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Axon-schwann cell interaction in the squid nerve fibre

机译:鱿鱼神经纤维中的轴突-施万细胞相互作用

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摘要

The electrical properties of Schwann cells and the effects of neuronal impulses on their membrane potential have been studied in the giant nerve fibre of the squid.1. The behaviour of the Schwann cell membrane to current injection into the cell was ohmic. No impulse-like responses were observed with displacements of 35 mV in the membrane potential. The resistance of the Schwann cell membrane was found to be approximately 103 Ω cm2.2. A long-lasting hyperpolarization is observed in the Schwann cells following the conduction of impulse trains by the axon. Whereas the propagation of a single impulse had little effect, prolonged stimulation of the fibre at 250 impulses/sec was followed by a hyperpolarization of the Schwann cell that gradually declined over a period of several minutes.3. The prolonged effects of nerve impulse trains on the Schwann cell were similar to those produced by depolarizing current pulses applied to the axon by the voltage-clamp technique. Thus, a series of depolarizing pulses in the axon was followed by a long-lasting hyperpolarization of the Schwann cells. In contrast, the application of a series of hyperpolarizing 100 mV pulses at a frequency of 1/sec had no apparent effects.4. Changes in the external potassium concentration did not reproduce the long-lasting effects of nerve excitation.5. The hyperpolarizing effects of impulse trains were abolished by the incubation of the nerve fibre in a sea-water solution containing trypsin.6. These findings are discussed in relation to the possible mechanisms that might be responsible for the long-lasting hyperpolarizations of the Schwann cells.
机译:在鱿鱼的巨型神经纤维中研究了雪旺氏细胞的电学性质和神经冲动对其膜电位的影响。1。雪旺氏细胞膜对电流注入细胞的行为是欧姆性的。膜电位的位移为35 mV时未观察到类似脉冲的响应。发现雪旺氏细胞膜的电阻约为10 3 Ωcm 2 .2。在轴突的脉冲序列传导后,在雪旺氏细胞中观察到了持久的超极化。单个脉冲的传播几乎没有影响,但是以250脉冲/秒的速率长时间刺激光纤,随后是雪旺氏细胞的超极化现象,该现象在几分钟内逐渐下降。3。神经脉冲序列对雪旺氏细胞的延长作用类似于通过电压钳技术使施加于轴突的电流脉冲去极化产生的作用。因此,轴突中的一系列去极化脉冲之后是雪旺氏细胞的持久超极化。相反,以1 /秒的频率施加一系列的超极化100 mV脉冲并没有明显效果。4。外部钾离子浓度的变化并未重现神经兴奋的持久作用。5。通过在含有胰蛋白酶的海水溶液中孵育神经纤维,消除了脉冲序列的超极化作用。6。这些发现与可能导致雪旺氏细胞长期超极化的可能机制进行了讨论。

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