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In Vivo Generation of Immature Inner Hair Cells in Neonatal Mouse Cochleae by Ectopic Atoh1 Expression

机译:异位Atoh1表达的新生小鼠耳蜗体内未成熟的内毛细胞的体内生成。

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摘要

Regeneration of auditory hair cells (HCs) is a promising approach to restore hearing. Recent studies have demonstrated that induced pluripotent stem cells/embryonic stem cells or supporting cells (SCs) adjacent to HCs can be converted to adopt the HC fate. However, little is known about whether new HCs are characteristic of outer or inner HCs. Here, we showed in vivo conversion of 2 subtypes of SCs, inner border cells (IBs) and inner phalangeal cells (IPhs), to the inner HC (IHC) fate. This was achieved by ectopically activating Atoh1, a transcription factor necessary for HC fate, in IBs/IPhs at birth. Atoh1+ IBs/IPhs first turned on Pou4f3, another HC transcription factor, before expressing 8 HC markers. The conversion rate gradually increased from ∼2.4% at 1 week of age to ∼17.8% in adult. Interestingly, new HCs exhibited IHC characteristics such as straight line–shaped stereociliary bundles, expression of Fgf8 and otoferlin, and presence of larger outward currents than those of outer HCs. However, new HCs lacked the terminal differentiation IHC marker vGlut3, exhibited reduced density of presynaptic Cbtp2 puncta that had little postsynaptic GluR2 specialization, and displayed immature IHC outward currents. Our results demonstrate that the conversion rate of IBs/IPhs in vivo by Atoh1 ectopic expression into the IHC fate was higher and faster and the conversion was more complete than that of the 2 other SC subtypes underneath the outer HCs; however, these new IHCs are arrested before terminal differentiation. Thus, IBs/IPhs are good candidates to regenerate IHCs in vivo.
机译:听觉毛细胞(HCs)的再生是恢复听力的一种有前途的方法。最近的研究表明,与HC相邻的诱导性多能干细胞/胚胎干细胞或支持细胞(SC)可以转化为采用HC的命运。但是,对于新HC是外部HC还是内部HC的特征知之甚少。在这里,我们显示了体内2种亚型的SC,即内缘细胞(IBs)和内指骨细胞(IPhs)向内HC(IHC)的转化。这是通过在出生时在IBs / IPhs中异位激活Atoh1(一种实现HC命运的转录因子)而实现的。在表达8种HC标记之前,Atoh1 + IBs / IPhs首先打开了另一个HC转录因子Pou4f3。成人的转化率从1周龄时的约2.4%逐渐增加到17.8%。有趣的是,新的HC表现出IHC特性,例如直线形的立体纤毛束,Fgf8和otoferlin的表达以及比外部HC更大的外向电流。但是,新的HCs缺乏终末分化IHC标记vGlut3,突触前Cbtp2点的密度降低,而突触后GluR2的特化很少,并且显示出不成熟的IHC外向电流。我们的结果表明,通过Atoh1异位表达在体内将IBs / IPhs转化为IHC命运的转化率更高,更快,并且转化比外部HCs下的其他2种SC亚型的转化更完全。但是,这些新的IHC在最终分化之前就被逮捕了。因此,IBs / IPhs是体内再生IHC的良好候选者。

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