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The action of cholinergic agonists on the squid stellate ganglion giant synapse

机译:胆碱能激动剂对鱿鱼星状神经节巨突触的作用

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摘要

Although the giant synapse in the squid stellate ganglion has served as a model in the understanding of the ionic and electrical changes that occur during the release of transmitter from nerve terminals, little is known about the pharmacology of this synapse or the identity of its neurotransmitter. In the present study, the suggestion that acetylcholine (ACh) is the excitatory transmitter at this synapse was tested by exploring the actions of cholinergic agents on the pre- and postsynaptic giant axons and on the excitatory postsynaptic potential (EPSP). A novel arterial perfusion technique that circumvents the diffusion barrier from the bathing medium to the synapse has been used to demonstrate a depolarizing action of ACh and its agonist carbachol on the post- but not the presynaptic axon. The cholinergic receptors are distinct from receptors activated by amino acids, such as glutamate, have a reversal potential of about -48 mV, are anion- permeable, and desensitize without blocking the EPSP. It is concluded that these receptors are involved in an inhibitory input onto the postsynaptic giant axon and, therefore, that ACh is most probably not the transmitter at the squid giant synapse.
机译:尽管鱿鱼星状神经节中的巨大突触已经成为了解神经递质释放过程中发生的离子和电变化的模型,但对该突触的药理学或其神经递质的身份知之甚少。在本研究中,通过探索胆碱能药物对突触前和突触后巨轴突和兴奋性突触后电位(EPSP)的作用,测试了乙酰胆碱(ACh)是该突触的兴奋性递质的建议。一种新颖的动脉灌注技术,可避免从沐浴介质到突触的扩散障碍,已被证明可用于显示ACh及其激动剂卡巴胆碱对突触后轴突的除极化作用。胆碱能受体不同于被氨基酸激活的受体,例如谷氨酸,具有约-48mV的逆转电位,是阴离子可渗透的,并且脱敏而不阻断EPSP。结论是这些受体参与突触后巨轴突的抑制性输入,因此,ACh最有可能不是鱿鱼巨突触的递质。

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