局部麻醉对小龙虾拉伸受体神经元的机械转导有不同的激活或灭活作用。

J H Lin, B Rydqvist
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引用次数: 13

摘要

采用双微电极电压钳,研究了局部麻醉剂利多卡因及其间位异构体LL33、布比卡因、丁卡因和普鲁卡因对小龙虾拉伸受体神经元传导特性的影响。利多卡因增加受体电流,而LL33、布比卡因和丁卡因以可逆的剂量依赖性方式降低受体电流。普鲁卡因不影响受体反应。这种效果的开始通常是缓慢的,大约几分钟。利多卡因使机械换能器的电导增加50 +/- 7%(平均+/- SD, n = 4),使逆转电位改变-8 +/- 1 mV(平均+/- SEM, n = 8),表明机械敏感通道的K+电导明显增加。另一种局部麻醉剂增加了机械换能器的K+电导,但没有增加总电导,这表明只有P(Na)/P(K)发生了变化。与利多卡因相比,这些物质除了对通道的通透性有影响外,似乎对机械敏感通道的门控特性有Ca2+依赖作用。所有局部麻醉都降低了受体神经元的漏导。局部麻醉对机械敏感通道的激活或阻断作用与油水分布系数及其相对疏水性/亲水性比有关。结果与局部麻醉作用是由膜脂相改变介导的假设一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The mechanotransduction of the crayfish stretch receptor neurone can be differentially activated or inactivated by local anaesthetics.

The effect of the local anaesthetics lidocaine, its meta-isomer, LL33, bupivacaine, tetracaine and procaine on the transducer properties of the stretch receptor neurone of the crayfish Pacifastacus leniusculus was investigated using a two microelectrode voltage clamp. Lidocaine increased the receptor current whereas LL33, bupivacaine and tetracaine reduced the receptor current in a reversible dose-dependent way. Procaine did not affect the receptor responses. The onset of the effect was generally slow in the order of minutes. Lidocaine increased the conductance of the mechanotransducer 50 +/- 7% (mean +/- SD, n = 4) and changed the reversal potential -8 +/- 1 mV (mean +/- SEM, n = 8), which indicates a major K+ conductance increase through the mechanosensitive channels. The other local anaesthetics increase the K+ conductance of the mechanotransducer without increasing the total conductance, which suggests that only P(Na)/P(K) is changed. These substances seem to have a Ca2+ dependent effect on the gating properties of the mechanosensitive channels in addition to their effect on the permeability through the channels as compared with lidocaine. All local anaesthetics investigated decreased the leak conductance of the receptor neurone. The effects of local anaesthetics on the mechanosensitive channels whether activating or blocking is correlated to the oil:water distribution coefficients and their relative hydrophobicity/hydrophilicity ratio. The results are consistent with the hypothesis that the local anaesthetic effect is mediated by changes in the lipid phase of the membrane.

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