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Gene expression in low- and high-dose-irradiated human peripheral blood lymphocytes: Possible applications for biodosimetry

机译:低剂量和高剂量辐射的人外周血淋巴细胞中的基因表达:生物剂量学的可能应用

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摘要

To overcome the limitations of existing biodosimetry methods, we examined dose- and time-dependent gene expression changes in human peripheral blood lymphocytes after exposure to low-, medium- and high-dose ionizing radiation and searched for genes suitable for predicting radiation doses in the low-dose range. Additionally, the experiments are intended to provide new insights into the biological effects of exposures to low-, medium- and high-dose radiation. Gene expression analysis using whole human genome DNA microarrays was performed in human blood from six healthy donors irradiated ex vivo with 0, 0.02, 0.1, 0.5, 1, 2 and 4 Gy (γ rays, ~(137)Cs) at 6, 24 and 48 h after high-dose exposure (0.54 Gy), and at 24 and 48 h after low-dose exposures of 0.02 or 0.1 Gy. DNA microarray-based alterations in gene expression were found in a wide dose range in vitro and allowed us to identify nine genes with which low radiation doses could be accurately predicted with a sensitivity of 95.6. In the low-, medium- and high-dose range, expression alterations increased with increasing dose and time after exposure, and were assigned to different biological processes such as nucleosome assembly, apoptosis and DNA repair response. We conclude from our results that gene expression profiles are suitable for predicting low-dose radiation exposure in a rapid and reliable manner and that acute low-dose exposure, as low as 20 mGy, leads to well-defined physiological responses in human peripheral blood lymphocytes.
机译:为了克服现有生物剂量学方法的局限性,我们检查了暴露于低,中和高剂量电离辐射后人外周血淋巴细胞中剂量和时间依赖性基因表达的变化,并搜索了适合预测辐射剂量的基因。低剂量范围。此外,该实验旨在为暴露于低,中和高剂量辐射的生物学效应提供新的见解。使用全人类基因组DNA微阵列进行基因表达分析,是在6、24、0、0.02、0.1、0.5、1、2和4 Gy(γ射线,〜(137)Cs)辐照的六个健康供体的人血中进行的。高剂量暴露(0.54 Gy)后48小时,以及低剂量暴露0.02或0.1 Gy后24和48小时。在体外广泛剂量范围内发现了基于DNA芯片的基因表达改变,这使我们能够鉴定出9个基因,可以准确地预测低辐射剂量,灵敏度为95.6。在低,中和高剂量范围内,表达变化随暴露后剂量和时间的增加而增加,并被分配给不同的生物学过程,例如核小体装配,凋亡和DNA修复反应。我们从我们的结果中得出结论,基因表达谱适合于以快速可靠的方式预测低剂量辐射暴露,而急性低剂量暴露(低至20 mGy)会导致人外周血淋巴细胞发生明确的生理反应。

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