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Dynamic In Vivo Profiling of DNA Damage and Repair after Radiotherapy Using Canine Patients as a Model

机译:以犬科动物为模型的放射治疗后DNA损伤和修复的动态体内分析

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摘要

Time resolved data of DNA damage and repair after radiotherapy elucidates the relation between damage, repair, and cell survival. While well characterized in vitro, little is known about the time-course of DNA damage response in tumors sampled from individual patients. Kinetics of DNA damage after radiotherapy was assessed in eight dogs using repeated in vivo samples of tumor and co-irradiated normal tissue analyzed with comet assay and phosphorylated H2AX (γH2AX) immunohistochemistry. In vivo results were then compared (in silico) with a dynamic mathematical model for DNA damage formation and repair. Maximum %DNA in tail was observed at 15–60 min after irradiation, with a rapid decrease. Time-courses of γH2AX-foci paralleled these findings with a small time delay and were not influenced by covariates. The evolutionary parameter search based on %DNA in tail revealed a good fit of the DNA repair model to in vivo data for pooled sarcoma time-courses, but fits for individual sarcoma time-courses suffer from the heterogeneous nature of the in vivo data. It was possible to follow dynamics of comet tail intensity and γH2AX-foci during a course of radiation using a minimally invasive approach. DNA repair can be quantitatively investigated as time-courses of individual patients by integrating this resulting data into a dynamic mathematical model.
机译:放射治疗后,DNA损伤和修复的时间分辨数据阐明了损伤,修复和细胞存活之间的关系。尽管在体外具有良好的特征,但对从单个患者采集的肿瘤中DNA损伤反应的时程了解甚少。使用彗星试验和磷酸化的H2AX(γH2AX)免疫组织化学方法分析了体内和重复照射的正常组织的体内重复样品,评估了八只犬放疗后DNA损伤的动力学。然后将体内结果与DNA损伤形成和修复的动态数学模型进行比较(计算机模拟)。辐照后15–60分钟观察到尾巴中最大的DNA百分比迅速下降。 γH2AX病灶的时程使这些发现与时间延迟相平行,并且不受协变量的影响。基于尾巴中%DNA的进化参数搜索显示DNA修复模型非常适合合并的肉瘤时间过程的体内数据,但适合单个肉瘤时间过程的体内数据具有异质性。使用微创方法可以在放射过程中跟踪彗尾强度和γH2AX焦点的动态。通过将结果数据整合到动态数学模型中,可以将DNA修复作为单个患者的时程进行定量研究。

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