Hyung Sujin, Jung Kyuhwan, Cho Sung-Rae, Jeon Noo Li
Department of Mechanical and Aerospace Engineering, Seoul National University, San 56-1, Shilim-dong, Gwanak-gu, Seoul, 08826, Korea.
BK21 Plus Transformative Training Program for Creative Mechanical and Aerospace Engineers, Seoul National University, San 56-1, Shilim-dong, Gwanak-gu, Seoul, 08826, Korea.
Chemphyschem. 2018 May 22;19(10):1123-1127. doi: 10.1002/cphc.201701299. Epub 2018 Apr 19.
The schwann cells of the peripheral nervous system are indispensable for the formation, maintenance, and modulation of synapses over the life cycle. They not only recognize neuron-glia signaling molecules, but also secrete gliotransmitters. Through these processes, they regulate neuronal excitability and thus the release of neurotransmitters from the nerve terminal at the neuromuscular junction. Gliotransmitters strongly affect nerve communication, and their secretion is mainly triggered by synchronized Ca signaling, implicating Ca waves in synapse function. Reciprocally, neurotransmitters released during synaptic activity can evoke increases in intracellular Ca levels. A reconsideration of the interplay between the two main types of cells in the nervous system is due, as the concept of nervous system activity comprising only neuron-neuron and neuron-muscle action has become untenable. A more precise understanding of the roles of schwann cells in nerve-muscle signaling is required.
外周神经系统的施万细胞对于整个生命周期中突触的形成、维持和调节不可或缺。它们不仅识别神经元-胶质细胞信号分子,还分泌神经胶质递质。通过这些过程,它们调节神经元的兴奋性,从而调节神经肌肉接头处神经末梢神经递质的释放。神经胶质递质强烈影响神经通讯,其分泌主要由同步的钙信号触发,这表明钙波在突触功能中起作用。相反,突触活动期间释放的神经递质可引起细胞内钙水平升高。鉴于仅包含神经元-神经元和神经元-肌肉作用的神经系统活动概念已变得站不住脚,因此有必要重新审视神经系统中这两种主要细胞类型之间的相互作用。需要更精确地了解施万细胞在神经-肌肉信号传导中的作用。