Bundeswehr Institute of Radiobiology, affiliated to the University of Ulm, Neuherbergstr.11, D-80937 Munich, Germany.
Radiat Prot Dosimetry. 2023 Sep 18;199(14):1485-1494. doi: 10.1093/rpd/ncad128.
The objective was to investigate the influence of different pre-storage temperatures in the dicentric chromosome analysis (DCA) protocol (22°C vs. 37°C) by using γ-H2AX + 53BP1 foci as a marker for deoxyribonucleic acid (DNA) double-strand break (DSB) damage induction and repair and the formation of dicentric chromosomes as a result of mis-repair. Repair of γ-H2AX + 53BP1 DSB foci was absent in samples that were incubated for 2 h at 22°C after exposure of 0.5 and 1.2 Gy. When 0.5- and 1.2-Gy-exposed samples were incubated at 37°C for 2 h, there was an average decline of 31 and 52% of DSB foci, respectively. This indicated that DNA repair occurred. There was a 27% decrease in dicentric chromosome yield at 1.2 Gy and a 15% decrease at 3.5 Gy after post-irradiation incubation for 2 h at 37°C relative to the observed dicentric frequencies at 22°C. Recommended to re-phase: our data suggested that there were more open DSBs after a 2-h incubation at 22°C, which contributed to more mis-repair and dicentric formation from the start of culture. Our findings are corroborated by publications showing that lesion interaction based on enzymatic activity is suppressed below 21°C. As such temperature variations can be a source of variation in DCA during interlaboratory comparison studies, we propose to establish a common guide for the standardisation of pre-culture conditions in cytogenetic dosimetry proficiency testing.
目的是通过使用 γ-H2AX+53BP1 焦点作为脱氧核糖核酸 (DNA) 双链断裂 (DSB) 损伤诱导和修复的标志物,并形成由于错误修复而导致的双着丝粒染色体,来研究不同储存前温度 (22°C 与 37°C) 对双着丝粒染色体分析 (DCA) 方案的影响。在暴露于 0.5 和 1.2 Gy 后,在 22°C 孵育 2 小时的样本中,γ-H2AX+53BP1 DSB 焦点的修复缺失。当 0.5-和 1.2-Gy 暴露的样本在 37°C 孵育 2 小时时,DSB 焦点的平均分别下降了 31%和 52%。这表明发生了 DNA 修复。与在 22°C 下观察到的双着丝粒频率相比,在 37°C 下进行 2 小时的辐照后孵育后,在 1.2 Gy 时双着丝粒染色体产率下降了 27%,在 3.5 Gy 时下降了 15%。建议重新分期:我们的数据表明,在 22°C 孵育 2 小时后,存在更多的开放 DSB,这导致更多的错误修复和双着丝粒形成从培养开始。我们的研究结果得到了表明基于酶活性的损伤相互作用在低于 21°C 时受到抑制的出版物的证实。由于这种温度变化可能是实验室间比较研究中 DCA 变化的一个来源,因此我们建议为细胞遗传学剂量测定能力验证中的预培养条件标准化建立一个共同的指南。