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双向兴奋性化学突触的生理学

Physiology of a bidirectional, excitatory, chemical synapse.

作者信息

Anderson P A

出版信息

J Neurophysiol. 1985 Mar;53(3):821-35. doi: 10.1152/jn.1985.53.3.821.

DOI:10.1152/jn.1985.53.3.821
PMID:2984356
Abstract

Neurons of the motor nerve net of the jellyfish Cyanea are connected by chemical synapses that, from their ultrastructure, appear to be bidirectional chemical synapses. These synapses were examined physiologically, by recording intracellularly from synaptically connected cells, with the whole cell configuration of the patch-clamp recording technique. Subthreshold depolarizations produced neither small voltage responses indicative of electrical coupling, nor unitary depolarizations suggestive of excitatory postsynaptic potentials (EPSP). Synaptic transmission was affected only when the presynaptic cell was depolarized above spike threshold. The synaptic delay was slightly less than 1 ms at room temperature. The postsynaptic response was initially suprathreshold, resulting in an action potential, but with time this gave way to a large 60 mV amplitude EPSP that did not produce action potentials. The amplitude of the EPSP was directly related to the postsynaptic membrane potential and extrapolated to a reversal potential close to zero mV. Reversal of the EPSP was never observed, even in the presence of intracellular tetrathylammonium (TEA). The relationship between presynaptic depolarization and postsynaptic response was difficult to examine in normal conditions, but in the presence of extracellular lidocaine, which blocked the Na+ and K+ channels in these membranes, a distinct relationship was apparent. The synapse was physiologically nonpolarized and conducted equally well in either direction with a constant synaptic delay.

摘要

海月水母运动神经网的神经元通过化学突触相连,从超微结构来看,这些突触似乎是双向化学突触。运用膜片钳记录技术的全细胞模式,通过对突触连接细胞进行细胞内记录,从生理学角度对这些突触进行了研究。阈下去极化既未产生表明电偶联的小电压反应,也未产生提示兴奋性突触后电位(EPSP)的单一去极化。只有当突触前细胞去极化超过动作电位阈值时,突触传递才会受到影响。在室温下,突触延迟略小于1毫秒。突触后反应最初是阈上的,会引发动作电位,但随着时间推移,这会转变为一个幅度为60毫伏的大EPSP,该EPSP不会产生动作电位。EPSP的幅度与突触后膜电位直接相关,外推至接近零毫伏的反转电位。即使在细胞内存在四乙铵(TEA)的情况下,也从未观察到EPSP的反转。在正常情况下,很难研究突触前去极化与突触后反应之间的关系,但在细胞外利多卡因存在的情况下,这种关系变得明显,利多卡因会阻断这些膜中的钠通道和钾通道。该突触在生理上是非极化的,在两个方向上的传导效果相同,且突触延迟恒定。

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