Glyphosate Adversely Affects Danio rerio Males: Acetylcholinesterase Modulation and Oxidative Stress.

Zebrafish Pub Date : 2017-04-01 Epub Date: 2016-12-01 DOI:10.1089/zeb.2016.1341
Fernanda Moreira Lopes, Sergiane Souza Caldas, Ednei Gilberto Primel, Carlos Eduardo da Rosa
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引用次数: 15

Abstract

It has been demonstrated that glyphosate-based herbicides are toxic to animals. In the present study, reactive oxygen species (ROS) generation, antioxidant capacity against peroxyl radicals (ACAP), and lipid peroxidation (LPO), as well as the activity and expression of the acetylcholinesterase (AChE) enzyme, were evaluated in Danio rerio males exposed to 5 or 10 mg/L of glyphosate for 24 and 96 h. An increase in ACAP in gills after 24 h was observed in the animals exposed to 5 mg/L of glyphosate. A decrease in LPO was observed in brain tissue of animals exposed to 10 mg/L after 24 h, while an increase was observed in muscle after 96 h. No significant alterations were observed in ROS generation. AChE activity was not altered in muscles or brains of animals exposed to either glyphosate concentration for 24 or 96 h. However, gene expression of this enzyme in the brain was reduced after 24 h and was enhanced in both brain and muscle tissues after 96 h. Thus, contrary to previous findings that had attributed the imbalance in the oxidative state of animals exposed to glyphosate-based herbicides to surfactants and other inert compounds, the present study demonstrated that glyphosate per se promotes this same effect in zebrafish males. Although glyphosate concentrations did not alter AChE activity, this study demonstrated for the first time that this molecule affects ache expression in male zebrafish D. rerio.

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草甘膦对丹利欧雄鱼的不利影响:乙酰胆碱酯酶调节和氧化应激
研究表明,草甘膦类除草剂对动物有毒。在本研究中,对暴露于 5 或 10 mg/L 草甘膦 24 和 96 小时的雄性 Danio rerio 进行了活性氧(ROS)生成、过氧自由基(ACAP)抗氧化能力和脂质过氧化(LPO)以及乙酰胆碱酯酶(AChE)活性和表达的评估。暴露于 10 毫克/升草甘膦的动物的脑组织在 24 小时后观察到 LPO 下降,而肌肉在 96 小时后观察到 LPO 上升。因此,与之前将接触草甘膦类除草剂的动物氧化状态失衡归因于表面活性剂和其他惰性化合物的研究结果相反,本研究证明草甘膦本身也会对雄性斑马鱼产生同样的影响。虽然草甘膦的浓度不会改变 AChE 的活性,但本研究首次证明这种分子会影响雄性斑马鱼 D. rerio 的痛觉表达。
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