Wachtel R E
Br J Pharmacol. 1984 Oct;83(2):393-7. doi: 10.1111/j.1476-5381.1984.tb16499.x.
Excitatory junction currents produced by glutamate were recorded with an extracellular electrode at the excitatory neuromuscular junction of the crayfish. The currents decayed more quickly as the membrane was hyperpolarized. The direction of the voltage sensitivity of the decay phase is thus opposite to that found for acetylcholine-activated currents at the amphibian endplate. The aliphatic alcohols ethanol to octanol all increased the rate of decay of the currents. The effects of the short chain alcohols were opposite to their actions at the toad endplate, where ethanol to pentanol prolong the currents. This observation was explained in terms of the opposite direction of the voltage sensitivity in the two preparations. For each alcohol, the relationship between the half-decay time of the currents (t 1/2) and alcohol concentration was exponential. The potency of each alcohol in decreasing t 1/2 was exponentially related to carbon chain length, which would be predicted if the effects of the alcohols were directly related to their concentration in the lipid phase of the membrane. These findings are consistent with the ideas that the alcohols may alter membrane polarizability or change membrane fluidity in the vicinity of the channels.
在小龙虾的兴奋性神经肌肉接头处,用细胞外电极记录由谷氨酸产生的兴奋性接头电流。随着膜超极化,电流衰减得更快。因此,衰减相电压敏感性的方向与在两栖动物终板处乙酰胆碱激活电流的方向相反。从乙醇到辛醇的脂肪族醇类均增加了电流的衰减速率。短链醇类的作用与其在蟾蜍终板处的作用相反,在蟾蜍终板处,从乙醇到戊醇会延长电流。根据两种制剂中电压敏感性方向相反来解释这一观察结果。对于每种醇类,电流的半衰期(t1/2)与醇浓度之间的关系呈指数关系。每种醇类降低t1/2的效力与碳链长度呈指数相关,如果醇类的作用与其在膜脂质相中的浓度直接相关,这是可以预测的。这些发现与醇类可能改变膜极化率或改变通道附近膜流动性的观点一致。