首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Age-dependent in vivo conversion of mouse cochlear pillar and Deiters' cells to immature hair cells by Atoh1 ectopic expression
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Age-dependent in vivo conversion of mouse cochlear pillar and Deiters' cells to immature hair cells by Atoh1 ectopic expression

机译:通过Atoh1异位表达将小鼠耳蜗支柱和Deiters'细胞转变为未成熟毛细胞的年龄依赖性体内转化

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摘要

Unlike nonmammalian vertebrates, mammals cannot convert inner ear cochlear supporting cells (SCs) into sensory hair cells (HCs) after damage, thus causing permanent deafness. Here, we achieved in vivo conversion of two SC subtypes, pillar cells (PCs) and Deiters' cells (DCs), into HCs by inducing targeted expression of Atoh1 at neonatal and juvenile ages using novel mouse models. The conversion only occurred in ~10% of PCs and DCs with ectopic Atoh1 expression and started with reactivation of endogenous Atoh1 followed by expression of 11 HC and synaptic markers, a process that took approximately 3 weeks in vivo. These new HCs resided in the outer HC region, formed stereocilia, contained mechanoelectrical transduction channels, and survived for >2 months in vivo; however, they surprisingly lacked prestin and oncomodulin expression and mature HC morphology. In contrast, adult PCs and DCs no longer responded to ectopic Atoh1 expression, even after outer HC damage. Finally, permanent Atoh1 expression in endogenous HCs did not affect prestin expression but caused cell loss of mature HCs. Together, our results demonstrate that in vivo conversion of PCs and DCs into immature HCs by Atoh1 is age dependent and resembles normal HC development. Therefore, combined expression of Atoh1 with additional factors holds therapeutic promise to convert PCs and DCs into functional HCs in vivo for regenerative purposes.
机译:与非哺乳动物脊椎动物不同,哺乳动物无法在损伤后将内耳人工耳蜗支持细胞(SCs)转换为感觉毛细胞(HCs),从而导致永久性耳聋。在这里,我们通过使用新型小鼠模型诱导Atoh1在新生儿和少年时期的靶向表达,实现了两种SC亚型,即柱状细胞(PC)和Deiters'细胞(DC)的体内转化为HC。转化仅发生在约10%的具有异位Atoh1表达的PC和DC中,并开始于内源性Atoh1的重新激活,然后表达11种HC和突触标记物,该过程在体内耗时约3周。这些新的HCs位于外部HCs区,形成了立体纤毛,包含机电转导通道,并且在体内存活时间超过2个月。但是,他们出人意料地缺乏蛋白素和癌调节蛋白的表达以及成熟的HC形态。相反,即使在外部HC损伤后,成年的PC和DC也不再响应异位Atoh1的表达。最后,内源性HCs中Atoh1的永久表达不会影响prestin的表达,但会导致成熟HCs的细胞丢失。总之,我们的结果表明,Atoh1在体内将PC和DC转化为不成熟的HC是年龄依赖性的,并且类似于正常的HC发育。因此,Atoh1与其他因子的联合表达具有治疗前景,可将PC和DC在体内转化为功能性HC,以实现再生目的。

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