Angueyra Juan M, Kindt Katie S
Retinal Neurophysiology Section, National Eye Institute, National Institutes of Health, Bethesda, MD, United States.
Section on Sensory Cell Development and Function, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, MD, United States.
Front Cell Dev Biol. 2018 Sep 19;6:110. doi: 10.3389/fcell.2018.00110. eCollection 2018.
Retinal degenerations are a heterogeneous group of diseases characterized by death of photoreceptors and progressive loss of vision. Retinal degenerations are a major cause of blindness in developed countries (Bourne et al., 2017; De Bode, 2017) and currently have no cure. In this review, we will briefly review the latest advances in therapies for retinal degenerations, highlighting the current barriers to study and develop therapies that promote photoreceptor regeneration in mammals. In light of these barriers, we present zebrafish as a powerful model to study photoreceptor regeneration and their integration into retinal circuits after regeneration. We outline why zebrafish is well suited for these analyses and summarize the powerful tools available in zebrafish that could be used to further uncover the mechanisms underlying photoreceptor regeneration and rewiring. In particular, we highlight that it is critical to understand how rewiring occurs after regeneration and how it differs from development. Insights derived from photoreceptor regeneration and rewiring in zebrafish may provide leverage to develop therapeutic targets to treat retinal degenerations.
视网膜变性是一组异质性疾病,其特征是光感受器死亡和视力逐渐丧失。视网膜变性是发达国家失明的主要原因(伯恩等人,2017年;德博德,2017年),目前尚无治愈方法。在本综述中,我们将简要回顾视网膜变性治疗的最新进展,突出目前在研究和开发促进哺乳动物光感受器再生的治疗方法方面存在的障碍。鉴于这些障碍,我们将斑马鱼作为研究光感受器再生及其再生后整合到视网膜回路中的强大模型。我们概述了斑马鱼为何非常适合这些分析,并总结了斑马鱼中可用的强大工具,这些工具可用于进一步揭示光感受器再生和重新布线的潜在机制。特别是,我们强调了解再生后重新布线如何发生以及它与发育有何不同至关重要。从斑马鱼的光感受器再生和重新布线中获得的见解可能为开发治疗视网膜变性的治疗靶点提供助力。