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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Progression of DNA damage induced by a glyphosate-based herbicide in fish (Anguilla anguilla) upon exposure and post-exposure periods — Insights into the mechanisms of genotoxicity and DNA repair
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Progression of DNA damage induced by a glyphosate-based herbicide in fish (Anguilla anguilla) upon exposure and post-exposure periods — Insights into the mechanisms of genotoxicity and DNA repair

机译:鱼(安圭拉安圭拉)中的草甘膦基除草剂在暴露和暴露后对DNA损伤的进展-了解遗传毒性和DNA修复的机理

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摘要

Roundup? is a glyphosate-based herbicide widely used with both agricultural and non-agricultural purposes, which has been demonstrated to represent a risk to non-target aquatic organisms, namely fish. Among the described effects to fish, genotoxicity has been pointed out as one of the most hazardous. However, the genotoxic mechanisms of Roundup?aswell as the involvement of the oxidative DNA damage repair systemare not entirely understood. Hence, this work aimed to improve the knowledge on the progression of DNA damage upon shortterm exposure (3 days) and post-exposure (1–14 days) periods in association with DNA repair processes in Anguilla anguilla exposed to Roundup? (58 and 116 μg L~(?1)). DNA damage in hepatic cells was evaluated by the comet assay improved with the DNA-lesion specific endonucleases FPG and EndoIII. In order to evaluate the oxidative DNA damage repair ability, an in vitro base excision repair (BER) assay was performed, testing hepatic subcellular extracts. Besides the confirmation of the genotoxic potential of this herbicide, oxidative damage was implicit as an important mechanism of genetic damage, which showed to be transient, since DNA integrity returned to the control levels on the first day after cessation of exposure. An increased capacity to repair oxidative DNA damage emerging in the post-exposure period revealed to be a crucial pathway for the A. anguilla recovery; nevertheless, DNA repair machinery showed to be susceptible to inhibitory actions during the exposure period, disclosing another facet of the risk associated with the tested agrochemical.
机译:围捕?是一种基于草甘膦的除草剂,广泛用于农业和非农业用途,已证明对非目标水生生物(即鱼类)构成风险。在所描述的对鱼类的影响中,遗传毒性已被指出是最有害的一种。但是,Roundup?的遗传毒性机制以及氧化性DNA损伤修复系统的参与尚不完全清楚。因此,这项工作旨在提高对短期暴露(3天)和暴露后(1-14天)时期与暴露于农达的安圭拉鳗的DNA修复过程相关的DNA损伤进展的认识。 (58和116μgL〜(?1))。通过彗星试验评估肝细胞中的DNA损伤,该彗星试验使用DNA损伤特异性核酸内切酶FPG和EndoIII改善了。为了评估氧化性DNA损伤修复能力,进行了体外碱基切除修复(BER)分析,测试了肝亚细胞提取物。除了证实这种除草剂具有潜在的遗传毒性外,氧化损伤还被认为是遗传损伤的重要机制,这是暂时的,因为在暴露结束后的第一天,DNA的完整性恢复到了对照水平。暴露后时期修复氧化DNA损伤的能力增强,这是鳗an曲霉恢复的关键途径。然而,DNA修复机制在暴露期间表现出易受抑制作用的影响,从另一个方面揭示了与测试农用化学品有关的风险。

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