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胆碱能突触的发育与衰老。I. 雏鸡自主神经节和虹膜发育过程中乙酰胆碱和胆碱的内源性水平。

Development and aging of cholinergic synapses. I. Endogenous levels of acetylcholine and choline in developing autonomic ganglia and iris of the chick.

作者信息

Marchi M, Giacobini E, Hruschak K

出版信息

Dev Neurosci. 1979;2(5):201-12. doi: 10.1159/000112482.

Abstract

Acetylcholine (ACh) and choline (Ch) levels were measured by means of a sensitive micromethod in developing irises, ciliary and sympathetic ganglia of the chick, starting at 5--7 days of incubation (DI) up to 1 year of age. The neurotransmitter is present in all three organs at relatively low levels (1--10 pmol) from 5 DI (iris) or 7 DI (ciliary and sympathetic ganglion). This is followed by a rapid and sustained 9-fold increase in all three tissues up to 14 DI. Thus, it appears that low levels of ACh may be sufficient for neurotransmission to occur in the primitive ciliary ganglion and iris. After hatching, total ACh levels continue to increase up to 1 year of age in the iris and ciliary ganglion and up to 3 months in the sympathetic ganglion. The increase may depend on either an increased functional demand for the neurotransmitter or an increased number of preganglionic terminals. In general Ch levels parallel closely the levels of ACh in each organ throughout development. It is concluded that ACh and Ch are present since the earliest detectable stages of development in the ganglia and iris, and their first increase seems to be correlated to the phase of innervation of the organs. The subsequent increase probably correlates to synaptogenesis. The close relationship between Ch and ACh levels indicates a regulatory role of Ch for ACh synthesis during neuronal development.

摘要

从孵化5 - 7天(DI)到1岁,采用灵敏的微量法测定了雏鸡发育中的虹膜、睫状神经节和交感神经节中乙酰胆碱(ACh)和胆碱(Ch)的水平。从5 DI(虹膜)或7 DI(睫状神经节和交感神经节)开始,神经递质在所有这三个器官中的含量都相对较低(1 - 10皮摩尔)。随后,在所有这三个组织中,直到14 DI,ACh水平迅速且持续增加了9倍。因此,似乎低水平的ACh可能足以在原始睫状神经节和虹膜中发生神经传递。孵化后,虹膜和睫状神经节中的总ACh水平持续增加至1岁,交感神经节中的总ACh水平持续增加至3个月。这种增加可能取决于对神经递质功能需求的增加或节前终末数量的增加。总体而言,在整个发育过程中,Ch水平与每个器官中ACh的水平密切平行。结论是,在神经节和虹膜发育的最早可检测阶段就存在ACh和Ch,它们的首次增加似乎与器官的神经支配阶段相关。随后的增加可能与突触形成相关。Ch和ACh水平之间的密切关系表明在神经元发育过程中Ch对ACh合成具有调节作用。

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