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首页> 外文期刊>Mutation Research - Genetic Toxicology and Environmental Mutagenesis >DNA-repair measurements by use of the modified comet assay: An inter-laboratory comparison within the European Comet Assay Validation Group (ECVAG)
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DNA-repair measurements by use of the modified comet assay: An inter-laboratory comparison within the European Comet Assay Validation Group (ECVAG)

机译:使用改良的彗星试验进行DNA修复测量:欧洲彗星试验验证小组(ECVAG)的实验室间比较

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The measurement of DNA-repair activity by extracts from cells or tissues by means of the single-cell gel electrophoresis (comet) assay has a high potential to become widely used in biomonitoring studies. We assessed the inter-laboratory variation in reported values of DNA-repair activity on substrate cells that had been incubated with Ro19-8022 plus light to generate oxidatively damaged DNA. Eight laboratories assessed the DNA-repair activity of three cell lines (i.e. one epithelial and two fibroblast cell lines), starting with cell pellets or with cell extracts provided by the coordinating laboratory. There was a large inter-laboratory variation, as evidenced by the range in the mean level of repair incisions between the laboratory with the lowest (0.002 incisions/106 bp) and highest (0.988 incisions/106 bp) incision activity. Nevertheless, six out of eight laboratories reported the same cell line as having the highest level of DNA-repair activity. The two laboratories that reported discordant results (with another cell line having the highest level of DNA-repair activity) were those that reported to have little experience with the modified comet assay to assess DNA repair. The laboratories were also less consistent in ordering the repair activity of the other two cell lines, probably because the DNA-repair activity by extracts from these cell lines were very similar (on average approximately 60-65% of the cell line with the highest repair capacity). A significant correlation was observed between the repair activity found in the provided and the self-made cell extracts (r=0.71, P<0.001), which indicates that the predominant source for inter-laboratory variation is derived from the incubation of the extract with substrate cells embedded in the gel. Overall, we conclude that the incubation step of cell extracts with the substrate cells can be identified as a major source of inter-laboratory variation in the modified comet assay for base-excision repair.
机译:通过单细胞凝胶电泳(彗星)测定法从细胞或组织中提取的DNA修复活性,具有广泛的潜力,可广泛用于生物监测研究。我们评估了实验室间间在已与Ro19-8022加光孵育以产生氧化损伤的DNA的底物细胞上DNA修复活性的报告值之间的差异。八个实验室从细胞沉淀或协调实验室提供的细胞提取物开始评估了三种细胞系(即一种上皮细胞和两种成纤维细胞系)的DNA修复活性。实验室间的差异很大,这由最低(0.002个切口/ 106 bp)切口活动和最高(0.988个切口/ 106 bp)切口活动的实验室之间的平均修复切口范围证明。尽管如此,八分之六的实验室报告说同一细胞系具有最高水平的DNA修复活性。报告结果不一致的两个实验室(另一个细胞系具有最高水平的DNA修复活性)是报告的修饰彗星试验评估DNA修复经验很少的实验室。实验室在排序其他两种细胞系的修复活性方面也不太一致,可能是因为这些细胞系提取物的DNA修复活性非常相似(平均修复率最高的细胞系平均约为60-65%容量)。观察到提供的和自制的细胞提取物之间的修复活性之间存在显着相关性(r = 0.71,P <0.001),这表明实验室间变异的主要来源是提取物与基质细胞嵌入凝胶中。总的来说,我们得出结论,可以将细胞提取物与底物细胞的孵育步骤确定为碱基切除修复的改良彗星试验中实验室间变异的主要来源。

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