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首页> 外文期刊>Stem Cell Reports >Gene Correction Reverses Ciliopathy and Photoreceptor Loss in iPSC-Derived Retinal Organoids from Retinitis Pigmentosa Patients
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Gene Correction Reverses Ciliopathy and Photoreceptor Loss in iPSC-Derived Retinal Organoids from Retinitis Pigmentosa Patients

机译:基因校正可以逆转色素性视网膜炎患者iPSC衍生的视网膜类器官中的睫状体病变和感光细胞损失。

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Summary Retinitis pigmentosa (RP) is an irreversible, inherited retinopathy in which early-onset nyctalopia is observed. Despite the genetic heterogeneity of RP, RPGR mutations are the most common causes of this disease. Here, we generated induced pluripotent stem cells (iPSCs) from three RP patients with different frameshift mutations in the RPGR gene, which were then differentiated into retinal pigment epithelium (RPE) cells and well-structured retinal organoids possessing electrophysiological properties. We observed significant defects in photoreceptor in terms of morphology, localization, transcriptional profiling, and electrophysiological activity. Furthermore, shorted cilium was found in patient iPSCs, RPE cells, and three-dimensional retinal organoids. CRISPR-Cas9-mediated correction of RPGR mutation rescued photoreceptor structure and electrophysiological property, reversed the observed ciliopathy, and restored gene expression to a level in accordance with that in the control using transcriptome-based analysis. This study recapitulated the pathogenesis of RPGR using patient-specific organoids and achieved targeted gene therapy of RPGR mutations in a dish as proof-of-concept evidence.
机译:总结色素性视网膜炎(RP)是一种不可逆的遗传性视网膜病,其中观察到了早期发作的夜视症。尽管RP具有遗传异质性,但RPGR突变是该疾病的最常见原因。在这里,我们从三名在RPGR基因中具有不同移码突变的RP患者中产生了诱导多能干细胞(iPSC),然后将它们分化为视网膜色素上皮(RPE)细胞和结构良好的视网膜类器官,它们具有电生理特性。我们观察到感光器在形态,定位,转录谱和电生理活性方面存在重大缺陷。此外,在患者iPSC,RPE细胞和三维视网膜类器官中发现了纤毛缩短。 CRISPR-Cas9介导的RPGR突变校正可挽救感光细胞的结构和电生理特性,逆转观察到的纤毛病,并使用基于转录组的分析将基因表达恢复至与对照组相符的水平。这项研究概述了使用患者特异性类器官的RPGR的发病机理,并实现了碟中RPGR突变的靶向基因治疗作为概念证据。

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