caffeine on the intracellular [Ca2+] transient, membrane currents, and contraction.

作者信息

Hess P, Wier W G

出版信息

J Gen Physiol. 1984 Mar;83(3):417-33. doi: 10.1085/jgp.83.3.417.

Abstract

The effects of caffeine on tension, membrane potential, membrane currents, and intracellular [Ca2+], measured as the light emitted by the Ca2+-activated photoprotein aequorin, were studied in canine cardiac Purkinje fibers. An initial, transient, positive inotropic effect of caffeine was accompanied by a transient increase in the second component of the aequorin signal (L2) but not the first (L1). In the steady state, 4 or 10 mM caffeine always decreased twitch tension and greatly reduced both L1 and L2. At a concentration of 2 mM, caffeine usually reduced but occasionally increased the steady state twitch tension. However, 2 mM caffeine always reduced both L1 and L2. Caffeine eliminated the diastolic oscillations of intracellular [Ca2+] induced by high extracellular [Ca2+]. In voltage-clamp experiments, 10 mM caffeine reduced the transient outward current and the peak tension elicited by step depolarization from a holding potential of -45 mV. In the presence of 20 mM Cs+, 10 mM caffeine reduced slow inward current. However, the time course of this reduction was far slower than that in tension and light observed in separate experiments. The simplest explanation of the results is that caffeine inhibits the sequestration of Ca2+ by the sarcoplasmic reticulum. The results also suggest that in Purkinje fibers caffeine increases the sensitivity of the myofilaments to Ca2+.

摘要

在犬心脏浦肯野纤维中,研究了咖啡因对张力、膜电位、膜电流以及细胞内[Ca2+](以Ca2+激活的光蛋白水母发光蛋白发出的光来测量)的影响。咖啡因最初产生的短暂正性肌力作用伴随着水母发光蛋白信号第二成分(L2)的短暂增加,但第一成分(L1)未增加。在稳态下,4或10 mM咖啡因总是降低抽搐张力,并极大地降低L1和L2。在2 mM浓度时,咖啡因通常降低但偶尔会增加稳态抽搐张力。然而,2 mM咖啡因总是降低L1和L2。咖啡因消除了高细胞外[Ca2+]诱导的细胞内[Ca2+]的舒张期振荡。在电压钳实验中,10 mM咖啡因降低了从-45 mV的钳制电位进行阶跃去极化所诱发的瞬时外向电流和峰值张力。在存在20 mM Cs+的情况下,10 mM咖啡因降低了慢内向电流。然而,这种降低的时间进程远比在单独实验中观察到的张力和光的时间进程慢得多。对结果最简单的解释是咖啡因抑制了肌浆网对Ca2+的摄取。结果还表明,在浦肯野纤维中咖啡因增加了肌丝对Ca2+的敏感性。

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