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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Release of chemical transmitters from cell bodies and dendrites of nerve cells
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Release of chemical transmitters from cell bodies and dendrites of nerve cells

机译:从细胞体和神经细胞树突中释放出化学递质

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摘要

Papers in this issue concern extrasynaptic transmission, namely release of signalling molecules by exocytosis or diffusion from neuronal cell bodies, dendrites, axons and glia. Problems discussed concern the molecules, their secretion and importance for normal function and disease. Molecules secreted extrasynaptically include transmitters, peptides, hormones and nitric oxide. For extrasynaptic secretion, trains of action potentials are required, and the time course of release is slower than at synapses. Questions arise concerning the mechanism of extrasynaptic secretion: how does it differ from the release observed at synaptic terminals and gland cells? What kinds of vesicles take part? Is release accomplished through calcium entry, SNAP and SNARE proteins? A clear difference is in the role of molecules released synaptically and extrasynaptically. After extrasynaptic release, molecules reach distant as well as nearby cells, and thereby produce long-lasting changes over large volumes of brain. Such changes can affect circuits for motor performance and mood states. An example with clinical relevance is dyskinesia of patients treated with L-DOPA for Parkinson's disease. Extrasynaptically released transmitters also evoke responses in glial cells, which in turn release molecules that cause local vasodilatation and enhanced circulation in regions of the brain that are active.
机译:该问题的论文涉及突触外传递,即通过胞吐作用释放信号分子或从神经元细胞体,树突,轴突和神经胶质扩散。讨论的问题涉及分子,其分泌以及对正常功能和疾病的重要性。突触地分泌的分子包括递质,肽,激素和一氧化氮。对于突触外分泌,需要一系列动作电位,并且释放的时间过程比突触慢。关于突触外分泌机制的问题出现了:与突触末端和腺细胞的释放有何不同?什么样的囊泡参与?释放是通过钙进入,SNAP和SNARE蛋白完成的吗?突触和突触外释放的分子的作用之间存在明显差异。突触外释放后,分子到达远处以及附近的细胞,从而在大量大脑中产生持久的变化。这种变化会影响运动性能和情绪状态的电路。具有临床相关性的一个例子是接受L-DOPA治疗的帕金森氏病患者的运动障碍。突触释放的递质也引起神经胶质细胞的反应,神经胶质细胞又释放引起局部血管舒张和活跃大脑区域血液循环的分子。

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