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The Lowest Radiation Dose Having Molecular Changes in the Living Body

机译:活体内具有分子变化的最低辐射剂量

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We herein attempted to identify the lowest radiation dose causing molecular changes in the living body. We investigated the effects of radiation in human cells, animals, and humans. DNA double-strand breaks (DSBs) formed in cells at γ- or X-ray irradiation doses between 1 mGy and 0.5 Gy; however, the extent of DSB formation differed depending on the cell species. The formation of micronuclei (MNs) and nucleoplasmic bridges (NPBs) was noted at radiation doses between 0.1 and 0.2 Gy. Stress-responsive genes were upregulated by lower radiation doses than those that induced DNA DSBs or MN and NPBs. These γ- or X-ray radiation doses ranged between approximately 10 and 50 mGy. In animals, chromosomal aberrations were detected between 50 mGy and 0.1 Gy of low linear energy transfer radiation, 0.1 Gy of metal ion beams, and 9 mGy of fast neutrons. In humans, DNA damage has been observed in children who underwent computed tomography scans with an estimated blood radiation dose as low as 0.15 mGy shortly after examination. The frequencies of chromosomal translocations were lower in residents of high background areas than in those of control areas. In humans, systemic adaptive responses may have been prominently expressed at these radiation doses.
机译:我们在此试图确定引起活体内分子变化的最低辐射剂量。我们研究了辐射对人类细胞,动物和人类的影响。 DNA双链断裂(DSB)在γ或X射线辐照剂量在1 mGy和0.5 Gy之间时在细胞中形成;但是,DSB形成的程度因细胞种类而异。在0.1和0.2 Gy之间的辐射剂量下注意到微核(MNs)和核质桥(NPBs)的形成。与诱导DNA DSB或MN和NPB的辐射剂量相比,较低的辐射剂量上调了胁迫响应基因。这些γ射线或X射线辐射剂量范围约为10至50 mGy。在动物中,检测到50 mGy至0.1 Gy的低线性能量转移辐射,0.1 Gy的金属离子束和9 mGy的快速中子之间的染色体畸变。在人类中,检查后不久,接受计算机断层扫描扫描的儿童的血液辐射剂量估计低至0.15 mGy,已观察到DNA损伤。高背景区域居民的染色体易位频率低于对照区域。在人类中,在这些辐射剂量下,系统适应性反应可能已经显着表达。

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