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重离子、辐射防护剂与基因组不稳定性:对人类太空探索的影响

Heavy ions, radioprotectors and genomic instability: implications for human space exploration.

作者信息

Dziegielewski Jaroslaw, Goetz Wilfried, Baulch Janet E

机构信息

Department of Radiation Oncology, University of Virginia, Charlottesville, VA, USA.

出版信息

Radiat Environ Biophys. 2010 Aug;49(3):303-16. doi: 10.1007/s00411-009-0261-9. Epub 2009 Dec 25.

Abstract

The risk associated with space radiation exposure is unique from terrestrial radiation exposures due to differences in radiation quality, including linear energy transfer (LET). Both high- and low-LET radiations are capable of inducing genomic instability in mammalian cells, and this instability is thought to be a driving force underlying radiation carcinogenesis. Unfortunately, during space exploration, flight crews cannot entirely avoid radiation exposure. As a result, chemical and biological countermeasures will be an important component of successful extended missions such as the exploration of Mars. There are currently several radioprotective agents (radioprotectors) in use; however, scientists continue to search for ideal radioprotective compounds-safe to use and effective in preventing and/or reducing acute and delayed effects of irradiation. This review discusses the agents that are currently available or being evaluated for their potential as radioprotectors. Further, this review discusses some implications of radioprotection for the induction and/or propagation of genomic instability in the progeny of irradiated cells.

摘要

由于包括传能线密度(LET)在内的辐射质量存在差异,与太空辐射暴露相关的风险不同于地面辐射暴露。高LET和低LET辐射都能够在哺乳动物细胞中诱导基因组不稳定,并且这种不稳定被认为是辐射致癌作用的潜在驱动力。不幸的是,在太空探索期间,机组人员无法完全避免辐射暴露。因此,化学和生物对策将是诸如火星探索等成功的长期任务的重要组成部分。目前有几种辐射防护剂(辐射防护器)正在使用;然而,科学家们仍在继续寻找理想的辐射防护化合物——使用安全且能有效预防和/或减少辐射的急性和延迟效应。本综述讨论了目前可用的或正在评估其作为辐射防护剂潜力的药物。此外,本综述讨论了辐射防护对受辐照细胞后代基因组不稳定的诱导和/或传播的一些影响。

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