Benson J A, Treherne J E
J Exp Biol. 1978 Oct;76:205-19. doi: 10.1242/jeb.76.1.205.
The giant axon of this extreme euryhaline osmoconformer possess an unusual ability to produce action potentials of large amplitude over a wide range of ionic dilution when constant osmotic concentration is maintained by the addition of mannitol to the bathing medium. Ionic dilution under these circumstances causes a decline in the overshoot of the action potential (resulting largely from reduction in [Na+]o) and an appreciable axonal hyperpolarization (primarily as a result of decrease in [K+]O). This hyperpolarization tends to compensate for the reduction in the extent of the overshoot and so maintains the amplitude of the sodium-mediated action potentials during isosmotic dilution of the bathing medium. The axonal hyperpolarization also appears to reduce sodium inactivation so as to maintain a rapid rate of rise of the action potential despite drastic reduction in the ionic concentration of the bathing medium. Prolonged exposure to reduced ionic concentrations appears to induce a ouabain sensitive reduction in intracellular sodium concentration which increases the sodium gradient across the axon membrane during isosmotic dilution of the external medium.
这种极端广盐性渗透顺应者的巨大轴突具有一种非凡的能力,即在通过向浴液中添加甘露醇来维持恒定渗透浓度的情况下,能在很宽的离子稀释范围内产生大幅度的动作电位。在这些情况下的离子稀释会导致动作电位的超射值下降(主要是由于细胞外[Na⁺]降低)以及明显的轴突超极化(主要是由于细胞外[K⁺]降低)。这种超极化倾向于补偿超射值程度的降低,从而在浴液等渗稀释期间维持钠介导的动作电位的幅度。轴突超极化似乎还能减少钠失活,以便在浴液离子浓度急剧降低的情况下仍能维持动作电位的快速上升速率。长时间暴露于降低的离子浓度似乎会诱导细胞内钠浓度出现哇巴因敏感的降低,这在外部介质等渗稀释期间会增加跨轴突膜的钠梯度。