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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >GFAP aggregates in the cochlear nerve increase the noise vulnerability of sensory cells in the organ of Corti in the murine model of Alexander disease.
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GFAP aggregates in the cochlear nerve increase the noise vulnerability of sensory cells in the organ of Corti in the murine model of Alexander disease.

机译:在亚历山大病小鼠模型中,耳蜗神经中的GFAP聚集体增加了Corti器官中感觉细胞的噪声易感性。

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摘要

Outer hair cell (OHC) loss in the auditory sensory epithelium is a primary cause of noise-induced sensory-neural hearing loss (SNHL). To clarify the participation of glial cells in SNHL, we used an Alexander disease (AxD) mouse model. These transgenic mice harbor the AxD causal mutant of the human glial fibrillary acidic protein (GFAP) under the control of the mouse GFAP promoter. It is thought that GFAP aggregates compromise the function of astrocytes. In the auditory pathway, the formation of GFAP aggregates was observed only in GFAP-positive cells of the cochlear nerve. The presence of GFAP aggregates did not change auditory function at the threshold level. To assess the change in vulnerability to auditory excitotoxicity, both transgenic and control mice were treated with intense noise exposure. Auditory threshold shifts were assessed by auditory brainstem responses (ABR) at 1 and 4 weeks after noise exposure, and OHC damage was analyzed by quantitative histology at 4 weeks after exposure. Transgenic mice showed more severe ABR deficits and OHC damage, suggesting that cochlear nerve glial cells with GFAP aggregates play a role in noise susceptibility. Thus, we should focus more on the roles of cochlear nerve glial cells in SNHL.
机译:听觉感觉上皮细胞的外毛细胞(OHC)丢失是噪声引起的感觉神经听力损失(SNHL)的主要原因。为了阐明神经胶质细胞在SNHL中的参与,我们使用了亚历山大病(AxD)小鼠模型。这些转基因小鼠在小鼠GFAP启动子的控制下具有人类神经胶质纤维酸性蛋白(GFAP)的AxD因果突变体。认为GFAP聚集体损害星形胶质细胞的功能。在听觉途径中,仅在耳蜗神经的GFAP阳性细胞中观察到GFAP聚集体的形成。 GFAP聚集体的存在并未在阈值水平上改变听觉功能。为了评估对听觉兴奋性毒性的脆弱性变化,对转基因小鼠和对照小鼠均进行了强噪声处理。在噪声暴露后1和4周通过听觉脑干反应(ABR)评估听觉阈值变化,在暴露4周后通过定量组织学分析OHC损伤。转基因小鼠表现出更严重的ABR缺乏症和OHC损伤,表明带有GFAP聚集体的耳蜗神经胶质细胞在噪声敏感性中起作用。因此,我们应该更多地关注耳蜗神经胶质细胞在SNHL中的作用。

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