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Effects of genetic correction on the differentiation of hair cell-like cells from iPSCs with MYO15A mutation

机译:基因校正对具有MYO15A突变的iPSC分化为毛细胞样细胞的影响

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摘要

Deafness or hearing loss is a major issue in human health. Inner ear hair cells are the main sensory receptors responsible for hearing. Defects in hair cells are one of the major causes of deafness. A combination of induced pluripotent stem cell (iPSC) technology with genome-editing technology may provide an attractive cell-based strategy to regenerate hair cells and treat hereditary deafness in humans. Here, we report the generation of iPSCs from members of a Chinese family carrying MYO15A c.4642G4 > A and c.8374G4 > A mutations and the induction of hair cell-like cells from those iPSCs. The compound heterozygous MYO15A mutations resulted in abnormal morphology and dysfunction of the derived hair cell-like cells. We used a CRISPR/Cas9 approach to genetically correct the MYO15A mutation in the iPSCs and rescued the morphology and function of the derived hair cell-like cells. Our data demonstrate the feasibility of generating inner ear hair cells from human iPSCs and the functional rescue of gene mutation-based deafness by using genetic correction.
机译:耳聋或听力下降是人类健康的主要问题。内耳毛细胞是负责听力的主要感觉受体。毛细胞中的缺陷是耳聋的主要原因之一。诱导多能干细胞(iPSC)技术与基因组编辑技术的结合可能会提供一种有吸引力的基于细胞的策略来再生毛细胞并治疗人类的遗传性耳聋。在这里,我们报道了携带MYO15A c.4642G4> A和c.8374G4> A突变的中国家庭成员中iPSC的产生,以及这些iPSC诱导的毛细胞样细胞的诱导。化合物杂合的MYO15A突变导致衍生的毛细胞样细胞的异常形态和功能障碍。我们使用CRISPR / Cas9方法对iPSC中的MYO15A突变进行基因校正,并拯救了衍生的毛细胞样细胞的形态和功能。我们的数据证明了从人类iPSC产生内耳毛细胞的可行性,以及通过使用基因校正功能性挽救基于基因突变的耳聋的可行性。

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