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微重力及其他航天因素对脊椎动物和人类视网膜的体内及体外影响

Impact of Microgravity and Other Spaceflight Factors on Retina of Vertebrates and Humans In Vivo and In Vitro.

作者信息

Grigoryan Eleonora N

机构信息

Koltzov Institute of Developmental Biology, Russian Academy of Sciences, 119334 Moscow, Russia.

出版信息

Life (Basel). 2023 May 26;13(6):1263. doi: 10.3390/life13061263.

Abstract

Spaceflight (SF) increases the risk of developmental, regenerative, and physiological disorders in animals and humans. Astronauts, besides bone loss, muscle atrophy, and cardiovascular and immune system alterations, undergo ocular disorders affecting posterior eye tissues, including the retina. Few studies revealed abnormalities in the development and changes in the regeneration of eye tissues in lower vertebrates after SF and simulated microgravity. Under microgravity conditions, mammals show disturbances in the retinal vascular system and increased risk of oxidative stress that can lead to cell death in the retina. Animal studies provided evidence of gene expression changes associated with cellular stress, inflammation, and aberrant signaling pathways. Experiments using retinal cells in microgravity-modeling systems in vitro additionally indicated micro-g-induced changes at the molecular level. Here, we provide an overview of the literature and the authors' own data to assess the predictive value of structural and functional alterations for developing countermeasures and mitigating the SF effects on the human retina. Further emphasis is given to the importance of animal studies on the retina and other eye tissues in vivo and retinal cells in vitro aboard spacecraft for understanding alterations in the vertebrate visual system in response to stress caused by gravity variations.

摘要

太空飞行(SF)会增加动物和人类出现发育、再生及生理紊乱的风险。宇航员除了会出现骨质流失、肌肉萎缩以及心血管和免疫系统改变外,还会遭受影响眼后组织(包括视网膜)的眼部疾病。很少有研究揭示在太空飞行和模拟微重力条件下低等脊椎动物眼部组织发育异常及再生变化。在微重力条件下,哺乳动物的视网膜血管系统会出现紊乱,氧化应激风险增加,进而可能导致视网膜细胞死亡。动物研究提供了与细胞应激、炎症及异常信号通路相关的基因表达变化的证据。在体外微重力模拟系统中使用视网膜细胞进行的实验进一步表明了微重力诱导的分子水平变化。在此,我们概述相关文献及作者自己的数据,以评估结构和功能改变对于制定应对措施及减轻太空飞行对人类视网膜影响的预测价值。还进一步强调了在航天器上对体内视网膜和其他眼部组织以及体外视网膜细胞进行动物研究对于理解脊椎动物视觉系统因重力变化引起的应激而发生改变的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e10/10305389/7b1c34b3d95f/life-13-01263-g001.jpg

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