再生(生物学)
神经科学
视网膜
接口(物质)
视网膜再生
医学
生物
眼科
细胞生物学
生物化学
吉布斯等温线
肺表面活性物质
作者
Sucheta Bhattacharya,Jugasmita Deka,Thomas Avallone,Levi Todd
标识
DOI:10.1016/j.preteyeres.2025.101361
摘要
Retinal neurodegeneration leads to irreversible blindness due to the mammalian nervous system's inability to regenerate lost neurons. Efforts to regenerate retina involve two main strategies: stimulating endogenous cells to reprogram into neurons or transplanting stem-cell derived neurons into the degenerated retina. However, both approaches must overcome a major barrier in getting new neurons to grow back down the optic nerve and connect to appropriate visual targets in environments that differ significantly from developmental conditions. While immune privilege has historically been associated with the central nervous system, an emerging literature highlights the active role of immune cells in shaping neurodegeneration and regeneration. This review explores the neuroimmune interface in retinal repair, dissecting how immune interactions influence glial reprogramming, transplantation outcomes, and axonal regeneration. By integrating insights from regenerative species with mammalian models, we highlight novel immunomodulatory strategies to optimize retinal regeneration.
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