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首页> 外文期刊>Cell Biology and Toxicology >Comet assay evaluation of DNA single- and double-strand breaks induction and repair in C3H10T1/2 cells
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Comet assay evaluation of DNA single- and double-strand breaks induction and repair in C3H10T1/2 cells

机译:彗星测定法评估C3H10T1 / 2细胞中DNA单链和双链断裂的诱导和修复

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摘要

Ionizing radiation is a potent inducer of DNA damage because it causes single- and double-strand breaks, alkali-labile sites, base damage, and crosslinks. The interest in ionizing radiation is due to its environmental and clinical implications. Single-strand breaks, which are the initial damage induced by a genotoxic agent, can be used as a biomarker of exposure, whereas the more biologically relevant double-strand breaks can be analyzed to quantify the extent of damage. In the present study the effects of Cs-137 gamma-radiation at doses of 1, 5, and 10 Gray on DNA and subsequent repair by C3H10T1/2 cells (mouse embryo fibroblasts) were investigated. Two versions of the comet assay, a sensitive method for evaluating DNA damage, were implemented: the alkaline one to detect single-strand breaks, and the neutral one to identify double-strand breaks. The results show a good linear relation between DNA damage and radiation dose, for both single-strand and double-strand breaks. A statistically significant difference with respect to controls was found at the lowest dose of 1 Gy. Heterogeneity in DNA damage within the cell population was observed as a function of radiation dose. Repair kinetics showed that most of the damage was repaired within 2 h after irradiation, and that the highest rejoining rate occurred with the highest dose (10 Gy). Single-strand breaks were completely repaired 24 h after irradiation, whereas residual double-strand breaks were still present. This finding needs further investigation.
机译:电离辐射是引起DNA损伤的有效诱因,因为它会引起单链和双链断裂,碱不稳定位点,碱基损伤和交联。对电离辐射的兴趣归因于其环境和临床意义。单链断裂是遗传毒性剂引起的初始损伤,可以用作暴露的生物标志物,而与生物学相关的双链断裂可以进行分析以量化损伤程度。在本研究中,研究了剂量为1、5和10 Gray的Cs-137γ射线对DNA的影响以及随后被C3H10T1 / 2细胞(小鼠胚胎成纤维细胞)修复的作用。实施了两种版本的彗星测定法,一种评估DNA损伤的灵敏方法:碱性的彗星测定法可检测单链断裂,而中性的一种可鉴定双链断裂。结果表明,对于单链和双链断裂,DNA损伤与辐射剂量之间都具有良好的线性关系。在最低剂量1 Gy时,发现与对照组有统计学差异。观察到细胞群内DNA损伤的异质性与辐射剂量有关。修复动力学表明,大多数损伤在辐照后2 h内得到修复,并且最高的再结合率发生在最高剂量(10 Gy)下。辐照后24小时单链断裂被完全修复,而残留的双链断裂仍然存在。这一发现需要进一步调查。

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