首页> 美国卫生研究院文献>Upsala Journal of Medical Sciences >Expression of Na/K-ATPase subunits in the human cochlea: a confocal and super-resolution microscopy study with special reference to auditory nerve excitation and cochlear implantation
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Expression of Na/K-ATPase subunits in the human cochlea: a confocal and super-resolution microscopy study with special reference to auditory nerve excitation and cochlear implantation

机译:Na / K-ATPase亚基在人耳蜗中的表达:共聚焦和超分辨率显微镜研究特别涉及听觉神经兴奋和耳蜗植入

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摘要

>Background: For the first time the expression of the ion transport protein sodium/potassium-ATPase and its isoforms was analyzed in the human cochlea using light- and confocal microscopy as well as super-resolution structured illumination microscopy. It may increase our understanding of its role in the propagation and processing of action potentials in the human auditory nerve and how electric nerve responses are elicited from auditory prostheses.>Material and methods: Archival human cochlear sections were obtained from trans-cochlear surgeries. Antibodies against the Na/K-ATPase β1 isoform together with α1 and α3 were used for immunohistochemistry. An algorithm was applied to assess the expression in various domains.>Results: Na/K ATPase β1 subunit was expressed, mostly combined with the α1 isoform. Neurons expressed the β1 subunit combined with α3, while satellite glial cells expressed the α1 isoform without recognized association with β1. Types I and II spiral ganglion neurons and efferent fibers expressed the Na/K-ATPase α3 subunit. Inner hair cells, nerve fibers underneath, and efferent and afferent fibers in the organ of Corti also expressed α1. The highest activity of Na/K-ATPase β1 was at the inner hair cellerve junction and spiral prominence.>Conclusion: The human auditory nerve displays distinct morphologic features represented in its molecular expression. It was found that electric signals generated via hair cells may not go uninterrupted across the spiral ganglion, but are locally processed. This may be related to particular filtering properties in the human acoustic pathway.
机译:>背景:首次使用光和共聚焦显微镜以及超分辨率结构照明显微镜分析了人耳蜗中离子转运蛋白钠/钾-ATP酶及其同工型的表达。它可能会加深我们对其在人听神经中动作电位的传播和加工中的作用以及如何从听觉假体中诱发电神经反应的理解。>材料和方法:经耳蜗手术。抗Na / K-ATPaseβ1亚型的抗体与α1和α3一起用于免疫组化。 >结果:表达了Na / K ATPaseβ1亚基,大部分与α1同工型结合。神经元表达与α3结合的β1亚基,而附属神经胶质细胞表达与β1无关的α1亚型。 I型和II型螺旋神经节神经元和传出纤维表达Na / K-ATPaseα3亚基。皮质内的毛细胞,下方的神经纤维以及Corti器官中的传入和传出纤维也表达α1。 Na / K-ATPaseβ1的最高活性是在毛细胞/神经交界处和螺旋突出处。>结论:人听神经在其分子表达中表现出独特的形态学特征。发现通过毛细胞产生的电信号可能不会不间断地穿过螺旋神经节,而是被局部处理。这可能与人声路径中的特定过滤属性有关。

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