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Restoration of visual function by transplantation of optogenetically engineered photoreceptors

机译:通过光遗传工程改造的感光细胞的移植恢复视觉功能

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摘要

A major challenge in the treatment of retinal degenerative diseases, with the transplantation of replacement photoreceptors, is the difficulty in inducing the grafted cells to grow and maintain light sensitive outer segments in the host retina, which depends on proper interaction with the underlying retinal pigment epithelium (RPE). Here, for an RPE-independent treatment approach, we introduce a hyperpolarizing microbial opsin into photoreceptor precursors from newborn mice, and transplant them into blind mice lacking the photoreceptor layer. These optogenetically-transformed photoreceptors are light responsive and their transplantation leads to the recovery of visual function, as shown by ganglion cell recordings and behavioral tests. Subsequently, we generate cone photoreceptors from human induced pluripotent stem cells, expressing the chloride pump Jaws. After transplantation into blind mice, we observe light-driven responses at the photoreceptor and ganglion cell levels. These results demonstrate that structural and functional retinal repair is possible by combining stem cell therapy and optogenetics.
机译:移植替代性光感受器在视网膜变性疾病治疗中的主要挑战是难以诱导嫁接的细胞在宿主视网膜中生长和维持光敏性外段,这取决于与基础视网膜色素上皮的正确相互作用。 (RPE)。在这里,对于不依赖RPE的治疗方法,我们将超极化微生物视蛋白引入新生小鼠的光感受器前体中,然后将它们移植到缺少光感受器层的盲小鼠中。这些神经遗传转化的感光细胞具有光响应性,它们的移植导致视觉功能的恢复,如神经节细胞记录和行为测试所示。随后,我们从人诱导的多能干细胞生成视锥细胞感光细胞,表达氯化物泵颚。移植到盲小鼠后,我们观察到感光细胞和神经节细胞水平的光驱动反应。这些结果表明,通过结合干细胞疗法和光遗传学技术,可以进行视网膜的结构和功能修复。

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