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二氧化铈纳米颗粒对淡水双壳类多形饰贝影响的综合评估。

Integrated assessment of ceria nanoparticle impacts on the freshwater bivalve Dreissena polymorpha.

作者信息

Garaud Maël, Auffan Mélanie, Devin Simon, Felten Vincent, Pagnout Christophe, Pain-Devin Sandrine, Proux Olivier, Rodius François, Sohm Bénédicte, Giamberini Laure

机构信息

a Laboratoire Interdisciplinaire Des Environnements Continentaux (LIEC), Université De Lorraine , CNRS UMR 7360 , Metz France .

b International Consortium for the Environmental Implications of Nanotechnology (iCEINT) , Aix En Provence , France .

出版信息

Nanotoxicology. 2016 Sep;10(7):935-44. doi: 10.3109/17435390.2016.1146363. Epub 2016 Mar 8.

Abstract

Exposures in realistic environmental conditions are essential to properly assess the effects of emerging pollutants on ecosystems. While ceria nanoparticles (nCeO2) production and use are expanding quickly, ecotoxicity studies remain very scarce. In this study, we set up experimental systems reproducing a simplified ecosystem to assess the effects of a chronic exposure to citrate-coated nCeO2 (ci-CeO2) and bare nCeO2 (ba-CeO2) on the freshwater mussel Dreissena polymorpha using an integrated multibiomarker approach. The fate of nanoparticles was tightly monitored to properly characterize the exposure. Organisms were exposed for 3 weeks and sampled weekly for biomarker analysis. Mussel filter-feeding activity resulted in significant removal of nCeO2 from the water column. At the same time, bioaccumulation was low, reaching its maximum in the first week. Mussels bioaccumulated ci-CeO2 three times more than ba-CeO2, probably due to coating-related differences in their behavior in the water column and in organisms. Meanwhile, biomarker results were integrated and synthesized using linear discriminant analysis, highlighting that pi-glutathione-S-transferase (piGST) mRNA, catalase (CAT) activity and lysosomal system were the most impacted of the seven biomarkers singled out by the discriminant analysis. These biomarker responses indicated that mussels exposed to both forms of nCeO2 were stressed and differentiate from the controls. Moreover, they responded differently to ba-CeO2 and ci-CeO2 exposure. However, biomarkers used in the experimental conditions of this study did not indicate severe nCeO2 toxicity on mussels, as cellular damage biomarkers and mussel filtering activity were left unimpaired. However, further studies are needed to investigate if the slight perturbations observed could lead to populational impacts in the long term.

摘要

在现实环境条件下进行暴露实验对于正确评估新兴污染物对生态系统的影响至关重要。虽然二氧化铈纳米颗粒(nCeO2)的生产和使用正在迅速扩大,但生态毒性研究仍然非常匮乏。在本研究中,我们建立了实验系统来重现一个简化的生态系统,以使用综合多生物标志物方法评估长期暴露于柠檬酸盐包覆的nCeO2(ci-CeO2)和裸露的nCeO2(ba-CeO2)对淡水贻贝多形饰贝的影响。对纳米颗粒的归宿进行了密切监测,以准确表征暴露情况。将生物暴露3周,并每周取样进行生物标志物分析。贻贝的滤食活动导致从水柱中显著去除nCeO2。与此同时,生物累积量较低,在第一周达到最大值。贻贝对ci-CeO2的生物累积量是对ba-CeO2的三倍,这可能是由于它们在水柱和生物体内行为的涂层相关差异所致。同时,使用线性判别分析对生物标志物结果进行整合和综合,突出显示在判别分析挑选出的七个生物标志物中,π-谷胱甘肽-S-转移酶(piGST)mRNA、过氧化氢酶(CAT)活性和溶酶体系统受到的影响最大。这些生物标志物反应表明,暴露于两种形式nCeO2的贻贝受到了压力,与对照组有所不同。此外,它们对ba-CeO2和ci-CeO2暴露的反应也不同。然而,本研究实验条件下使用的生物标志物并未表明nCeO2对贻贝有严重毒性,因为细胞损伤生物标志物和贻贝滤食活动未受损害。然而,需要进一步研究来调查观察到的轻微扰动是否会在长期内导致种群影响。

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