de Weer P, Geduldig D
Am J Physiol. 1978 Jul;235(1):C55-62. doi: 10.1152/ajpcell.1978.235.1.C55.
The effect of the cardiotonic aglycone, strophanthidin, on sodium and potassium efflux, membrane potential, membrane conductance, potassium permeability, and the shape of the action potential of the giant axon of the squid, Loligo pealei, was examined. Strophanthidin depolarized the membrane to an extent determined by the intracellular sodium concentration, except in axons pretreated with cyanide, in which the effect is abolished. Cyanide itself hyperpolarized the axon membrane. Axons treated with strophanthidin appear to be better potassium electrodes, but this observation is fully accounted for by the stimulating effect of [K]o on an electrogenic sodium pump. The increase in potassium efflux produced by strophanthidin is also well accounted for by the observed membrane depolarization and the known dependence of potassium permeability on membrane potential (e-fold increase in efflux per 6.4 mV depolarization). Strophanthidin has no demonstrable effect on membrane conductance apart from that due to the observed depolarization. These findings support the view that cardiotonic steroids, at least in nerve, are specific inhibitors of the sodium pump, devoid of effects on permeability that might interfere with the study of electrogenic pumping. The alteration in the shape of the action potential after exposure to strophanthidin (deepening of the "underswing") suggests that the strophanthidin-induced membrane depolarization results from the inhibition of a true electrogenic pump, and not from ion redistributions in the vicinity of the membrane.
研究了强心苷元毒毛花苷元对枪乌贼(Loligo pealei)巨大轴突的钠钾外流、膜电位、膜电导、钾通透性及动作电位形状的影响。毒毛花苷元使膜去极化,其程度取决于细胞内钠浓度,但在用氰化物预处理的轴突中,这种作用被消除,氰化物本身使轴突膜超极化。用毒毛花苷元处理的轴突似乎是更好的钾电极,但这一观察结果完全可以用细胞外钾离子浓度对生电钠泵的刺激作用来解释。毒毛花苷元引起的钾外流增加也可以通过观察到的膜去极化以及已知的钾通透性对膜电位的依赖性(每去极化6.4 mV,外流增加e倍)来很好地解释。除了观察到的去极化所导致的影响外,毒毛花苷元对膜电导没有明显影响。这些发现支持了这样一种观点,即强心甾体类化合物,至少在神经中,是钠泵的特异性抑制剂,对通透性没有可能干扰生电泵研究的影响。暴露于毒毛花苷元后动作电位形状的改变(“负后电位”加深)表明,毒毛花苷元诱导的膜去极化是由真正的生电泵的抑制引起的,而不是由膜附近的离子重新分布引起的。