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节后神经细胞体在去极化反应时释放乙酰胆碱。

The release of acetylcholine from post-ganglionic cell bodies in response to depolarization.

作者信息

Johnson D A, Pilar G

出版信息

J Physiol. 1980 Feb;299:605-19. doi: 10.1113/jphysiol.1980.sp013144.

Abstract
  1. Acetylcholine (Ach) release from parasympathetic ganglia cell somata was investigated in denervated avian ciliary ganglia. Three days after the input to the ganglion (the oculomotor nerve) was sectioned, all presynaptic nerve terminals had degenerated. 2. Denervated ganglia were shown to contain endogenous ACh and to be capable of synthesizing [3H]ACh from [3H]choline added to the incubation medium. 3. In response to depolarization induced by incubation in 50 mM-[K+]o, denervated ganglia released [3H]ACh into bath effluents in amounts approximately 15% of the non-denervated contralateral control. This release was shown to be Ca2+ dependent in both intact and denervated ganglia. 4. Antidromic electrical stimulation of ciliary nerves also elicited [3H]ACh release. Nicotine (1 microgram/microliter.) depolarized denervated ciliary ganglion cells and evoked release of the transmitter and this release was antagonized by curare. 5. It is concluded that the ganglionic cell bodies sysnthesized ACh and released the transmitter in response to K+ depolarization, antidromic stimulation and cholinergic agonists, despite the lack of morphological specializations usually associated with stimulus-induced release of neurotransmitter. The evidence suggests the existence of a mechanism of transmitter release which is Ca2+ dependent, probably from a cytoplasmic pool and therefore distinct from the usual vesicular release at the nerve terminal.
摘要
  1. 在去神经支配的鸡睫状神经节中研究了副交感神经节细胞体乙酰胆碱(Ach)的释放。在切断神经节的输入神经(动眼神经)三天后,所有突触前神经末梢均已退化。2. 研究表明,去神经支配的神经节含有内源性ACh,并且能够从添加到孵育培养基中的[3H]胆碱合成[3H]ACh。3. 响应于在50 mM - [K + ]o中孵育诱导的去极化,去神经支配的神经节将[3H]ACh释放到浴流出物中,其释放量约为未去神经支配的对侧对照的15%。完整和去神经支配的神经节中的这种释放均显示为Ca2 +依赖性。4. 对睫状神经进行逆向电刺激也能引起[3H]ACh释放。尼古丁(1微克/微升)使去神经支配的睫状神经节细胞去极化并引发递质释放,且这种释放可被箭毒拮抗。5. 得出的结论是,尽管缺乏通常与刺激诱导的神经递质释放相关的形态学特化,但神经节细胞体仍能合成ACh并响应K +去极化、逆向刺激和胆碱能激动剂释放递质。证据表明存在一种递质释放机制,其依赖于Ca2 +,可能来自细胞质池,因此不同于神经末梢通常的囊泡释放。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c06/1279244/5808c1396610/jphysiol00782-0612-a.jpg

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