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首页> 外文期刊>Ecotoxicology and Environmental Safety >Copper accumulation and toxicity in earthworms exposed to CuO nanomaterials: Effects of particle coating and soil ageing
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Copper accumulation and toxicity in earthworms exposed to CuO nanomaterials: Effects of particle coating and soil ageing

机译:暴露于CuO纳米材料的worm中的铜积累和毒性:颗粒涂层和土壤老化的影响

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Engineered nanomaterials (ENMs) may be functionalised with a surface coating to enhance their properties, but the ecotoxicity of the coatings and how hazard changes with ageing in soil is poorly understood. This study determined the toxic effect of CuO ENMs with different chemical coatings on the earthworm (Eisenia fetida) in fresh soil, and then after one year in aged soil. In both experiments, earthworms were exposed for 14 days to the CuO materials at nominal concentrations of 200 and 1000 mg Cu kg(-1) dry weight and compared to CuSO4. In the fresh soil experiment, CuO-COOH was found to be the most acutely toxic of the nanomaterials (survival, 20 +/- 50%), with tenfold increase of total Cu in the earthworms compared to controls. Sodium pump activity was reduced in most CuO ENM treatments, although not in the CuSO4 control. There was no evidence of glutathione depletion or the induction of superoxide dismutase (SOD) activity in any treatment. Histology showed a mild hypoplasia of mucous cells in the epidermis with some nanomaterials. In the aged soil, the CuO-NH4+ was the most acutely toxic ENM (survival 45 +/- 3%) and Cu accumulation was lower in the earthworms than in the fresh soil study. Depletion of tissue Mn and Zn concentrations were seen in earthworms in aged soil, while no significant effects on sodium pump or total glutathione were observed. Overall, the study showed some coating dependent differences in ENM toxicity to earthworms which also changed after a year of ageing the soil.
机译:工程纳米材料(ENM)可以通过表面涂层进行功能化,以增强其性能,但人们对涂层的生态毒性以及土壤中的危害随老化的变化知之甚少。这项研究确定了具有不同化学涂层的CuO ENMs对新鲜土壤中worm(Eisenia fetida),然后在老化土壤中一年后的毒性作用。在两个实验中,earth均以200和1000 mg Cu kg(-1)干重的名义浓度暴露于CuO材料14天,并与CuSO4进行比较。在新鲜土壤实验中,发现CuO-COOH是纳米材料中毒性最强的(存活率20 +/- 50%),与对照组相比,Cu中的总Cu含量增加了十倍。在大多数的CuO ENM处理中,钠泵的活性都降低了,尽管在CuSO4对照中却没有。没有证据表明在任何治疗中谷胱甘肽耗竭或超氧化物歧化酶(SOD)活性的诱导。组织学显示表皮中的粘液细胞轻度增生,并带有一些纳米材料。在老化的土壤中,CuO-NH4 +是毒性最强的ENM(存活45 +/- 3%),Cu中的Cu积累比新鲜土壤中的要低。在老化土壤中的seen中观察到组织中Mn和Zn浓度的消耗,而对钠泵或总谷胱甘肽没有显着影响。总体而言,该研究表明,ENM对earth的毒性存在一定的涂层依赖性差异,而土壤老化一年后这种差异也发生了变化。

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