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低pH条件下硫酸铜与铜纳米颗粒对虹鳟(Oncorhynchus mykiss)的亚致死效应:生理学与金属积累

Sublethal effects of copper sulphate compared to copper nanoparticles in rainbow trout (Oncorhynchus mykiss) at low pH: physiology and metal accumulation.

作者信息

Al-Bairuty Genan A, Boyle David, Henry Theodore B, Handy Richard D

机构信息

Ecotoxicology Research and Innovation Centre, School of Biological Sciences, Plymouth University, Plymouth, UK.

Ecotoxicology Research and Innovation Centre, School of Biological Sciences, Plymouth University, Plymouth, UK; School of Life Sciences, Heriot-Watt University, Edinburgh, UK; Department of Forestry Wildlife and Fisheries, and Center for Environmental Biotechnology, The University of Tennessee, Knoxville, TN, USA.

出版信息

Aquat Toxicol. 2016 May;174:188-98. doi: 10.1016/j.aquatox.2016.02.006. Epub 2016 Feb 17.

Abstract

A few studies have investigated the interaction between copper toxicity and water pH in fishes, but little is known about the effects of acidic pH on the toxicity of copper nanoparticles (Cu-NPs). This study aimed to describe the sub-lethal toxic effects of Cu-NPs compared to CuSO4 at neutral and acidic water pH values in juvenile rainbow trout. Fish were exposed in triplicate (3 tanks/treatment) to control (no added Cu), or 20μgl(-1) of either Cu as CuSO4 or Cu-NPs, at pH 7 and 5 in a semi-static aqueous exposure regime for up to 7 days. Acidification of the water altered the mean primary particle size (at pH 7, 60±2nm and pH 5, 55±1nm) and dialysis experiments to measure dissolution showed an increased release of dissolved Cu from Cu-NPs at pH 5 compared to pH 7. Copper accumulation was observed in the gills of trout exposed to CuSO4 and Cu-NPs at pH 7 and 5, with a greater accumulation from the CuSO4 treatment than Cu-NPs at each pH. The liver also showed Cu accumulation with both Cu treatments at pH 7 only, whereas, the spleen and kidney did not show measurable accumulation of Cu at any of the water pH values. Exposure to acid water caused changes in the ionoregulatory physiology of control fish and also altered the observed effects of Cu exposure; at pH 5, branchial Na(+)/K(+)-ATPase activity was greater than at pH 7 and the inhibition of Na(+)/K(+)-ATPase activity caused by exposure to CuSO4 at pH 7 was also not observed. There were some changes in haematology and depletion of plasma Na(+) at pH 7 and 5 due to Cu exposure, but there were few material-type or pH effects. Overall, the data show that the accumulation of Cu is greater from CuSO4 than Cu-NPs; however, understanding of the effects of low pH on bioavailability of CuSO4 may not be directly transferred to Cu-NPs without further consideration of the physico-chemical behaviour of Cu-NPs in acid water.

摘要

已有一些研究调查了鱼类中铜毒性与水体pH值之间的相互作用,但对于酸性pH值对铜纳米颗粒(Cu-NPs)毒性的影响却知之甚少。本研究旨在描述在中性和酸性水体pH值条件下,与硫酸铜相比,铜纳米颗粒对幼年虹鳟的亚致死毒性效应。将鱼分为三组(每组处理设3个水族箱),在半静态水暴露条件下,分别暴露于对照(不添加铜)、pH值为7和5时20μg/L的硫酸铜或铜纳米颗粒中,暴露时间长达7天。水体酸化改变了平均初级粒径(pH值为7时,60±2nm;pH值为5时,55±1nm),测量溶解情况的透析实验表明,与pH值为7时相比,pH值为5时从铜纳米颗粒中释放的溶解态铜有所增加。在pH值为7和5时,暴露于硫酸铜和铜纳米颗粒的虹鳟鳃中均观察到铜的积累,在每个pH值下,硫酸铜处理组的铜积累量均大于铜纳米颗粒处理组。仅在pH值为7时,肝脏在两种铜处理中均显示出铜的积累,而在任何水体pH值下,脾脏和肾脏均未显示出可测量的铜积累。暴露于酸性水体导致对照鱼的离子调节生理发生变化,也改变了观察到的铜暴露效应;在pH值为5时,鳃部Na(+)/K(+)-ATP酶活性高于pH值为7时,且在pH值为7时未观察到暴露于硫酸铜导致的Na(+)/K(+)-ATP酶活性抑制情况。由于铜暴露,在pH值为7和5时血液学有一些变化,血浆Na(+)减少,但物质类型或pH值效应很少。总体而言,数据表明硫酸铜中的铜积累量大于铜纳米颗粒;然而,在未进一步考虑铜纳米颗粒在酸性水体中的物理化学行为的情况下,对低pH值对硫酸铜生物有效性影响的理解可能无法直接应用于铜纳米颗粒。

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