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A Comet Assay for DNA Damage and Repair After Exposure to Carbon-Ion Beams or X-rays in Saccharomyces Cerevisiae

机译:暴露于酿酒酵母中的碳离子束或X射线后DNA损伤和修复的彗星分析

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摘要

Ionizing radiation (IR) can result in serious genomic instability and genotoxicity by causing DNA damage. Carbon ion (CI) beams and X-rays are typical IRs and possess high-linear energy transfer (LET) and low-LET, respectively. In this article, a comet assay that was optimized by decreasing the electrophoresis time (8 minutes) and voltage (0.5 V/cm) was performed to elucidate and quantify the DNA damage induced by CI or X-rays radiation. Two quantitative methods for the comet assay, namely, comet score and olive tail moment, were compared, and the appropriate means and parameter values were selected for the present assay. The dose–effect relationship for CI or X-rays radiation and the DNA repair process were studied in yeast cells. These results showed that the quadratic function fitted the dose–effect relationship after CI or X-rays exposure, and the trend for the models fitted the dose–effect curves for various repair times was precisely described by the cubic function. A kinetics model was also creatively used to describe the process of DNA repair, and equations were calculated within repairable ranges that could be used to roughly evaluate the process and time necessary for DNA repair.
机译:电离辐射(IR)可能会导致DNA损伤,从而导致严重的基因组不稳定和基因毒性。碳离子(CI)束和X射线是典型的IR,分别具有高线性能量传输(LET)和低LET。在本文中,通过减少电泳时间(8分钟)和电压(0.5 V / cm)进行了优化的彗星试验得以阐明和量化CI或X射线辐射引起的DNA损伤。比较了两种用于彗星测定的定量方法,即彗星得分和橄榄尾矩,并为本次测定选择了合适的方法和参数值。在酵母细胞中研究了CI或X射线辐射的剂量效应关系和DNA修复过程。这些结果表明,二次函数拟合了CI或X射线暴露后的剂量-效应关系,而模型拟合拟合各种修复时间的剂量-效应曲线的趋势则由三次函数精确描述。还创造性地使用了动力学模型来描述DNA修复的过程,并在可修复范围内计算了方程式,可用于大致评估DNA修复所需的过程和时间。

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