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A Zebrafish Model of Retinitis Pigmentosa Shows Continuous Degeneration and Regeneration of Rod Photoreceptors

机译:斑马鱼型视网膜色素型斑点模型显示杆光感受器的连续退化和再生

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摘要

More than 1.5 million people suffer from Retinitis Pigmentosa, with many experiencing partial to complete vision loss. Regenerative therapies offer some hope, but their development is challenged by the limited regenerative capacity of mammalian model systems. As a step toward investigating regenerative therapies, we developed a zebrafish model of Retinitis Pigmentosa that displays ongoing regeneration. We used Tol2 transgenesis to express mouse rhodopsin carrying the P23H mutation and an epitope tag in zebrafish rod photoreceptors. Adult and juvenile fish were examined by immunofluorescence, TUNEL and BrdU incorporation assays. P23H transgenic fish expressed the transgene in rods from 3 days post fertilization onward. Rods expressing the mutant rhodopsin formed very small or no outer segments and the mutant protein was delocalized over the entire cell. Adult fish displayed thinning of the outer nuclear layer (ONL) and loss of rod outer segments, but retained a single, sparse row of rods. Adult fish displayed ongoing apoptotic cell death in the ONL and an abundance of proliferating cells, predominantly in the ONL. There was a modest remodeling of bipolar and Müller glial cells. This transgenic fish will provide a useful model system to study rod photoreceptor regeneration and integration.
机译:超过150万人患有视网膜炎,有许多经历部分地完成视力丧失。再生疗法提供了一些希望,但他们的发展受到哺乳动物模型系统的有限再生能力的挑战。作为调查再生疗法的一步,我们开发了一种斑马鱼炎,其呈视网膜炎,呈现持续的再生。我们使用Tol2转基因来表达携带P23H突变的小鼠罗霉蛋白和斑马鱼杆光感受器中的表位标签。通过免疫荧光,TUNEL和BRDU掺入测定检查成人和少年鱼。 P23H转基因鱼在施肥后3天开始在杆中表达转基因。表达突变体罗霉蛋白的棒形成非常小或没有外部段,并且在整个细胞上将突变蛋白划分。成人鱼表现出外部核层(ONL)的变薄和杆外部段的损失,但保留了单个稀疏的杆。成人鱼在ONL中显示持续的凋亡细胞死亡和大量增殖细胞,主要是在ONL中。双极和Müller胶质细胞有一种适度的重塑。这种转基因鱼将提供有用的模型系统来研究杆感光体再生和整合。

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