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- W3019589546 abstract "In humans, various genetic defects or age-related diseases, such as diabetic retinopathies, glaucoma, and macular degeneration, cause the death of retinal neurons and profound vision loss. One approach to treating these diseases is to utilize stem and progenitor cells to replace neurons in situ, with the expectation that new neurons will create new synaptic circuits or integrate into existing ones. Reprogramming non-neuronal cells in vivo into stem or progenitor cells is one strategy for replacing lost neurons. Zebrafish have become a valuable model for investigating cellular reprogramming and retinal regeneration. This review summarizes our current knowledge regarding spontaneous reprogramming of Müller glia in zebrafish and compares this knowledge to research efforts directed toward reprogramming Müller glia in mammals. Intensive research using these animal models has revealed shared molecular mechanisms that make Müller glia attractive targets for cellular reprogramming and highlighted the potential for curing degenerative retinal diseases from intrinsic cellular sources." @default.
- W3019589546 created "2020-05-01" @default.
- W3019589546 creator A5011809027 @default.
- W3019589546 creator A5034848384 @default.
- W3019589546 creator A5059941656 @default.
- W3019589546 creator A5080960574 @default.
- W3019589546 date "2020-09-15" @default.
- W3019589546 modified "2023-10-16" @default.
- W3019589546 title "Reprogramming Müller Glia to Regenerate Retinal Neurons" @default.
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