Types of neurons in the enteric nervous system

J.B Furness
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引用次数: 732

Abstract

This paper, written for the symposium in honour of more than 40 years’ contribution to autonomic research by Professor Geoffrey Burnstock, highlights the progress made in understanding the organisation of the enteric nervous system over this time. Forty years ago, the prevailing view was that the neurons within the gut wall were post-ganglionic neurons of parasympathetic pathways. This view was replaced as evidence accrued that the neurons are part of the enteric nervous system and are involved in reflex and integrative activities that can occur even in the absence of neuronal influence from extrinsic sources. Work in Burnstock’s laboratory led to the discovery of intrinsic inhibitory neurons with then novel pharmacology of transmission, and precipitated investigation of neuron types in the enteric nervous system. All the types of neurons in the enteric nervous system of the small intestine of the guinea-pig have now been identified in terms of their morphologies, projections, primary neurotransmitters and physiological identification. In this region there are 14 functionally defined neuron types, each with a characteristic combination of morphological, neurochemical and biophysical properties. The nerve circuits underlying effects on motility, blood flow and secretion that are mediated through the enteric nervous system are constructed from these neurons. The circuits for simple motility reflexes are now known, and progress has been made in analysing those involved in local control of blood flow and transmucosal fluid movement in the small intestine.

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肠神经系统中神经元的种类
这篇论文是为纪念杰弗里·伯恩斯托克教授40多年来对自主神经研究的贡献而写的研讨会,强调了在这段时间里在理解肠神经系统的组织方面取得的进展。四十年前,普遍认为肠壁内的神经元是副交感神经通路的神经节后神经元。随着越来越多的证据表明,神经元是肠道神经系统的一部分,参与反射和整合活动,即使在没有外部来源的神经元影响的情况下,这种观点也被取代。Burnstock实验室的工作导致了内在抑制性神经元的发现,以及对肠道神经系统中神经元类型的研究。豚鼠小肠肠神经系统中所有类型的神经元在形态、投射、主要神经递质和生理鉴定方面都已被鉴定。在这个区域有14种功能明确的神经元类型,每一种都具有形态学、神经化学和生物物理特性的特征组合。通过肠神经系统介导的影响运动、血流和分泌的神经回路是由这些神经元构建的。简单运动反射的电路现在已经知道,在分析那些参与局部控制血流和小肠粘膜液体运动的电路方面也取得了进展。
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