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Retinal Ganglion Cells With a Glaucoma OPTN(E50K) Mutation Exhibit Neurodegenerative Phenotypes when Derived from Three-Dimensional Retinal Organoids

StemCellReports. 2020-07; 
Kirstin B. VanderWall, Kang-Chieh Huang,Yanling Pan, Sailee S. Lavekar, Clarisse M. Fligor, Anna R. Allsop, Kelly A. Lentsch, Pengtao Dang, Chi Zhang, Henry C. Tseng,Theodore R. Cummins,and Jason S. Meyer
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摘要

Retinal ganglion cells (RGCs) serve as the connection between the eye and the brain, with this connection disrupted in glaucoma. Numerous cellular mechanisms have been associated with glaucomatous neurodegeneration, and useful cellular models of glaucoma allow for the precise analysis of degenerative phenotypes. Human pluripotent stem cells (hPSCs) serve as powerful tools for studying human disease, particularly cellular mechanisms underlying neurodegeneration. Thus, efforts focused upon hPSCs with an E50K mutation in the Optineurin (OPTN) gene, a leading cause of inherited forms of glaucoma. CRISPR/Cas9 gene editing introduced the OPTN(E50K) mutation into existing lines of hPSCs, as well as generating isogenic... More

关键词

stem cell iPSC retina glaucoma autophagy differentiation disease modeling CRISPR gene editing neurodegeneration