Ito Y, Kuriyama H
J Gen Physiol. 1971 Apr;57(4):448-63. doi: 10.1085/jgp.57.4.448.
The effects of caffeine (0.2-10 mM) on the electrical and mechanical activities of guinea pig taenia coli were investigated with the double sucrose-gap method. Caffeine evoked a small tension with a latency of 20-30 sec, then phasic contraction developed and finally relaxation. The initial tension development also appeared in the Na-free solution without any marked changes in the membrane potential and membrane resistance. The phasic contraction disappeared in the Na-free solution. The relaxation in the presence of caffeine was accompanied by depolarization block of the spike generation. The minimum concentration of Ca ion needed to evoke the tension development by the caffeine was 10(-7)M. Caffeine also potentiated the twitch tension below a concentration of 5 mM either in the Na-free solution or at low temperature (5 degrees C). NO(3) (-) and Br(-) showed a similar response to caffeine on the potentiation of the twitch tension at low temperature.
采用双蔗糖间隙法研究了咖啡因(0.2 - 10 mM)对豚鼠结肠带的电活动和机械活动的影响。咖啡因引发了一个潜伏期为20 - 30秒的小张力,随后出现相性收缩,最终是松弛。在无钠溶液中也出现了初始张力的发展,而膜电位和膜电阻没有任何明显变化。相性收缩在无钠溶液中消失。咖啡因存在时的松弛伴随着动作电位产生的去极化阻滞。咖啡因引发张力发展所需的钙离子最低浓度为10^(-7)M。在无钠溶液中或低温(5℃)下,咖啡因在浓度低于5 mM时也增强了单收缩张力。NO₃⁻和Br⁻在低温下对咖啡因增强单收缩张力表现出类似的反应。