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Modulation of Wnt Signaling Enhances Inner Ear Organoid Development in 3D Culture

机译:Wnt信号的调制增强了3D文化中的内耳类器官发育

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摘要

Stem cell-derived inner ear sensory epithelia are a promising source of tissues for treating patients with hearing loss and dizziness. We recently demonstrated how to generate inner ear sensory epithelia, designated as inner ear organoids, from mouse embryonic stem cells (ESCs) in a self-organizing 3D culture. Here we improve the efficiency of this culture system by elucidating how Wnt signaling activity can drive the induction of otic tissue. We found that a carefully timed treatment with the potent Wnt agonist CHIR99021 promotes induction of otic vesicles—a process that was previously self-organized by unknown mechanisms. The resulting otic-like vesicles have a larger lumen size and contain a greater number of Pax8/Pax2-positive otic progenitor cells than organoids derived without the Wnt agonist. Additionally, these otic-like vesicles give rise to large inner ear organoids with hair cells whose morphological, biochemical and functional properties are indistinguishable from those of vestibular hair cells in the postnatal mouse inner ear. We conclude that Wnt signaling plays a similar role during inner ear organoid formation as it does during inner ear development in the embryo.
机译:干细胞衍生的内耳感觉上皮细胞是用于治疗听力损失和头晕患者的有希望的组织来源。我们最近展示了如何在自组织3D文化中从小鼠胚胎干细胞(ESC)生成称为内耳类器官的内耳感觉上皮。在这里,我们通过阐明Wnt信号传导活性如何驱动耳组织的诱导来提高该培养系统的效率。我们发现,用强力的Wnt激动剂CHIR99021谨慎地定时治疗可促进诱导囊泡-这个过程以前是由未知机制自组织的。与没有Wnt激动剂衍生的类器官相比,所得的类似耳的小泡具有更大的管腔大小,并包含更多的Pax8 / Pax2阳性耳祖细胞。另外,这些类似耳廓的囊泡会引起带有毛细胞的大内耳类器官,它们的形态,生化和功能特性与产后小鼠内耳的前庭毛细胞的特性无法区分开。我们得出的结论是,Wnt信号在内耳类器官形成过程中的作用与在胚胎中内耳发育过程中起的作用类似。

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