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Greater epithelial ridge cells are the principal organoid-forming progenitors of the mouse cochlea

机译:更大的上皮脊细胞是小鼠耳蜗的主要有机体形成祖细胞体

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In mammals, hearing loss is irreversible due to the lack of regenerative potential of non-sensory cochlear cells. Neonatal cochlear cells, however, can grow into organoids that harbor sensory epithelial cells, including hair cells and supporting cells. Here, we purify different cochlear cell types from neonatal mice, validate the composition of the different groups with single-cell RNA sequencing (RNA-seq), and assess the various groups' potential to grow into inner ear organoids. We find that the greater epithelial ridge (GER), a transient cell population that disappears during post-natal cochlear maturation, harbors the most potent organoid-forming cells. We identified three distinct GER cell groups that correlate with a specific spatial distribution of marker genes. Organoid formation was synergistically enhanced when the cells were cultured at increasing density. This effect is not due to diffusible signals but requires direct cell-to-cell contact. Our findings improve the development of cell-based assays to study culture-generated inner ear cell types.
机译:在哺乳动物中,由于缺乏非感觉耳蜗细胞的再生潜力,听力损失是不可逆转的。然而,新生儿耳蜗细胞可以生长到患有感觉上皮细胞的有机体,包括毛细胞和支持细胞。在这里,我们从新生小鼠纯化不同的耳蜗细胞类型,用单细胞RNA测序(RNA-SEQ)验证不同组的组成,并评估各种组的潜力将生长到内耳有机体中。我们发现更大的上皮脊(GER),在产后耳蜗成熟期间消失的瞬时细胞群,HARBORS最有效的有机体形成细胞。我们鉴定了三种不同的GER细胞基团,其与标记基因的特定空间分布相关。当细胞在增加密度培养时,有机体形成的增强增强。这种效果不是由于扩散信号,而是需要直接的细胞到细胞接触。我们的研究结果改善了基于细胞的测定的发展,以研究培养生成的内耳细胞类型。

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