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消化道中神经元的多化学传递与化学编码

Plurichemical transmission and chemical coding of neurons in the digestive tract.

作者信息

Furness J B, Young H M, Pompolo S, Bornstein J C, Kunze W A, McConalogue K

机构信息

Department of Anatomy and Cell Biology, University of Melbourne, Parkville, Australia.

出版信息

Gastroenterology. 1995 Feb;108(2):554-63. doi: 10.1016/0016-5085(95)90086-1.

Abstract

The enteric nervous system contains neurons with well-defined functions. However, when neurons of the same function are examined in different regions or species, they are found to show subtle differences in their pharmacologies of transmission and different chemical coding. Individual enteric neurons use more than one transmitter, i.e., transmission is plurichemical. For example, enteric inhibitory neurons have three or more primary transmitters, including nitric oxide, vasoactive intestinal peptide, and possibly adenosine triphosphate and pituitary adenylyl cyclase activating peptide. Primary transmitters are highly conserved, although their relative roles vary considerably between gut regions. Multiple substances, including transmitters and their synthesizing enzymes and nontransmitters (such as neurofilament proteins), provide neurons with a chemical coding through which their functions and projections can be identified. Although equivalent neurons in different regions have the same primary transmitters, other chemical markers differ substantially. Caution must be taken in extrapolating pharmacological and neurochemical observations between species or even between regions in the one species. On the other hand, careful interregion and interspecies comparisons lead to an understanding of the features of enteric neurons that are highly conserved and can be used in valid extrapolation.

摘要

肠神经系统包含具有明确功能的神经元。然而,当在不同区域或物种中检查具有相同功能的神经元时,会发现它们在传递药理学和不同的化学编码方面存在细微差异。单个肠神经元使用不止一种递质,即传递是多化学的。例如,肠抑制性神经元有三种或更多种主要递质,包括一氧化氮、血管活性肠肽,可能还有三磷酸腺苷和垂体腺苷酸环化酶激活肽。主要递质高度保守,尽管它们在肠道不同区域的相对作用差异很大。多种物质,包括递质及其合成酶和非递质(如神经丝蛋白),为神经元提供了一种化学编码,通过这种编码可以识别它们的功能和投射。尽管不同区域的等效神经元具有相同的主要递质,但其他化学标记物却有很大差异。在跨物种甚至同一物种的不同区域之间推断药理学和神经化学观察结果时必须谨慎。另一方面,仔细的区域间和种间比较有助于理解肠神经元高度保守的特征,并可用于有效的推断。

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