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首页> 外文期刊>Nature Communications >Lgr5+cells regenerate hair cells via proliferation and direct transdifferentiation in damaged neonatal mouse utricle
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Lgr5+cells regenerate hair cells via proliferation and direct transdifferentiation in damaged neonatal mouse utricle

机译:Lgr5 +细胞通过受损新生鼠细胞中的增殖和直接转分化来再生毛细胞

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摘要

Recruitment of endogenous progenitors is critical during tissue repair. The inner ear utricle requires mechanosensory hair cells (HCs) to detect linear acceleration. After damage, non-mammalian utricles regenerate HCs via both proliferation and direct transdifferentiation. In adult mammals, limited transdifferentiation from unidentified progenitors occurs to regenerate extrastriolar Type II HCs. Here we show that HC damage in neonatal mouse utricle activates the Wnt target gene Lgr5 in striolar supporting cells. Lineage tracing and time-lapse microscopy reveal that Lgr5+ cells transdifferentiate into HC-like cells in vitro. In contrast to adults, HC ablation in neonatal utricles in vivo recruits Lgr5+ cells to regenerate striolar HCs through mitotic and transdifferentiation pathways. Both Type I and II HCs are regenerated, and regenerated HCs display stereocilia and synapses. Lastly, stabilized beta-catenin in Lgr5+ cells enhances mitotic activity and HC regeneration. Thus Lgr5 marks Wnt-regulated, damage-activated HC progenitors and may help uncover factors driving mammalian HC regeneration.
机译:在组织修复期间,内源性祖细胞的募集至关重要。内耳囊需要机械感觉毛细胞(HCs)来检测线性加速度。损伤后,非哺乳动物的囊通过增殖和直接转分化来再生HC。在成年哺乳动物中,未确定的祖细胞发生了有限的转分化作用,从而再生出胞外II型HCs。在这里,我们显示出新生小鼠尿囊中的HC损伤激活了脉状支持细胞中的Wnt靶基因Lgr5。谱系追踪和延时显微镜显示,Lgr5 +细胞在体外可分化为HC样细胞。与成人相反,体内新生儿幼体中的HC消融募集Lgr5 +细胞,通过有丝分裂和转分化途径再生脉状HC。 I型和II型HC均可再生,并且再生的HC会显示出纤毛和突触。最后,Lgr5 +细胞中稳定的β-catenin可增强有丝分裂活性和HC再生。因此,Lgr5标志着Wnt调控的,损伤激活的HC祖细胞,可能有助于发现驱动哺乳动物HC再生的因素。

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