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Synaptic repair and vision restoration in advanced degenerating eyes by transplantation of retinal progenitor cells

机译:视网膜祖细胞移植先进的退化眼中突触修复和视觉恢复

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摘要

Stem cell transplantation shows enormous potential for treatment of incurable retinal degeneration (RD). To determine if and how grafts connect with the neural circuits of the advanced degenerative retina (ADR) and improve vision, we perform calcium imaging of GCaMP5-positive grafts in retinal slices. The organoid-derived C-Kit+/SSEA1− (C-Kit+) retinal progenitor cells (RPCs) become synaptically organized and build spontaneously active synaptic networks in three major layers of ADR. Light stimulation of the host photoreceptors elicits distinct neuronal responses throughout the graft RPCs. The graft RPCs and their differentiated offspring cells in inner nuclear layer synchronize their activities with the host cells and exhibit presynaptic calcium flux patterns that resemble intact retinal neurons. Once graft-to-host network is established, progressive vision loss is stabilized while control eyes continually lose vision. Therefore, transplantation of organoid-derived C-Kit+ RPCs can form functional synaptic networks within ADR and it holds promising avenue for advanced RD treatment.
机译:干细胞移植表明治疗可治区变性(RD)的巨大潜力。为了确定是否以及如何与先进的退行性视网膜(ADR)的神经电路连接并改善视觉的神经电路,我们在视网膜切片中进行Gcamp5阳性移植物的钙成像。有机体衍生的C-kit + / SSEA1-(C-kit +)视网膜祖细胞(RPC)变为突触上组织,并在三个主要层的ADR中构建自发活动的突触网络。宿主光感受器的光刺激引发了整个接枝RPC的不同神经元响应。内核层中的移植RPC和它们的分化后代细胞与宿主细胞同步它们的活性,并表现出类似于完整视网膜神经元的突触前钙磁通图案。一旦建立了移植到主机网络,逐步衰落才能稳定,同时控制眼睛不断失去视力。因此,有机体衍生的C-kit + RPC的移植可以在ADR内形成功能突触网络,并且它具有高级RD治疗的有希望的大道。

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