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Ionizing radiation-induced genomic instability in CHO cells is followed by selection of radioresistant cell clones

机译:电离辐射诱导CHO细胞中的基因组不稳定,然后选择抗辐射细胞克隆

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摘要

The DNA comet assay (neutral version) showed that irradiation of CHO cells in a dose of 1 Gy (γ-radiation, 60Co) is followed by an increase in the degree of DNA fragmentation. These changes were observed immediately after irradiation and on days 7-21. On days 2-4 and 23-28 after irradiation, the degree of DNA fragmentation in the descendants of irradiated cell did not differ from that in control samples. The increase in the degree of DNA fragmentation on days 7-21 probably results from induction of apoptosis. This assumption is confirmed by the study of cell death. The sensitivity of cells to repeated irradiation in a dose of 10 Gy significantly increased on days 9, 11, 16, and 18 after irradiation. However, these cells were resistant to repeated irradiation on days 21-28. Our results confirm the hypothesis that genomic instability is a selective mechanism, which mediates the formation of radioresistant cell clones.
机译:DNA彗星试验(中性形式)表明,以1 Gy剂量照射CHO细胞(γ射线,60Co)后,DNA片段化程度增加。辐照后和第7-21天立即观察到这些变化。辐照后第2-4天和第23-28天,辐照细胞后代的DNA片段化程度与对照样品没有差异。在第7-21天,DNA片段化程度的增加可能是由于凋亡的诱导。通过细胞死亡的研究证实了这一假设。在辐照后第9、11、16和18天,细胞对10 Gy剂量的重复辐照的敏感性显着提高。但是,这些细胞对第21-28天的重复照射有抵抗力。我们的结果证实了以下假设:基因组不稳定性是一种选择性机制,可介导抗辐射细胞克隆的形成。

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