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Risk to fragmented DNA in dry, wet, and frozen states from computed tomography: a comparative theoretical study

机译:计算机断层扫描技术在干燥,潮湿和冷冻状态下碎片化DNA的风险:一项比较理论研究

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摘要

Computed tomography represents the gold standard in forensic and palaeopathological diagnosis. However, the X-rays used may affect the DNA quality through fragmentation and loss of genetic information. Previous work showed that the effects of ionizing radiation on dry DNA are non-significant with P < 10(-8), which cannot be detected by means of polymerase chain reaction methods. In the present paper, complete analytical model that characterizes radiation effects on fragmented DNA in dry, wet, and frozen states is described. Simulation of radiation tracks in water phantom cells was performed using the Geant4-DNA toolkit. Cell hits by electrons with energies between 5 and 20 keV were simulated, and the formation of radiolytic products was assessed at a temperature of 298 K. The diffusion coefficient and the mean square displacement of reactive species were calculated by Stokes-Einstein-Smoluchowski relations at 273 K. Finally, DNA fragment damage was estimated using the density distribution of fragments calculated from atomic force microscopy images. The lowest probability of radiation-induced DNA damage was observed for dry state, with a range from 2.5 x 10(-9) to 7.8 x 10(-12) at 298 K, followed by that for frozen state, with a range from 0.9 to 4 x 10(-7) at 273 K. The highest probability of radiation-induced DNA damage was demonstrated for fragmented DNA in wet state with a range from 2 to 9 x 10(-7) at 298 K. These results significantly improve the interpretation of CT imaging in future studies in forensic and palaeopathological science.
机译:计算机断层扫描是法医和古病理学诊断的金标准。但是,使用的X射线可能会通过碎片化和遗传信息丢失而影响DNA的质量。先前的工作表明,电离辐射对干燥DNA的影响在P <10(-8)时不显着,这无法通过聚合酶链反应方法检测到。在本文中,描述了完整的分析模型,该模型描述了辐射对干,湿和冷冻状态下的片段DNA的影响。使用Geant4-DNA工具箱模拟了水幻影细胞中的辐射轨迹。模拟了能量在5到20 keV之间的电子对细胞的撞击,并在298 K的温度下评估了辐射分解产物的形成。通过Stokes-Einstein-Smoluchowski关系式计算了反应物种的扩散系数和均方位移273K。最后,使用从原子力显微镜图像计算得出的碎片密度分布估算了DNA碎片损伤。干燥状态下辐射诱导的DNA损伤的可能性最低,在298 K时范围为2.5 x 10(-9)至7.8 x 10(-12),其次是冷冻状态,范围为0.9在273 K时达到4 x 10(-7)。在298 K时,片段化的DNA在湿态下的辐射诱导DNA损伤的可能性最高,范围为2到9 x 10(-7)。这些结果显着改善法医和古病理科学未来研究中CT成像的解释。

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