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使用具有 Geant4-DNA 的染色质几何模型进行质子诱导 DNA 损伤的纳米级计算。

Nanoscale Calculation of Proton-Induced DNA Damage Using a Chromatin Geometry Model with Geant4-DNA.

机构信息

School of Nuclear Science and Technology, University of South China, Hengyang 421001, China.

School of Nursing, University of South China, Hengyang 421001, China.

出版信息

Int J Mol Sci. 2022 Jun 6;23(11):6343. doi: 10.3390/ijms23116343.

Abstract

Monte Carlo simulations can quantify various types of DNA damage to evaluate the biological effects of ionizing radiation at the nanometer scale. This work presents a study simulating the DNA target response after proton irradiation. A chromatin fiber model and new physics constructors with the ELastic Scattering of Electrons and Positrons by neutral Atoms (ELSEPA) model were used to describe the DNA geometry and the physical stage of water radiolysis with the Geant4-DNA toolkit, respectively. Three key parameters (the energy threshold model for strand breaks, the physics model and the maximum distance to distinguish DSB clusters) of scoring DNA damage were studied to investigate the impact on the uncertainties of DNA damage. On the basis of comparison of our results with experimental data and published findings, we were able to accurately predict the yield of various types of DNA damage. Our results indicated that the difference in physics constructor can cause up to 56.4% in the DNA double-strand break (DSB) yields. The DSB yields were quite sensitive to the energy threshold for strand breaks (SB) and the maximum distance to classify the DSB clusters, which were even more than 100 times and four times than the default configurations, respectively.

摘要

蒙特卡罗模拟可以量化各种类型的 DNA 损伤,以评估纳米尺度下电离辐射的生物学效应。本工作模拟了质子辐照后 DNA 靶标响应的研究。使用染色质纤维模型和具有中性原子的电子和正电子弹性散射(ELSEPA)模型的新物理构造器,分别使用 Geant4-DNA 工具包来描述 DNA 几何形状和水辐射分解的物理阶段。研究了三个关键参数(链断裂的能量阈值模型、物理模型和区分 DSB 簇的最大距离),以研究它们对 DNA 损伤不确定性的影响。在比较我们的结果与实验数据和已发表的发现的基础上,我们能够准确预测各种类型的 DNA 损伤的产额。结果表明,物理构造器的差异会导致 DNA 双链断裂(DSB)产额高达 56.4%。DSB 产额对链断裂(SB)的能量阈值和区分 DSB 簇的最大距离非常敏感,分别比默认配置高 100 倍和 4 倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d987/9181653/ab47f8601bad/ijms-23-06343-g001.jpg

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