Department of Ophthalmology and Visual Sciences, Kellogg Eye Center, University of Michigan, Ann Arbor, MI, USA.
Commun Biol. 2021 Feb 24;4(1):245. doi: 10.1038/s42003-021-01765-3.
Acquired and inherited retinal disorders are responsible for vision loss in an increasing proportion of individuals worldwide. Photoreceptor (PR) death is central to the vision loss individuals experience in these various retinal diseases. Unfortunately, there is a lack of treatment options to prevent PR loss, so an urgent unmet need exists for therapies that improve PR survival and ultimately, vision. The retina is one of the most energy demanding tissues in the body, and this is driven in large part by the metabolic needs of PRs. Recent studies suggest that disruption of nutrient availability and regulation of cell metabolism may be a unifying mechanism in PR death. Understanding retinal cell metabolism and how it is altered in disease has been identified as a priority area of research. The focus of this review is on the recent advances in the understanding of PR metabolism and how it is critical to reduction-oxidation (redox) balance, the outer retinal metabolic ecosystem, and retinal disease. The importance of these metabolic processes is just beginning to be realized and unraveling the metabolic and redox pathways integral to PR health may identify novel targets for neuroprotective strategies that prevent blindness in the heterogenous group of retinal disorders.
获得性和遗传性视网膜疾病导致全球越来越多的人视力丧失。光感受器 (PR) 的死亡是这些各种视网膜疾病导致个体视力丧失的核心。不幸的是,缺乏预防 PR 损失的治疗选择,因此迫切需要能够改善 PR 存活并最终改善视力的治疗方法。视网膜是人体中能量需求最高的组织之一,这在很大程度上是由 PR 的代谢需求驱动的。最近的研究表明,营养物质可用性的破坏和细胞代谢的调节可能是 PR 死亡的一种统一机制。了解视网膜细胞代谢及其在疾病中的变化已被确定为优先研究领域。本综述的重点是最近在理解 PR 代谢方面的进展,以及它对氧化还原 (redox) 平衡、外视网膜代谢生态系统和视网膜疾病的重要性。这些代谢过程的重要性才刚刚开始被认识到,揭示 PR 健康所必需的代谢和 redox 途径可能为预防各种视网膜疾病导致的失明的神经保护策略确定新的靶点。