衰老视网膜的结构、功能和分子景观。

IF 5 2区 医学 Q1 NEUROSCIENCES
Jeffrey D Zhu, Sharma Pooja Tarachand, Qudrat Abdulwahab, Melanie A Samuel
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引用次数: 2

摘要

由于中枢神经系统在很大程度上是不可再生的,神经元及其突触必须在个体的一生中保持,以确保电路功能。年龄是神经疾病的主要风险因素,即使在没有疾病的情况下,神经系统功能的下降也是衰老的常见特征。这些改变延伸到视觉系统,特别是视网膜。视网膜是一个与临床相关的年龄相关变化的部位,但也被证明是一个独特的可接近的系统,可以发现控制神经衰老的原理,因为它被很好地映射,包含不同的神经元类型,并且可以通过实验获得。在这篇文章中,我们回顾了衰老对视网膜内外回路神经元的结构和分子影响。我们进一步讨论了非神经元细胞类型和系统对视网膜衰老结果的贡献。了解视网膜衰老的方式和原因对于预防与年龄相关的神经衰退和恢复神经功能至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure, Function, and Molecular Landscapes of the Aging Retina.

Because the central nervous system is largely nonrenewing, neurons and their synapses must be maintained over the lifetime of an individual to ensure circuit function. Age is a dominant risk factor for neural diseases, and declines in nervous system function are a common feature of aging even in the absence of disease. These alterations extend to the visual system and, in particular, to the retina. The retina is a site of clinically relevant age-related alterations but has also proven to be a uniquely approachable system for discovering principles that govern neural aging because it is well mapped, contains diverse neuron types, and is experimentally accessible. In this article, we review the structural and molecular impacts of aging on neurons within the inner and outer retina circuits. We further discuss the contribution of non-neuronal cell types and systems to retinal aging outcomes. Understanding how and why the retina ages is critical to efforts aimed at preventing age-related neural decline and restoring neural function.

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来源期刊
Annual Review of Vision Science
Annual Review of Vision Science Medicine-Ophthalmology
CiteScore
11.10
自引率
1.70%
发文量
19
期刊介绍: The Annual Review of Vision Science reviews progress in the visual sciences, a cross-cutting set of disciplines which intersect psychology, neuroscience, computer science, cell biology and genetics, and clinical medicine. The journal covers a broad range of topics and techniques, including optics, retina, central visual processing, visual perception, eye movements, visual development, vision models, computer vision, and the mechanisms of visual disease, dysfunction, and sight restoration. The study of vision is central to progress in many areas of science, and this new journal will explore and expose the connections that link it to biology, behavior, computation, engineering, and medicine.
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