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昆虫毒素及来自澳大利亚杀人蝎毒液的其他毒素对蟑螂(美洲大蠊)离体巨轴突的作用。

Actions of insect toxin and other toxins derived from the venom of the scorpion Androctonus australis on isolated giant axons of the cockroach (Periplaneta americana).

作者信息

Pelhate M, Zlotkin E

出版信息

J Exp Biol. 1982 Apr;97:67-77. doi: 10.1242/jeb.97.1.67.

Abstract
  1. Insect toxin, mammal toxins I and II and crustacean toxin were obtained from the venom of the scorpion Androctonus australis. Their effects on the isolated giant axon of the cockroach Periplaneta americana were investigated by current-clamp and voltage-clamp techniques. 2. In current-clamp conditions, mammal toxins and crustacean toxin (1.3-13 microM) induced a large prolongation of the falling phase of the evoked action potentials. Insect toxin (0.13-3.3 microM) induced a progressive slow depolarization of the membrane potential and repetitive firing of action potentials. No changes in the time-course of the action potential were induced by insect toxin. 3. In voltage-clamp conditions, mammal and crustacean toxins induced a slowing of the turn-off of the transient inward sodium current, with either no change or a small increase in the peak sodium current. Insect toxin by contrast induced an increase in the peak sodium current and a slowing of the sodium current turn-off, this effect being greatest at lower values of the clamped membrane voltage. 4. It is concluded that the repetitive activity induced by insect toxin results from a voltage-dependent modulation of sodium inactivation coupled with an increase in both the resting and active sodium permeabilities of the cockroach axonal membrane.
摘要
  1. 昆虫毒素、哺乳动物毒素I和II以及甲壳类毒素是从澳毒蝎(Androctonus australis)的毒液中提取的。采用电流钳和电压钳技术研究了它们对美洲大蠊(Periplaneta americana)离体巨轴突的作用。2. 在电流钳条件下,哺乳动物毒素和甲壳类毒素(1.3 - 13微摩尔)可使诱发动作电位的下降相大幅延长。昆虫毒素(0.13 - 3.3微摩尔)可使膜电位逐渐缓慢去极化,并引发动作电位的重复发放。昆虫毒素未引起动作电位时程的变化。3. 在电压钳条件下,哺乳动物毒素和甲壳类毒素可使瞬时内向钠电流的关闭减慢,钠电流峰值无变化或略有增加。相比之下,昆虫毒素可使钠电流峰值增加,且钠电流关闭减慢,这种效应在钳制膜电压较低时最为明显。4. 得出的结论是,昆虫毒素诱导的重复活动是由钠失活的电压依赖性调节以及蟑螂轴突膜静息和活动钠通透性增加共同导致的。

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