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水环境中铜纳米颗粒的行为与毒性评估:以红沼泽螯虾为例

Behavior and toxicity assessment of copper nanoparticles in aquatic environment: A case study on red swamp crayfish.

作者信息

Yang Li, He Zhen, Li Xiaoyi, Jiang Ziqiang, Xuan Fujun, Tang Boping, Bian Xunguang

机构信息

Jiangsu Provincial Key Laboratory of Coastal Wetland Bioresources and Environmental Protection, Yancheng, 224007, Jiangsu, PR China; Jiangsu Synthetic Innovation Center for Coastal Bioagriculture, Yancheng, 224007, Jiangsu, PR China.

College of Ocean and Biology Engineering, Yancheng Teachers University, Yancheng, 224007, Jiangsu, PR China.

出版信息

J Environ Manage. 2022 Jul 1;313:114986. doi: 10.1016/j.jenvman.2022.114986. Epub 2022 Apr 4.

Abstract

With the wide use of copper nanoparticles (CuNPs) in various industrial and commercial applications, they inevitably enter the aquatic environment. However, their behavior in the aquatic environment and potential toxicity to aquatic organisms remain little known. In this study, we investigated the behavior of CuNPs in freshwater, as well as the toxicity and bioaccumulation of CuNPs and copper sulfate (CuSO), used as a positive control for copper ions toxicity, in red swamp crayfish (Procambarus clarkii). The results showed that CuNPs released copper ions into freshwater and aggregated rapidly in freshwater, and their release of copper ions and aggregation slowed down at a higher concentration of CuNPs. The calculated 72-h LC values for crayfish were 1.18 and 0.54 mg/L for CuNPs and CuSO, respectively. Cu accumulation in the gill and hepatopancreas from CuSO treatments was significantly higher than that from CuNPs, and the highest Cu bioaccumulation level in crayfish was found in the gill, followed by hepatopancreas and muscle with the exposure of copper. The activities of the antioxidative enzymes in the crayfish significantly decreased after exposure to CuNPs for 48 h, compared to the control (without CuNPs or CuSO). Histological examination revealed that there was no significant alteration of hepatopancreas in the crayfish exposed to CuNPs. Meanwhile, the growth of crayfish was not significantly inhibited by CuNPs. These results suggested that CuNPs exposure can induce oxidative stress in the crayfish, gill is the main tissue for their accumulation, and their toxicity is mainly caused by the released copper ions.

摘要

随着铜纳米颗粒(CuNPs)在各种工业和商业应用中的广泛使用,它们不可避免地进入水生环境。然而,它们在水生环境中的行为以及对水生生物的潜在毒性仍然鲜为人知。在本研究中,我们调查了CuNPs在淡水中的行为,以及CuNPs和硫酸铜(CuSO₄,用作铜离子毒性的阳性对照)对克氏原螯虾(Procambarus clarkii)的毒性和生物累积情况。结果表明,CuNPs在淡水中会释放铜离子并迅速聚集,且在较高浓度的CuNPs下其铜离子释放和聚集速度会减慢。计算得出,克氏原螯虾对CuNPs和CuSO₄的72小时半数致死浓度(LC)值分别为1.18和0.54毫克/升。CuSO₄处理组中鳃和肝胰腺的铜积累量显著高于CuNPs处理组,在接触铜的情况下,克氏原螯虾体内铜生物累积水平最高的是鳃,其次是肝胰腺和肌肉。与对照组(未接触CuNPs或CuSO₄)相比,克氏原螯虾在接触CuNPs 48小时后抗氧化酶的活性显著降低。组织学检查显示,接触CuNPs的克氏原螯虾肝胰腺无明显改变。同时,CuNPs对克氏原螯虾的生长没有显著抑制作用。这些结果表明,接触CuNPs可诱导克氏原螯虾产生氧化应激,鳃是其积累的主要组织,其毒性主要由释放的铜离子引起。

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