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Multiple supporting cell subtypes are capable of spontaneous hair cell regeneration in the neonatal mouse cochlea

机译:多个配套细胞亚型能够在新生鼠耳蜗中的自发毛细胞再生

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摘要

Supporting cells (SCs) are known to spontaneously regenerate hair cells (HCs) in the neonatal mouse cochlea, yet little is known about the relative contribution of distinct SC subtypes which differ in morphology and function. We have previously shown that HC regeneration is linked to Notch signaling, and some SC subtypes, but not others, lose expression of the Notch effector Hes5. Other work has demonstrated that Lgr5-positive SCs have an increased capacity to regenerate HCs; however, several SC subtypes express Lgr5. To further investigate the source for spontaneous HC regeneration, we used three CreER lines to fate-map distinct groups of SCs during regeneration. Fate-mapping either alone or combined with a mitotic tracer showed that pillar and Deiters' cells contributed more regenerated HCs overall. However, when normalized to the total fate-mapped population, pillar, Deiters', inner phalangeal and border cells had equal capacity to regenerate HCs, and all SC subtypes could divide after HC damage. Investigating the mechanisms that allow individual SC subtypes to regenerate HCs and the postnatal changes that occur in each group during maturation could lead to therapies for hearing loss.
机译:已知支持细胞(SCS)在新生儿小鼠耳蜗中自发地再生毛细胞(HCS),但关于形态学和功能不同的不同SC亚型的相对贡献几乎是已知的。我们之前已经表明,HC再生与缺口信号传导相关联,以及一些SC亚型,但不是其他副,丧失陷波效应HES5的表达。其他作品表明,LGR5阳性SCS具有增加的再生HCS的能力;然而,几个SC亚型表达LGR5。为了进一步研究自发性HC再生的来源,我们使用三条梯队在再生期间对命运不同的SCS组。单独或与有丝分裂示踪剂组合的命运映射显示,柱和派对的细胞总体上有更多再生的HC。然而,当归一化到总命运群体,柱子,脱发剂,内部指骨和边界细胞具有相同的再生HCS的容量,并且所有SC亚型可以在HC损伤后分开。调查允许各个SC亚型以再生HCS的机制和成熟期间每组发生的后期变化可能导致听力损失的疗法。

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