IRSN, Institut de Radioprotection et de Sûreté Nucléaire, BP17, 92962, Fontenay-aux-Roses, France.
Univ, Bordeaux, CENBG, UMR 5797, F-33170, Gradignan, France.
Sci Rep. 2017 Sep 20;7(1):11923. doi: 10.1038/s41598-017-11851-4.
In order to improve the understanding of the mechanisms involved in the generation of early DNA damage, a new calculation chain based on the Geant4-DNA toolkit was developed. This work presents for the first time the simulation of the physical, physicochemical and chemical stages of early radiation damage at the scale of an entire human genome (fibroblast, male) and using Geant4-DNA models. The DnaFabric software was extended to generate and export this nucleus model to a text file with a specific format that can be read by Geant4 user applications. This calculation chain was used to simulate the irradiation of the nucleus by primary protons of different energies (0,5; 0,7; 0,8; 1; 1,5; 2; 3; 4; 5; 10; 20 MeV) and the results, in terms of DNA double strand breaks, agree with experimental data found in the literature (pulsed field electrophoresis technique). These results show that the simulation is consistent and that its parameters are well balanced. Among the different parameters that can be adjusted, our results demonstrate that the criterion used to select direct strand break appears to have a very significant role on the final number of simulated double strand breaks.
为了深入了解早期 DNA 损伤产生的机制,我们开发了一种新的计算链,它基于 Geant4-DNA 工具包。本工作首次利用 Geant4-DNA 模型模拟了整个人类基因组(成纤维细胞,男性)范围内早期辐射损伤的物理、物理化学和化学阶段。DnaFabric 软件被扩展,以生成并将该核模型导出到一个具有特定格式的文本文件中,该格式可被 Geant4 用户应用程序读取。该计算链用于模拟不同能量(0、5;0、7;0、8;1;1.5;2;3;4;5;10;20 MeV)的初级质子对核的辐照,DNA 双链断裂的模拟结果与文献中发现的实验数据(脉冲场电泳技术)一致。这些结果表明,模拟是一致的,并且其参数得到了很好的平衡。在可以调整的不同参数中,我们的结果表明,用于选择直接链断裂的标准似乎对最终模拟的双链断裂数量有非常重要的影响。