首页> 外文期刊>Stem cells translational medicine. >Genetic Correction of Induced Pluripotent Stem Cells From a Deaf Patient With MYO7A Mutation Results in Morphologic and Functional Recovery of the Derived Hair Cell-Like Cells
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Genetic Correction of Induced Pluripotent Stem Cells From a Deaf Patient With MYO7A Mutation Results in Morphologic and Functional Recovery of the Derived Hair Cell-Like Cells

机译:患有MYO7A突变的聋人患者诱导多能干细胞的遗传校正导致衍生的毛细胞样细胞的形态和功能恢复

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The genetic correction of induced pluripotent stem cells (iPSCs) induced from somatic cells of patients with sensorineural hearing loss (caused by hereditary factors) is a promising method for its treatment. The correction of gene mutations in iPSCs could restore the normal function of cells and provide a rich source of cells for transplantation. In the present study, iPSCs were generated from a deaf patient with compound heterozygous MYO7A mutations (c.1184G>A and c.4118C>T; P-iPSCs), the asymptomatic father of the patient (MYO7A c.1184G>A mutation; CF-iPSCs), and a normal donor (MYO7AWT/WT; C-iPSCs). One of MYO7A mutation sites (c.4118C>T) in the P-iPSCs was corrected using CRISPR/Cas9. The corrected iPSCs (CP-iPSCs) retained cell pluripotency and normal karyotypes. Hair cell-like cells induced from CP-iPSCs showed restored organization of stereocilia-like protrusions; moreover, the electrophysiological function of these cells was similar to that of cells induced from C-iPSCs and CF-iPSCs. These results might facilitate the development of iPSC-based gene therapy for genetic disorders.Induced pluripotent stem cells (iPSCs) were generated from a deaf patient with compound heterozygous MYO7A mutations (c.1184G>A and c.4118C>T). One of the MYO7A mutation sites (c.4118C>T) in the iPSCs was corrected using CRISPR/Cas9. The genetic correction of MYO7A mutation resulted in morphologic and functional recovery of hair cell-like cells derived from iPSCs. These findings confirm the hypothesis that MYO7A plays an important role in the assembly of stereocilia into stereociliary bundles. Thus, the present study might provide further insight into the pathogenesis of sensorineural hearing loss and facilitate the development of therapeutic strategies against monogenic disease through the genetic repair of patient-specific iPSCs.
机译:感官神经性听力损失(由遗传因素引起)患者的体细胞诱导的诱导多能干细胞(iPSC)的基因校正是一种有前途的治疗方法。 iPSCs基因突变的纠正可以恢复细胞的正常功能,并为移植提供丰富的细胞来源。在本研究中,iPSCs来自具有复合杂合性MYO7A突变(c.1184G> A和c.4118C> T; P-iPSCs)的聋哑患者,该患者是无症状父亲(MYO7A c.1184G> A突变; CF-iPSC)和正常供体(MYO7AWT / WT; C-iPSC)。使用CRISPR / Cas9纠正了P-iPSC中MYO7A突变位点之一(c.4118C> T)。校正后的iPSC(CP-iPSC)保留了细胞多能性和正常的核型。 CP-iPSCs诱导的毛细胞样细胞显示恢复了立体纤毛样突起的组织。此外,这些细胞的电生理功能类似于由C-iPSC和CF-iPSC诱导的细胞。这些结果可能会促进基于iPSC的遗传疾病基因治疗的发展。诱导多能干细胞(iPSCs)是由一名患有复合杂合性MYO7A突变(c.1184G> A和c.4118C> T)的聋人患者产生的。使用CRISPR / Cas9纠正了iPSC中MYO7A突变位点之一(c.4118C> T)。 MYO7A突变的基因校正导致衍生自iPSC的毛细胞样细胞的形态和功能恢复。这些发现证实了MYO7A在将纤毛纤毛组装成纤毛纤毛束中起重要作用的假设。因此,本研究可能为感觉神经性听力损失的发病机理提供进一步的见解,并通过对患者特异性iPSC的基因修复来促进针对单基因疾病的治疗策略的发展。

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