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氧化应激对太空特殊环境下骨骼系统的影响。

The Impact of Oxidative Stress on the Bone System in Response to the Space Special Environment.

机构信息

Key Laboratory for Space Bioscience and Biotechnology, Bone Metabolism Lab, School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Int J Mol Sci. 2017 Oct 12;18(10):2132. doi: 10.3390/ijms18102132.

Abstract

The space special environment mainly includes microgravity, radiation, vacuum and extreme temperature, which seriously threatens an astronaut's health. Bone loss is one of the most significant alterations in mammalians after long-duration habitation in space. In this review, we summarize the crucial roles of major factors-namely radiation and microgravity-in space in oxidative stress generation in living organisms, and the inhibitory effect of oxidative stress on bone formation. We discussed the possible mechanisms of oxidative stress-induced skeletal involution, and listed some countermeasures that have therapeutic potentials for bone loss via oxidative stress antagonism. Future research for better understanding the oxidative stress caused by space environment and the development of countermeasures against oxidative damage accordingly may facilitate human beings to live more safely in space and explore deeper into the universe.

摘要

空间特殊环境主要包括微重力、辐射、真空和极端温度,这些因素严重威胁着宇航员的健康。骨丢失是哺乳动物在空间长期居住后最显著的改变之一。在这篇综述中,我们总结了主要因素——即辐射和微重力——在生物体产生氧化应激中的关键作用,以及氧化应激对骨形成的抑制作用。我们讨论了氧化应激诱导骨骼退化的可能机制,并列出了一些通过抗氧化应激拮抗作用治疗骨丢失的有潜力的对策。未来的研究可以更好地理解空间环境引起的氧化应激,并相应地开发对抗氧化损伤的对策,这可能有助于人类在太空中更安全地生活,并更深入地探索宇宙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8934/5666814/9537f15ad225/ijms-18-02132-sch001.jpg

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