Possible role of gap junction intercellular channels and connexin 43 in satellite glial cells (SGCs) for preservation of human spiral ganglion neurons : A comparative study with clinical implications

缝隙连接细胞间通道和连接蛋白 43 在卫星胶质细胞 (SGC) 中对保存人类螺旋神经节神经元的可能作用:一项具有临床意义的比较研究

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作者:Wei Liu, Rudolf Glueckert, Fred H Linthicum, Gunde Rieger, Michael Blumer, Mario Bitsche, Elisabeth Pechriggl, Helge Rask-Andersen, Annelies Schrott-Fischer

Abstract

Human spiral ganglion (SG) neurons show remarkable survival properties and maintain electric excitability for a long time after complete deafness and even separation from the organ of Corti, features essential for cochlear implantation. Here, we analyze and compare the localization and distribution of gap junction (GJ) intercellular channels and connexin 43 (Cx43) in cells surrounding SG cell bodies in man and guinea pig by using transmission electron microscopy and confocal immunohistochemistry. GJs and Cx43 expression has been recognized in satellite glial cells (SGCs) in non-myelinating sensory ganglia including the human SG. In man, SG neurons can survive as mono-polar or "amputated" cells with unbroken central projections following dendrite degeneration and consolidation of the dendrite pole. Cx43-mediated GJ signaling between SGCs is believed to play a key role in this "healing" process and could explain the unique preservation of human SG neurons and the persistence of cochlear implant function.

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