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Applications of Lgr5-Positive Cochlear Progenitors (LCPs) to the Study of Hair Cell Differentiation

机译:Lgr5阳性耳蜗祖细胞(LCPs)在毛细胞分化研究中的应用

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摘要

The mouse cochlea contains approximately 15,000 hair cells. Its dimensions and location, and the small number of hair cells, make mechanistic, developmental and cellular replacement studies difficult. We recently published a protocol to expand and differentiate murine neonatal cochlear progenitor cells into 3D organoids that recapitulate developmental pathways and can generate large numbers of hair cells with intact stereociliary bundles, molecular markers of the native cells and mechanotransduction channel activity, as indicated by FM1-43 uptake. Here, we elaborate on the method and application of these Lgr5-positive cochlear progenitors, termed LCPs, to the study of inner ear development and differentiation. We demonstrate the use of these cells for testing several drug candidates, gene silencing and overexpression, as well as genomic modification using CRISPR/Cas9. We thus establish LCPs as a valuable in vitro tool for the analysis of progenitor cell manipulation and hair cell differentiation.
机译:小鼠耳蜗包含约15,000个毛细胞。它的尺寸和位置以及少量的毛细胞使机械,发育和细胞置换研究变得困难。我们最近发布了一项协议,以将鼠科新生婴儿人工耳蜗祖细胞扩展和区分为3D类器官,该类器官概述了发育途径,并可以生成具有完整立体纤毛束,天然细胞分子标志物和机械传导通道活性的大量毛细胞,如FM1所示。 43吸收。在这里,我们详细介绍这些称为LCPs的Lgr5阳性耳蜗祖细胞的方法和在研究内耳发育和分化中的应用。我们展示了使用这些细胞测试几种候选药物,基因沉默和过表达以及使用CRISPR / Cas9进行基因组修饰。因此,我们将LCP建立为有价值的体外工具,用于分析祖细胞操作和毛细胞分化。

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