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Identification of mouse cochlear progenitors that develop hair and supporting cells in the organ of Corti

机译:鉴定在Corti器官中发育毛发和支持细胞的小鼠耳蜗祖细胞

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摘要

The adult mammalian cochlear sensory epithelium houses two major types of cells, mechanosensory hair cells and underlying supporting cells, and lacks regenerative capacity. Recent evidence indicates that a subset of supporting cells can spontaneously regenerate hair cells after ablation only within the first week postparturition. Here in vivo clonal analysis of mouse inner ear cells during development demonstrates clonal relationship between hair and supporting cells in sensory organs. We report the identification in mouse of a previously unknown population of multipotent stem/progenitor cells that are capable of not only contributing to the hair and supporting cells but also to other cell types, including glia, in cochlea undergoing development, maturation and repair in response to damage. These multipotent progenitors originate from Eya1-expressing otic progenitors. Our findings also provide evidence for detectable regenerative potential in the postnatal cochlea beyond 1 week of age.
机译:成年哺乳动物的耳蜗感觉上皮细胞容纳两种主要类型的细胞,即机械感觉毛细胞和下面的支持细胞,并且缺乏再生能力。最近的证据表明,仅在分娩后的第一周内,消融后,支持细胞的一部分才能自发再生毛细胞。在这里,小鼠内耳细胞在发育过程中的体内克隆分析表明,毛发与感觉器官中的支持细胞之间存在克隆关系。我们报告在小鼠中鉴定出以前未知的多能干/祖细胞群,这些干细胞不仅能够促进毛发和支持细胞,而且还能促进其他细胞类型(包括神经胶质细胞)的发育,成熟和修复损坏。这些多能祖细胞起源于表达Eya1的耳祖细胞。我们的发现还为超过1周龄的产后耳蜗可检测到的再生潜力提供了证据。

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