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小鸡初级感觉神经元分化过程中乙酰胆碱释放的机制和可能部位。

The mechanisms and possible sites of acetylcholine release during chick primary sensory neuron differentiation.

机构信息

Dept. of Biology and Biotechnologies Charles Darwin, Research Center of Neurobiology, Daniel Bovet, "Sapienza" University of Rome, Italy.

出版信息

Life Sci. 2012 Oct 22;91(15-16):783-8. doi: 10.1016/j.lfs.2012.08.026. Epub 2012 Aug 24.

DOI:10.1016/j.lfs.2012.08.026
PMID:22922497
Abstract

AIMS

In this study, we evaluated the ability of differentiating embryonic chick DRG neurons to release and respond to acetylcholine (ACh). In particular, we investigated the neuronal soma and neurites as sites of ACh release, as well as the mechanism(s) underlying this release.

MAIN METHODS

ACh release from DRG explants in the Campenot chambers was measured by a chemiluminescent assay. Real-time PCR analysis was used to evaluate the expression of ChAT, VAChT, mediatophore and muscarinic receptor subtypes in DRGs at different developmental stages.

KEY FINDINGS

We found that ACh is released both within the central and lateral compartments of the Campenot chambers, indicating that ACh might be released from both the neuronal soma and fibers. Moreover, we observed that the expression of the ChAT and mediatophore increases during sensory neuron differentiation and during the post-hatching period, whereas VAChT expression decreases throughout development. Lastly, the kinetics of the m2 and m3 transcripts appeared to change differentially compared to the m4 transcript during the same developmental period.

SIGNIFICANCE

The data obtained demonstrate that the DRG sensory neurons are able to release ACh and to respond to ACh stimulation. ACh is released both by the soma and neurite compartments. The contribution of the mediatophore to ACh release appears to be more significant than that of VAChT, suggesting that the non-vesicular release of ACh might represent the preferential mechanism of ACh release in DRG neurons and possibly in non-cholinergic systems.

摘要

目的

在这项研究中,我们评估了区分胚胎鸡背根神经节神经元释放和响应乙酰胆碱(ACh)的能力。特别是,我们研究了 ACh 释放的神经元胞体和神经突作为部位,以及这种释放的潜在机制。

主要方法

使用化学发光测定法在 Campenot 室中测量 DRG 外植体的 ACh 释放。实时 PCR 分析用于评估在不同发育阶段的 DRG 中 ChAT、VAChT、介体和毒蕈碱受体亚型的表达。

主要发现

我们发现 ACh 既在 Campenot 室的中央和侧部分室中释放,表明 ACh 可能从神经元胞体和纤维释放。此外,我们观察到 ChAT 和介体的表达在感觉神经元分化和孵化后期间增加,而 VAChT 的表达在整个发育过程中减少。最后,在同一发育时期,m2 和 m3 转录物的动力学似乎与 m4 转录物不同。

意义

获得的数据表明,DRG 感觉神经元能够释放 ACh 并对 ACh 刺激作出反应。ACh 既由胞体又由神经突隔室释放。介体对 ACh 释放的贡献似乎比 VAChT 更重要,这表明非囊泡释放的 ACh 可能代表 DRG 神经元中 ACh 释放的优先机制,并且可能在非胆碱能系统中也是如此。

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