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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Targeted and non-targeted effects from combinations of low doses of energetic protons and iron ions in human fibroblasts.
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Targeted and non-targeted effects from combinations of low doses of energetic protons and iron ions in human fibroblasts.

机译:低剂量高能质子和铁离子在人成纤维细胞中的靶向和非靶向作用。

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摘要

PURPOSE: In space, astronauts are exposed to mixed radiation fields consisting of energetic protons and high atomic number, high energy (HZE) particles at low dose rates. Therefore, it is critical to understand effects of combinations of low doses of different radiation types at the cellular level. MATERIALS AND METHODS: AG01522 normal human skin fibroblasts and a transwell insert co-culture system were used. Irradiations used were 1 GeV/amu (gigaelectron volt/atomic mass unit) protons and 1 GeV/amu iron (Fe) ions. DNA damage was measured as micronucleus (MN) formation and p53 binding protein 1 (53BP1) foci induction. RESULTS: The same magnitude of DNA damage was induced in cells sequentially exposed to 1 cGy protons and 1 cGy Fe ions as in cells irradiated with either protons or Fe ions alone. The same magnitude of DNA damage was also observed in non-irradiated bystander cells sharing medium with cells irradiated with either 1 cGy protons or iron ions or protons plus iron ions. However, when the 'bystander' cells were exposed to 1 cGy protons up to 3 h before co-culture with Fe ion-irradiated cells, no DNA damage in the 'bystander' cells was observed. CONCLUSIONS: These data provide the first evidence of interactions between targeted and non-targeted DNA damage caused by dual exposure to low doses of energetic protons and iron ions.
机译:目的:在太空中,宇航员在低剂量率下暴露于由高能质子和高原子序数,高能(HZE)粒子组成的混合辐射场。因此,至关重要的是在细胞水平上了解低剂量不同辐射类型的组合的影响。材料与方法:使用AG01522正常人皮肤成纤维细胞和Transwell插入共培养系统。使用的辐射为1 GeV / amu(千兆电子伏/原子质量单位)质子和1 GeV / amu铁(Fe)离子。 DNA损伤测量为微核(MN)形成和p53结合蛋白1(53BP1)灶的诱导。结果:顺序暴露于1 cGy质子和1 cGy Fe离子的细胞与单独照射质子或Fe离子的细胞诱导的DNA损伤程度相同。在未辐照的旁观者细胞与用1 cGy质子或铁离子或质子加铁离子辐照的细胞共享培养基的情况下,也观察到了相同程度的DNA损伤。但是,当“旁观者”细胞在与Fe离子辐照细胞共培养之前暴露于1 cGy质子直至3 h时,在“旁观者”细胞中未观察到DNA损伤。结论:这些数据提供了由低剂量的高能质子和铁离子的双重接触引起的靶向和非靶向DNA损伤之间相互作用的第一个证据。

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