首页> 外文期刊>Aquatic Toxicology >Combined effects of exposure to engineered silver nanoparticles and the water-soluble fraction of crude oil in the marine copepod Calanus finmarchicus
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Combined effects of exposure to engineered silver nanoparticles and the water-soluble fraction of crude oil in the marine copepod Calanus finmarchicus

机译:暴露于工程银纳米粒子的综合作用及桡骨蛋白酶乳蛋白的原油水溶性零件

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摘要

While it is likely that ENPs may occur together with other contaminants in nature, the combined effects of exposure to both ENPs and environmental contaminants are not studied sufficiently. In this study, we investigated the acute and sublethal toxicity of PVP coated silver nanoparticles (AgNP) and ionic silver (Ag+; administered as AgNO3) to the marine copepod Calanus finmarchicus. We further studied effects of single exposures to AgNPs (nominal concentrations: low 15 mu g L-1 NPL, high 150 mu g L-1 NPH) or Ag+(60 mu g L-1), and effects of co-exposure to AgNPs, Ag+ and the water-soluble fraction (WSF; 100 mu g L-1) of a crude oil (AgNP + WSF; Ag+ + WSF). The gene expression and the activity of antioxidant defense enzymes SOD, CAT and GST, as well as the gene expression of HSP90 and CYP330A1 were determined as sublethal endpoints. Results show that Ag+ was more acutely toxic compared to AgNPs, with 96 h LC50 concentrations of 403 mu g L-1 for AgNPs, and 147 mu g L-1 for Ag+ Organismal uptake of Ag following exposure was similar for AgNP and Ag+, and was not significantly different when co-exposed to WSF. Exposure to AgNPs alone caused increases in gene expressions of GST and SOD, whereas WSF exposure caused an induction in SOD. Responses in enzyme activities were generally low, with significant effects observed only on SOD activity in NPL and WSF exposures and on GST activity in NPL and NPH exposures. Combined AgNP and WSF exposures caused slightly altered responses in expression of SOD, GST and CYP330A1 genes compared to the single exposures of either AgNPs or WSF. However, there was no clear pattern of cumulative effects caused by co-exposures of AgNPs and WSF. The present study indicates that the exposure to AgNPs, Ag+, and to a lesser degree WSF cause an oxidative stress response in C. finmarchicus, which was slightly, but mostly not significantly altered in combined exposures. This indicated that the combined effects between Ag and WSF are relatively limited, at least with regard to oxidative stress.
机译:虽然engps可能与其他污染物有用一起发生,但没有足够地研究暴露于enps和环境污染物的综合影响。在这项研究中,我们研究了PVP涂覆银纳米颗粒(AgNP)和离子银(Ag +;施用AgNO3)的急性和止逆毒性,对海洋蛋糕Calanus finMarchicus进行。我们进一步研究了单曝光对agnps的影响(标称浓度:低15μgl-1 npl,高150μgl-1nph)或ag +(60μgl-1),以及共同暴露于agnps的影响,Ag +和原油(AgNP + WSF; AG + + WSF)的水溶性级分(WSF;100μgL-1)。基因表达和抗氧化剂防御酶SOD,CAT和GST的活性,以及​​HSP90和CYP330A1的基因表达被确定为亚偶终点。结果表明,与AgNP相比,AG +更敏锐地毒性,对于AgNP,96小时LC 50浓度为403μg,147μgl-1用于Ag + Ag的Ag +机构摄取后的AgNP和Ag +相似。在共同暴露于WSF时没有显着差异。单独接触AgNPS引起GST和SOD的基因表达增加,而WSF暴露导致SOD引起诱导。酶活性的反应通常很低,仅在NPL和WSF暴露中的SOD活性和NPL和NPH曝光中的GST活性仅观察到显着效果。与agnps或WSF的单一曝光相比,联合AGNP和WSF暴露导致SOD,GST和CYP330A1基因表达略有改变的反应。然而,由于AgNP和WSF的共同暴露,没有明确的累积效应模式。本研究表明,暴露于AgNP,Ag +和较小程度的WSF导致C.FinMarchicus的氧化应激反应,略微略微,但大多数没有显着改变组合曝光。这表明AG和WSF之间的组合效应至少在氧化应激方面相对有限。

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