Zouache Moussa A
John A. Moran Eye Center, Department of Ophthalmology and Visual Sciences, University of Utah, Salt Lake City, UT, United States.
Front Aging Neurosci. 2022 Feb 25;14:778404. doi: 10.3389/fnagi.2022.778404. eCollection 2022.
Aging is associated with a broad range of visual impairments that can have dramatic consequences on the quality of life of those impacted. These changes are driven by a complex series of alterations affecting interactions between multiple cellular and extracellular elements. The resilience of many of these interactions may be key to minimal loss of visual function in aging; yet many of them remain poorly understood. In this review, we focus on the relation between retinal neurons and their respective mass transport systems. These metabolite delivery systems include the retinal vasculature, which lies within the inner portion of the retina, and the choroidal vasculature located externally to the retinal tissue. A framework for investigation is proposed and applied to identify the structures and processes determining retinal mass transport at the cellular and tissue levels. Spatial variability in the structure of the retina and changes observed in aging are then harnessed to explore the relation between variations in neuron populations and those seen among retinal metabolite delivery systems. Existing data demonstrate that the relation between inner retinal neurons and their mass transport systems is different in nature from that observed between the outer retina and choroid. The most prominent structural changes observed across the eye and in aging are seen in Bruch's membrane, which forms a selective barrier to mass transfers at the interface between the choroidal vasculature and the outer retina.
衰老与一系列广泛的视觉障碍相关,这些障碍会对受影响者的生活质量产生重大影响。这些变化是由一系列复杂的改变驱动的,这些改变影响着多个细胞和细胞外成分之间的相互作用。这些相互作用中许多的弹性可能是衰老过程中视觉功能损失最小化的关键;然而,其中许多仍知之甚少。在这篇综述中,我们关注视网膜神经元与其各自的物质运输系统之间的关系。这些代谢物输送系统包括位于视网膜内部的视网膜血管系统,以及位于视网膜组织外部的脉络膜血管系统。我们提出并应用了一个研究框架,以确定在细胞和组织水平上决定视网膜物质运输的结构和过程。然后利用视网膜结构的空间变异性以及在衰老过程中观察到的变化,来探索神经元群体的变化与视网膜代谢物输送系统中观察到的变化之间的关系。现有数据表明,视网膜内层神经元与其物质运输系统之间的关系在本质上不同于视网膜外层与脉络膜之间观察到的关系。在整个眼睛和衰老过程中观察到的最显著的结构变化出现在 Bruch 膜中,它在脉络膜血管系统与视网膜外层的界面处形成了一个对物质转移的选择性屏障。