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无机和有机污染物在温度情景下对生物标志物响应的影响。

Effects of Inorganic and Organic Pollutants on the Biomarkers' Response of under Temperature Scenarios.

作者信息

Mesquita Andreia F, Gonçalves Fernando J M, Gonçalves Ana M M

机构信息

Department of Biology and CESAM-Centre for Environmental and Marine Studies, University of Aveiro, 3810-193 Aveiro, Portugal.

University of Coimbra, MARE-Marine and Environmental Sciences Centre/ARNET-Aquatic Research Network, Department of Life Sciences, Calçada Martim de Freitas, 3000-456 Coimbra, Portugal.

出版信息

Antioxidants (Basel). 2023 Sep 13;12(9):1756. doi: 10.3390/antiox12091756.

Abstract

Currently, there is increased chemical pollution, and climate change is a major concern to scientific, political and social communities globally. Marine systems are very susceptible to changes, and considering the ecological and economic roles of bivalve species, like , studies evaluating the effects of both stressors are of great importance. This study intends to (a) determine the toxicity of copper (Cu) and oxyfluorfen at the lethal level, considering the temperature; (b) assess the changes in the antioxidant defence enzymes as a consequence of the simultaneous exposure to chemical and warming pressures; and (c) determine if lipid peroxidation (LPO) and neurotoxic effects occur after the exposure to chemical and temperature stressors. was exposed to Cu and oxyfluorfen at different temperatures (15 °C, 20 °C and 25 °C) for 96 h. The ecotoxicological results reveal a higher tolerance of to oxyfluorfen than to Cu, regardless of the temperature. The antioxidant defence system revealed efficiency in fighting the chemicals' action, with no significant changes in the thiobarbituric reactive species (TBARS) levels to 15 °C and 20 °C. However, a significant inhibition of acetylcholinesterase (AChE) was observed on the organisms exposed to oxyfluorfen at 20 °C, as well as a decreasing trend on the ones exposed to Cu at this temperature. Moreover, the catalase (CAT) showed a significant increase in the organisms exposed to the two highest concentrations of Cu at 15 °C and in the ones exposed to the highest concentration of oxyfluorfen at 20 °C. Looking at the temperature as a single stressor, the organisms exposed to 25 °C revealed a significant increase in the TBARS level, suggesting potential LPO and explaining the great mortality at this condition.

摘要

目前,化学污染日益严重,气候变化是全球科学界、政界和社会各界主要关注的问题。海洋系统极易受到变化的影响,鉴于双壳贝类物种的生态和经济作用,评估这两种压力源影响的研究非常重要。本研究旨在:(a) 考虑温度因素,确定铜(Cu)和乙氧氟草醚在致死水平的毒性;(b) 评估同时暴露于化学压力和升温压力下抗氧化防御酶的变化;(c) 确定暴露于化学和温度压力源后是否会发生脂质过氧化(LPO)和神经毒性作用。将[具体生物名称]在不同温度(15℃、20℃和25℃)下暴露于铜和乙氧氟草醚中96小时。生态毒理学结果表明,无论温度如何,[具体生物名称]对乙氧氟草醚的耐受性均高于对铜的耐受性。抗氧化防御系统显示出对抗化学物质作用的效率,在15℃和20℃时硫代巴比妥酸反应性物质(TBARS)水平无显著变化。然而,在20℃暴露于乙氧氟草醚的生物中观察到乙酰胆碱酯酶(AChE)受到显著抑制,在该温度下暴露于铜的生物中也呈现下降趋势。此外,在15℃暴露于两种最高浓度铜的生物以及在20℃暴露于最高浓度乙氧氟草醚的生物中,过氧化氢酶(CAT)显著增加。将温度视为单一压力源时,暴露于25℃的生物中TBARS水平显著增加,表明可能发生脂质过氧化,并解释了在这种情况下的高死亡率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca34/10525251/a503b5df2f8d/antioxidants-12-01756-g001.jpg

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