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Possible role of gap junction intercellular channels and connexin 43 in satellite glial cells (SGCs) for preservation of human spiral ganglion neurons

机译:缝隙连接细胞间通道和连接蛋白43在卫星神经胶质细胞(SGC)中对人类螺旋神经节神经元保存的可能作用

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摘要

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.Electronic supplementary materialThe online version of this article (doi:10.1007/s00441-013-1735-2) contains supplementary material, which is available to authorized users.
机译:完全耳聋甚至与Corti器官分离后,人类螺旋神经节(SG)神经元显示出卓越的生存特性并长时间保持电兴奋性,这是人工耳蜗植入所必需的。在这里,我们使用透射电镜和共聚焦免疫组织化学分析和比较人和豚鼠SG细胞体周围细胞中间隙连接(GJ)细胞间通道和连接蛋白43(Cx43)的定位和分布。 GJ和Cx43表达已在包括人SG在内的非髓鞘感觉神经节的卫星神经胶质细胞(SGC)中识别。在人类中,SG神经元可以作为单极或“截肢”细胞存活,其在树突变性和树突极固结后具有完整的中央突起。据信Cx43介导的SGC之间的GJ信号在此“愈合”过程中起关键作用,并可以解释人类SG神经元的独特保存和耳蜗植入功能的持久性。电子补充材料本文的在线版本(doi:10.1007) / s00441-013-1735-2)包含补充材料,授权用户可以使用。

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