Inter-laboratory variation in measurement of DNA damage by the alkaline comet assay in the hCOMET ring trial.

IF 2.5 4区 医学 Q3 GENETICS & HEREDITY Mutagenesis Pub Date : 2023-10-14 DOI:10.1093/mutage/gead014
Peter Møller, Amaya Azqueta, Miguel Collia, Tamara Bakuradze, Elke Richling, Ezgi Eyluel Bankoglu, Helga Stopper, Victoria Claudino Bastos, Sabine A S Langie, Annie Jensen, Sara Ristori, Francesca Scavone, Lisa Giovannelli, Maria Wojewódzka, Marcin Kruszewski, Vanessa Valdiglesias, Blanca Laffon, Carla Costa, Solange Costa, João Paulo Teixeira, Mirko Marino, Cristian Del Bo, Patrizia Riso, Congying Zheng, Sergey Shaposhnikov, Andrew Collins
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引用次数: 4

Abstract

The comet assay is a simple and versatile method for measurement of DNA damage in eukaryotic cells. More specifically, the assay detects DNA migration from agarose gel-embedded nucleoids, which depends on assay conditions and the level of DNA damage. Certain steps in the comet assay procedure have substantial impact on the magnitude of DNA migration (e.g. electric potential and time of electrophoresis). Inter-laboratory variation in DNA migration levels occurs because there is no agreement on optimal assay conditions or suitable assay controls. The purpose of the hCOMET ring trial was to test potassium bromate (KBrO3) as a positive control for the formamidopyrimidine DNA glycosylase (Fpg)-modified comet assay. To this end, participating laboratories used semi-standardized protocols for cell culture (i.e. cell culture, KBrO3 exposure, and cryopreservation of cells) and comet assay procedures, whereas the data acquisition was not standardized (i.e. staining of comets and image analysis). Segregation of the total variation into partial standard deviation (SD) in % Tail DNA units indicates the importance of cell culture procedures (SD = 10.9), comet assay procedures (SD = 12.3), staining (SD = 7.9) and image analysis (SD = 0.5) on the overall inter-laboratory variation of DNA migration (SD = 18.2). Future studies should assess sources of variation in each of these steps. On the positive side, the hCOMET ring trial demonstrates that KBrO3 is a robust positive control for the Fpg-modified comet assay. In conclusion, the hCOMET ring trial has demonstrated a high reproducibility of detecting genotoxic effects by the comet assay, but inter-laboratory variation of DNA migration levels is a concern.

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hCOMET环试验中碱性彗星法测定DNA损伤的实验室间变异。
彗星试验是一种简单而通用的测量真核细胞DNA损伤的方法。更具体地说,该测定检测来自琼脂糖凝胶包埋的类核的DNA迁移,这取决于测定条件和DNA损伤水平。彗星分析程序中的某些步骤对DNA迁移的幅度(例如电势和电泳时间)有很大影响。DNA迁移水平的实验室间变化是因为在最佳测定条件或合适的测定控制方面没有达成一致。hCOMET环试验的目的是测试溴酸钾(KBrO3)作为甲酰胺嘧啶DNA糖苷酶(Fpg)修饰彗星试验的阳性对照。为此,参与实验室使用了半标准化的细胞培养方案(即细胞培养、KBrO3暴露和细胞冷冻保存)和彗星分析程序,而数据采集没有标准化(即彗星染色和图像分析)。将总变异分离为部分标准差(SD),单位为%尾DNA单位,表明细胞培养程序(SD=10.9)、彗星测定程序(SD=12.3)、染色(SD=7.9)和图像分析(SD=0.5)对DNA迁移的总体实验室间变异(SD=18.2)的重要性。未来的研究应评估每一步的变异来源。在阳性方面,hCOMET环试验表明KBrO3是Fpg修饰彗星测定的可靠阳性对照。总之,hCOMET环试验已经证明了彗星试验检测基因毒性效应的高再现性,但DNA迁移水平的实验室间变化令人担忧。
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来源期刊
Mutagenesis
Mutagenesis 生物-毒理学
CiteScore
5.90
自引率
3.70%
发文量
22
审稿时长
6-12 weeks
期刊介绍: Mutagenesis is an international multi-disciplinary journal designed to bring together research aimed at the identification, characterization and elucidation of the mechanisms of action of physical, chemical and biological agents capable of producing genetic change in living organisms and the study of the consequences of such changes.
期刊最新文献
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