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黏土类型调节低浓度氧化铜纳米颗粒在人工测试土壤中对跳虫的毒性。

Clay Types Modulate the Toxicity of Low Concentrated Copper Oxide Nanoparticles Toward Springtails in Artificial Test Soils.

作者信息

Fischer Jonas, Talal Ghanem D A, Schnee Laura S, Otomo Patricks V, Filser Juliane

机构信息

Department of General and Theoretical Ecology, University of Bremen, UFT, Bremen, Germany.

Institute of Mineralogy, Soil Mineralogy, Gottfried Wilhelm Leibniz University of Hannover, Hannover, Germany.

出版信息

Environ Toxicol Chem. 2022 Oct;41(10):2454-2465. doi: 10.1002/etc.5440. Epub 2022 Sep 13.

Abstract

Copper oxide nanoparticles (CuO-NPs) can be applied as an efficient alternative to conventional Cu in agriculture. Negative effects of CuO-NPs on soil organisms were found, but only in clay-rich loamy soils. It is hypothesized that clay-NP interactions are the origin of the observed toxic effects. In the present study, artificial Organisation for Economic Co-operation and Development soils containing 30% of kaolin or montmorillonite as clay type were spiked with 1-32 mg Cu/kg of uncoated CuO-NPs or CuCl . We performed 28-day reproduction tests with springtails of the species Folsomia candida and recorded the survival, reproduction, dry weight, and Cu content of adults. In a second experiment, molting frequency and the Cu content of exuviae, as well as the biochemical endpoints metallothionein and catalase (CAT) in springtails, were investigated. In the reproduction assay, negative effects on all endpoints were observed, but only in soils containing montmorillonite and mostly for CuO-NPs. For the biochemical endpoints and Cu content of exuviae, effects were clearly distinct between Cu forms in montmorillonite soil, but a significant reduction compared to the control was only found for CAT activity. Therefore, the reduced CAT activity in CuO-NP-montmorillonite soil might be responsible for the observed toxicity, potentially resulting from reactive oxygen species formation overloading the antioxidant system. This process seems to be highly concentration-dependent, because all endpoints investigated in reproduction and biochemical assays of CuO-NP-montmorillonite treatments showed a nonlinear dose-response relationship and were constantly reduced by approximately 40% at a field-realistic concentration of 3 mg/kg, but not at 32 mg/kg. The results underline that clay-CuO-NP interactions are crucial for their toxic behavior, especially at low, field-realistic concentrations, which should be considered for risk assessment of CuO-NPs. Environ Toxicol Chem 2022;41:2454-2465. © 2022 The Authors. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

氧化铜纳米颗粒(CuO-NPs)可作为农业中传统铜的一种有效替代品。已发现CuO-NPs对土壤生物有负面影响,但仅在富粘土的壤质土壤中。据推测,粘土与纳米颗粒的相互作用是观察到的毒性效应的根源。在本研究中,将含有30%高岭土或蒙脱石作为粘土类型的人工经济合作与发展组织土壤,用1-32毫克铜/千克的未包覆CuO-NPs或CuCl进行加标。我们用念珠弗氏跳虫进行了28天的繁殖试验,并记录了成虫的存活、繁殖、干重和铜含量。在第二个实验中,研究了跳虫的蜕皮频率、蜕壳的铜含量以及金属硫蛋白和过氧化氢酶(CAT)的生化终点。在繁殖试验中,观察到对所有终点都有负面影响,但仅在含有蒙脱石的土壤中,且主要是针对CuO-NPs。对于生化终点和蜕壳的铜含量,蒙脱石土壤中不同铜形态的影响明显不同,但与对照相比,仅发现CAT活性显著降低。因此,CuO-NP-蒙脱石土壤中CAT活性的降低可能是观察到的毒性的原因,这可能是由于活性氧的形成使抗氧化系统过载所致。这个过程似乎高度依赖浓度,因为在CuO-NP-蒙脱石处理的繁殖和生化试验中研究的所有终点都显示出非线性剂量反应关系,并且在3毫克/千克的田间实际浓度下持续降低约40%,但在32毫克/千克时没有。结果强调,粘土与CuO-NP的相互作用对其毒性行为至关重要,尤其是在低田间实际浓度下,这在CuO-NPs的风险评估中应予以考虑。《环境毒理学与化学》2022年;41:2454-2465。©2022作者。《环境毒理学与化学》由Wiley Periodicals LLC代表SETAC出版。

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