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Long-term potentiation at nicotinic synapses in the rat superior cervical ganglion.

机译:大鼠上颈神经节烟碱突触的长期增强作用。

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摘要

1. Nicotinic fast excitatory postsynaptic potentials (fast EPSPs) were recorded intracellularly from postganglionic neurones in the isolated rat superior cervical ganglion. 2. An hours-long potentiation of the fast EPSP could be induced by brief tetanic stimulation of the preganglionic nerve (5 Hz for 5 s to 20 Hz for 20 s). While long-term potentiation (LTP) can be detected in every ganglion by extracellular techniques, LTP was induced in only two-thirds of the nicotinic synaptic responses. 3. Muscarinic blockade with atropine did not prevent LTP of the fast EPSP. 4. LTP of the fast EPSP did not correlate with changes in input resistance nor cell potential, as recorded in the soma. 5. The formation of nicotinic LTP appeared to depend upon stimulation of the nerve terminals. Non-synaptic tetanic depolarization of the postganglionic neurone, effected by injecting depolarizing current pulses through the intracellular microelectrode, was not sufficient. LTP could be induced by synaptic tetani in two-thirds of the same neurones. 6. The response to exogenous 1,1-dimethyl-4-phenylpiperazinium (DMPP), a selective nicotinic agonist, was not increased during nicotinic synaptic LTP. This was true whether DMPP was applied by pressure-ejection from an extracellular micropipette during intracellular recording, or by brief superfusion during sucrose-gap recording of postganglionic responses. 7. Responses to exogenous acetylcholine and carbachol were increased during nicotinic LTP when these non-selective cholinergic agonists were applied by pressure-ejection during intracellular recording. However, the potentiation of the fast EPSP was always at least twofold greater than the potentiation of the response to these exogenous agonists. 8. Potentiation of the responses to acetylcholine and carbachol may have been due to long-term enhancement of muscarinic responses. Thus, no postsynaptic basis for nicotinic LTP was uncovered in these studies.
机译:1.在分离的大鼠上颈神经节中从节后神经元细胞内记录了烟碱快速兴奋性突触后电位(fast EPSPs)。 2.通过短暂的强直刺激神经节前神经(5 Hz持续5 s至20 Hz持续20 s),可以诱导快速EPSP持续一小时。尽管可以通过细胞外技术在每个神经节中检测到长期增强(LTP),但只有三分之二的烟碱突触反应诱导了LTP。 3.用阿托品阻断毒蕈碱并不能阻止快速EPSP的LTP。 4.如在体细胞中所记录的,快速EPSP的LTP与输入电阻或细胞电位的变化均不相关。 5.烟碱型LTP的形成似乎取决于神经末梢的刺激。通过细胞内微电极注入去极化电流脉冲来实现神经节后神经元的非突触强直性去极化是不够的。 LTP可能由三分之二的相同神经元中的突触触角引起。 6.在烟碱突触LTP过程中,对选择性烟碱激动剂外源性1,1-二甲基-4-苯基哌嗪酮(DMPP)的反应没有增加。不论是在细胞内记录期间通过从细胞外微量移液器的压力喷射来施加DMPP,还是在节后反应的蔗糖间隙记录期间通过短暂的超融合来施加DMPP,都是如此。 7.当在细胞内记录期间通过压力喷射施加这些非选择性胆碱能激动剂时,在烟碱样LTP期间对外源性乙酰胆碱和卡巴胆碱的反应增加。但是,快速EPSP的增强作用始终至少比对这些外源激动剂的响应增强作用大两倍。 8.对乙酰胆碱和卡巴胆碱反应的增强可能是由于毒蕈碱反应的长期增强。因此,在这些研究中没有发现烟碱型LTP的突触后基础。

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