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航天辐射和微重力对生物系统和功能结果的单独和联合影响。

The individual and combined effects of spaceflight radiation and microgravity on biologic systems and functional outcomes.

机构信息

Department of Radiation Oncology, Wake Forest School of Medicine, Winston-Salem, North Carolina.

Department of Radiation Oncology, Eastern Virginia Medical School, Norfolk, Virginia.

出版信息

J Environ Sci Health C Toxicol Carcinog. 2021;39(2):129-179. doi: 10.1080/26896583.2021.1885283.

Abstract

Both microgravity and radiation exposure in the spaceflight environment have been identified as hazards to astronaut health and performance. Substantial study has been focused on understanding the biology and risks associated with prolonged exposure to microgravity, and the hazards presented by radiation from galactic cosmic rays (GCR) and solar particle events (SPEs) outside of low earth orbit (LEO). To date, the majority of the ground-based analogues (e.g., rodent or cell culture studies) that investigate the biology of and risks associated with spaceflight hazards will focus on an individual hazard in isolation. However, astronauts will face these challenges simultaneously Combined hazard studies are necessary for understanding the risks astronauts face as they travel outside of LEO, and are also critical for countermeasure development. The focus of this review is to describe biologic and functional outcomes from ground-based analogue models for microgravity and radiation, specifically highlighting the combined effects of radiation and reduced weight-bearing from rodent ground-based tail suspension via hind limb unloading (HLU) and partial weight-bearing (PWB) models, although in vitro and spaceflight results are discussed as appropriate. The review focuses on the skeletal, ocular, central nervous system (CNS), cardiovascular, and stem cells responses.

摘要

微重力和空间辐射暴露已被确定为宇航员健康和性能的危害因素。大量的研究集中在了解长时间暴露于微重力相关的生物学和风险,以及来自地球轨道以外的银河宇宙射线(GCR)和太阳粒子事件(SPE)的辐射所带来的危害。迄今为止,大多数用于研究航天危害相关生物学和风险的地面模拟实验(例如,啮齿动物或细胞培养研究)将单独关注单一危害因素。然而,宇航员将同时面临这些挑战。为了了解宇航员在离开地球轨道时所面临的风险,有必要进行联合危害研究,这对于对抗措施的开发也至关重要。本综述的重点是描述微重力和辐射的地面模拟模型的生物学和功能结果,特别是通过后肢去负荷(hind limb unloading,HLU)和部分负重(partial weight-bearing,PWB)模型突出了辐射和减少负重对啮齿动物地面模拟实验的联合影响,尽管适当情况下也讨论了体外和航天实验的结果。综述重点关注骨骼、眼部、中枢神经系统(central nervous system,CNS)、心血管和干细胞的反应。

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