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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >In vitro cultured cells as probes for space radiation effects on biological systems
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In vitro cultured cells as probes for space radiation effects on biological systems

机译:体外培养的细胞作为空间辐射对生物系统影响的探针

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Near future scenarios of long-term and far-reaching manned space missions, require more extensive knowledge of all possible biological consequences of space radiation, particularly in humans, on both a long-term and a short-term basis.In vitro cultured cells have significantly contributed to the tremendous advancement of biomedical research. It is therefore to be expected that simple biological systems such as cultured cells, will contribute to space biomedical sciences.Space represents a novel environment, to which life has not been previously exposed. Both microgravity and space radiation are the two relevant components of such an environment, but biological adaptive mechanisms and efficient countermeasures can significantly minimize microgravity effects. On the other hand, it is felt that space radiation risks may be more relevant and that defensive strategies can only stem from our deeper knowledge of biological effects and of cellular repair mechanisms.Cultured cells may play a key role in such studies. Particularly, thyroid cells may be relevant because of the exquisite sensitivity of the thyroid gland to radiation. In addition, a clone of differentiated, normal thyroid follicular cells (FRTL5 cells) is available in culture, which is well characterized and particularly fit for space research.
机译:在长期和广泛的载人航天任务的近期情况下,需要对空间辐射的所有可能的生物学后果(特别是对人类的长期和短期影响)有更广泛的了解。极大地促进了生物医学研究的巨大发展。因此,可以预见的是,简单的生物系统(如培养的细胞)将为太空生物医学科学做出贡献。太空代表了一种新的环境,以前人们从未接触过这种环境。微重力和空间辐射都是这种环境的两个相关组成部分,但是生物适应机制和有效的对策可以极大地减小微重力的影响。另一方面,人们认为空间辐射风险可能更相关,并且防御策略只能源于我们对生物学效应和细胞修复机制的更深入的了解,而培养的细胞可能在此类研究中发挥关键作用。特别地,由于甲状腺对放射线非常敏感,因此甲状腺细胞可能是相关的。另外,在培养物中可获得分化的正常甲状腺滤泡细胞(FRTL5细胞)的克隆,该克隆具有良好的特性,特别适合于空间研究。

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