肠神经系统快速兴奋性突触传递的多种机制

James J Galligan, Kathy J LePard , David A Schneider , Xiaoping Zhou
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引用次数: 177

摘要

肠神经系统(ENS)可以独立于与中枢神经系统的直接联系来控制胃肠道功能。肠神经通过肠神经节兴奋性神经传递的多种机制来完成这一重要功能。自主神经系统(ANS)的快速兴奋性突触传递主要由乙酰胆碱(ACh)作用于烟碱胆碱能受体介导,但在ENS中存在非胆碱能快速兴奋性神经递质。ENS中有两大类神经元:S神经元和AH神经元。S神经元为中间神经元和运动神经元,AH神经元为感觉神经元。根据在肌肠丛中产生快速兴奋性突触后电位(fepsp)的神经递质可以区分出3个S神经元亚群。在一个亚群中,fEPSPs仅由作用于烟碱能受体的乙酰胆碱酶介导。在S神经元的第二个亚群中,ATP作用于P2X嘌呤受体和乙酰胆碱有助于fEPSP,而在第三个亚群中,fEPSP由作用于5-HT3受体和乙酰胆碱的5-羟色胺(5-HT)介导。一些AH神经元也接受快速兴奋性突触输入。从AH神经元记录的fepsp是由乙酰胆碱介导的,也由谷氨酸作用于α -氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体介导。ENS中快速兴奋性突触传递的多种机制可能有助于其调节复杂胃肠功能的能力。
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Multiple mechanisms of fast excitatory synaptic transmission in the enteric nervous system

The enteric nervous system (ENS) can control gastrointestinal function independent of direct connections with the central nervous system. Enteric nerves perform this important function using multiple mechanisms of excitatory neurotransmission in enteric ganglia. Fast excitatory synaptic transmission in the autonomic nervous system (ANS) is largely mediated by acetylcholine (ACh) acting at nicotinic cholinergic receptors but in the ENS there are noncholinergic fast excitatory neurotransmitters. There are two broad types of neurons in the ENS: S neurons and AH neurons. S neurons are interneurons and motoneurons while AH neurons are sensory neurons. Three subsets of S neurons in the myenteric plexus can be distinguished on the basis of the neurotransmitters producing fast excitatory postsynaptic potentials (fEPSPs) in each subset. In one subset, fEPSPs are mediated solely by ACh acting at nicotinic cholinergic receptors. In a second subset of S neurons, ATP acting at P2X purine receptors and ACh contribute to the fEPSP while in a third subset, fEPSPs are mediated by 5-hydroxytryptamine (5-HT) acting at 5-HT3 receptors and ACh. Some AH neurons also receive fast excitatory synaptic input. The fEPSPs recorded from AH neurons are mediated ACh and also by glutamate acting at alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) receptors. Multiple mechanisms of fast excitatory synaptic transmission in the ENS are likely to contribute to its capacity to regulate complex gastrointestinal functions.

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