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首页> 外文期刊>Scientific reports. >OHC-TRECK: A Novel System Using a Mouse Model for Investigation of the Molecular Mechanisms Associated with Outer Hair Cell Death in the Inner Ear
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OHC-TRECK: A Novel System Using a Mouse Model for Investigation of the Molecular Mechanisms Associated with Outer Hair Cell Death in the Inner Ear

机译:OHC-TRECK:使用小鼠模型的新型系统,用于调查内耳内毛发细胞死亡的分子机制

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Outer hair cells (OHCs) are responsible for the amplification of sound, and the death of these cells leads to hearing loss. Although the mechanisms for sound amplification and OHC death have been well investigated, the effects on the cochlea after OHC death are poorly understood. To study the consequences of OHC death, we established an OHC knockout system using a novel mouse model, Prestin-hDTR, which uses the prestin promoter to express the human diphtheria toxin (DT) receptor gene (hDTR). Administration of DT to adult Prestin-hDTR mice results in the depletion of almost all OHCs without significant damage to other cochlear and vestibular cells, suggesting that this system is an effective tool for the analysis of how other cells in the cochlea and vestibula are affected after OHC death. To evaluate the changes in the cochlea after OHC death, we performed differential gene expression analysis between the untreated and DT-treated groups of wild-type and Prestin-hDTR mice. This analysis revealed that genes associated with inflammatory/immune responses were significantly upregulated. Moreover, we found that several genes linked to hearing loss were strongly downregulated by OHC death. Together, these results suggest that this OHC knockout system is a useful tool to identify biomarkers associated with OHC death.
机译:外毛细胞(OHCS)负责声音的扩增,这些细胞的死亡导致听力损失。虽然声音放大和OHC死亡的机制得到了很好的研究,但在OHC死后对耳蜗的影响很差。为研究OHC死亡的后果,我们使用新的小鼠模型,普雷斯汀-HDTR建立了OHC淘汰系统,其使用普雷斯汀启动子表达人白喉毒素(DT)受体基因(HDTR)。将DT给予成人普雷斯汀 - HDTR小鼠导致几乎所有OHC的耗竭,对其他耳蜗和前庭细胞的显着损害,表明该系统是分析耳蜗和前舟区的其他细胞的有效工具OHC死亡。为了评估OHC死亡后耳蜗的变化,我们在未处理和DT处理的野生型和普雷斯汀 - HDTR小鼠之间进行了差异基因表达分析。该分析显示,与炎症/免疫应答相关的基因显着上调。此外,我们发现,与听力损失相关的几个基因受到OCC死亡的强烈下调。这些结果表明,该OCC淘汰系统是一种有用的工具,可以识别与OCC死亡相关的生物标志物。

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