首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Assessment of RTG-W1, RTL-W1, and PLHC-1 fish cell lines for genotoxicity testing of environmental pollutants by means of a Fpg-modified comet assay
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Assessment of RTG-W1, RTL-W1, and PLHC-1 fish cell lines for genotoxicity testing of environmental pollutants by means of a Fpg-modified comet assay

机译:通过Fpg修饰的彗星分析评估RTG-W1,RTL-W1和PLHC-1鱼细胞系对环境污染物的遗传毒性测试

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摘要

In a context of growing awareness of aquatic pollution impacts, there is an increasing need to develop methods for hazard and risk assessment of pollutants. For this purpose, in vitro models such as fish cell lines warrant to be evaluated as possible alternative to in vivo fish testing, and new toxicity endpoints such as genotoxicity deserve to be considered. This study assesses the interest of the formamido pyrimidine glycosylase (Fpg)-modified comet assay applied to three fish cell lines (RTL-W1, RTG-W1, and PLHC-1) regarding the sensitivity of the system for measuring genotoxicity of various classes of pollutants. Cytochrome P450-dependent EROD activity has also been measured to evaluate the importance of the biotransformation capacity of the cell lines in genotoxicity assessment. For all cell lines and chemicals tested, a concentration dependent genotoxic effect was observed with a 10- to 1000-fold increased sensitivity when using the Fpg-protocol compared to the standard comet assay. Such a modified assay led in particular to improve the detection threshold of oxidative and alkylating DNA damages following exposure at environmentally relevant contaminant concentrations and could partly compensate for the lower sensitivity of cell lines versus whole organism testing often cited as a limit of in vitro testing.
机译:在对水生污染影响的认识日益提高的背景下,对开发污染物危害和风险评估方法的需求日益增长。为此,必须对体外模型(例如鱼细胞系)进行评估,以作为体内鱼类测试的替代方法,并且应考虑新的毒性终点(如基因毒性)。这项研究评估了对三种鱼类细胞系(RTL-W1,RTG-W1和PLHC-1)进行甲酰胺嘧啶嘧啶糖基化酶(Fpg)修饰的彗星测定的兴趣,该测定对系统测量各种类别的鱼类遗传毒性的敏感性污染物。还测量了细胞色素P450依赖性EROD活性,以评估细胞系的生物转化能力在遗传毒性评估中的重要性。对于所有测试的细胞系和化学药品,与标准彗星试验相比,使用Fpg方案观察到的浓度依赖性遗传毒性效应灵敏度提高了10到1000倍。这种改进的测定法尤其提高了在环境相关污染物浓度下暴露后氧化和烷基化DNA损伤的检测阈值,并且可以部分补偿细胞系相对于通常被称为体外测试的局限性的全生物测试的较低敏感性。

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