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一项在无神经冲动情况下的突触传递研究。

A study of synaptic transmission in the absence of nerve impulses.

作者信息

Katz B, Miledi R

出版信息

J Physiol. 1967 Sep;192(2):407-36. doi: 10.1113/jphysiol.1967.sp008307.

Abstract
  1. The axo-axonic giant synapse in the stellate ganglion of the squid has been used to study synaptic transmission.2. When nerve impulses have been eliminated with tetrodotoxin, synaptic transfer of potential changes can still be obtained by applying brief depolarizing pulses to the presynaptic terminal.3. Suitably matched pulses are as effective as the normal presynaptic spike in evoking post-synaptic potentials. The synaptic delay and the time course of the post-synaptic potential are very similar to that in the normal preparation.4. The synaptic transfer (input/output) characteristic has been studied under different experimental conditions. With brief (1-2 msec) current pulses, post-synaptic response becomes detectable when the presynaptic depolarization exceeds about 30 mV. The post-synaptic potential increases about tenfold with 10 mV increments of presynaptic depolarization.5. Calcium increases, magnesium reduces the slope of the synaptic transfer curve. The influences on this curve of (i) duration of the pulse, (ii) preceding level of membrane potential, (iii) position of recording electrode, (iv) rate of repetitive stimulation are described.6. After loading the synaptic terminal with tetraethylammonium ions, large inside-positive potentials can be produced in the terminal and maintained for many milliseconds.7. By raising the internal potential to a sufficiently high level, synaptic transfer becomes suppressed during the pulse, and the post-synaptic response is delayed until the end of the pulse.8. This observation is in accord with a prediction of the ;calcium hypothesis', viz. that inward movement of a positively charged Ca compound, or of the calcium ion itself, constitutes one of the essential links in the ;electro-secretory' coupling process of the axon terminal.
摘要
  1. 乌贼星状神经节中的轴突 - 轴突型巨突触已被用于研究突触传递。

  2. 当用河豚毒素消除神经冲动后,通过向突触前终末施加短暂的去极化脉冲仍可获得电位变化的突触传递。

  3. 适当匹配的脉冲在诱发突触后电位方面与正常的突触前峰电位一样有效。突触延迟和突触后电位的时间进程与正常标本中的非常相似。

  4. 在不同的实验条件下研究了突触传递(输入/输出)特性。用短暂(1 - 2毫秒)的电流脉冲时,当突触前去极化超过约30毫伏时,突触后反应变得可检测到。随着突触前去极化以10毫伏的增量增加,突触后电位增加约十倍。

  5. 钙增加、镁减少突触传递曲线的斜率。描述了(i)脉冲持续时间、(ii)膜电位的先前水平、(iii)记录电极的位置、(iv)重复刺激速率对该曲线的影响。

  6. 用四乙铵离子加载突触终末后,终末内可产生大的内向正电位并维持许多毫秒。

  7. 通过将内部电位提高到足够高的水平,在脉冲期间突触传递受到抑制,并且突触后反应延迟到脉冲结束。

  8. 这一观察结果与“钙假说”的预测一致,即带正电荷的钙化合物或钙离子本身的内向移动构成轴突终末“电 - 分泌”偶联过程中的基本环节之一。

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本文引用的文献

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ANOMALOUS RECTIFICATION IN THE SQUID GIANT AXON INJECTED WITH TETRAETHYLAMMONIUM CHLORIDE.
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