Heredia Dante J, De Angeli Claire, Fedi Camilla, Gould Thomas W
Department of Physiology and Cell Biology, University of Nevada Reno School of Medicine, Reno, NV, 89557, United States.
Department of Physiology and Cell Biology, University of Nevada Reno School of Medicine, Reno, NV, 89557, United States.
Neurosci Lett. 2020 Jun 11;729:134959. doi: 10.1016/j.neulet.2020.134959. Epub 2020 Apr 25.
In addition to providing structural, metabolic and trophic support to neurons, glial cells of the central, peripheral and enteric nervous systems (CNS, PNS, ENS) respond to and regulate neural activity. One of the most well characterized features of this response is an increase of intracellular calcium. Astrocytes at synapses of the CNS, oligodendrocytes along axons of the CNS, enteric glia associated with the cell bodies and axonal varicosities of the ENS, and Schwann cells at the neuromuscular junction (NMJ) and along peripheral nerves of the PNS, all exhibit this response. Recent technical advances have facilitated the imaging of neural activity-dependent calcium responses in large populations of glial cells and thus provided a new tool to evaluate the physiological significance of these responses. This mini-review summarizes the mechanisms and functional role of activity-induced calcium signaling within Schwann cells, including terminal/perisynaptic Schwann cells (TPSCs) at the NMJ and axonal Schwann cells (ASCs) within peripheral nerves.
除了为神经元提供结构、代谢和营养支持外,中枢、外周和肠神经系统(CNS、PNS、ENS)的神经胶质细胞还对神经活动做出反应并进行调节。这种反应最显著的特征之一是细胞内钙的增加。中枢神经系统突触处的星形胶质细胞、中枢神经系统轴突周围的少突胶质细胞、与肠神经系统的细胞体和轴突膨体相关的肠神经胶质细胞,以及神经肌肉接头(NMJ)处和外周神经系统外周神经沿线的施万细胞,均表现出这种反应。最近的技术进步促进了对大量神经胶质细胞中神经活动依赖性钙反应的成像,从而提供了一种新工具来评估这些反应的生理意义。本综述总结了施万细胞内活性诱导钙信号传导的机制和功能作用,包括神经肌肉接头处的终末/突触周围施万细胞(TPSCs)和外周神经内的轴突施万细胞(ASCs)。