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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >DNA oxidation: investigating its key role in environmental mutagenesis with the comet assay.
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DNA oxidation: investigating its key role in environmental mutagenesis with the comet assay.

机译:DNA氧化:通过彗星试验研究其在环境诱变中的关键作用。

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摘要

DNA oxidation, which can have potentially serious mutagenic consequences, commonly accompanies exposure to environmental mutagens. Oxidised bases can be measured chromatographically, but spurious oxidation during sample preparation leads to serious over-estimation of low levels of damage. A more reliable approach is to employ endonucleases specific for oxidised bases, to introduce breaks in cellular DNA that are then most commonly measured using the comet assay (alkaline single cell gel electrophoresis). The two enzymes in general use are formamidopyrimidine DNA glycosylase, which detects primarily 8-oxo-7,8-dihydroguanine (8-oxoGua), and endonuclease III which recognises oxidised pyrimidines. We give a brief account of the recommended experimental procedures, and then describe applications in various areas of environmental research. Cultured cell lines or white blood cells have been exposed to a range of environmental mutagens, including natural products, industrial chemicals, radiation and nanoparticles. In vivo exposure of animals and humans to pollutants is more challenging but can give particularly valuable information in relation to real life exposure. Possibly the most useful application is in biomonitoring of human population groups suffering actual exposure to environmental or occupational mutagens. Finally, the potential use of this technique to monitor effects of contaminants in the natural environment has yet to be fully exploited.
机译:DNA氧化可能会带来潜在的严重诱变后果,通常会与环境诱变剂接触。可以通过色谱法测定氧化后的碱,但样品制备过程中的伪氧化会严重低估低水平的损害。一种更可靠的方法是采用对氧化碱基具有特异性的核酸内切酶,在细胞DNA中引入断裂,然后最常用彗星测定法(碱性单细胞凝胶电泳)对其进行测量。两种常用的酶是甲酰胺基嘧啶DNA糖基化酶(主要检测8-oxo-7,8-二氢鸟嘌呤(8-oxoGua))和内切酶III(识别氧化的嘧啶)。我们简要介绍了推荐的实验程序,然后描述了环境研究各个领域的应用。培养的细胞系或白细胞已暴露于多种环境诱变剂,包括天然产物,工业化学品,辐射和纳米颗粒。动物和人类体内污染物的暴露更具挑战性,但可以提供与现实生活有关的特别有价值的信息。可能最有用的应用是对遭受实际环境或职业诱变作用的人口群体进行生物监测。最后,该技术在自然环境中监测污染物影响的潜在用途尚未得到充分开发。

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