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纳米材料对藻类的附着效率作为生态毒性和分组的重要标准

Attachment Efficiency of Nanomaterials to Algae as an Important Criterion for Ecotoxicity and Grouping.

作者信息

Hund-Rinke Kerstin, Sinram Tim, Schlich Karsten, Nickel Carmen, Dickehut Hanna Paula, Schmidt Matthias, Kühnel Dana

机构信息

Fraunhofer Institute for Molecular Biology and Applied Ecology, Auf dem Aberg 1, 57392 Schmallenberg, Germany.

Institute for Energy and Environmental Technology. e.V. (IUTA), Bliersheimer Straße 58-60, 47229 Duisburg, Germany.

出版信息

Nanomaterials (Basel). 2020 May 27;10(6):1021. doi: 10.3390/nano10061021.

Abstract

Engineered nanomaterials (ENMs) based on CeO and TiO differ in their effects on the unicellular green alga but these effects do not reflect the physicochemical parameters that characterize such materials in water and other test media. To determine whether interactions with algae can predict the ecotoxicity of ENMs, we studied the attachment of model compounds (three subtypes of CeO and five subtypes of TiO) to algal cells by light microscopy and electron microscopy. We correlated our observations with EC values determined in growth inhibition assays carried out according to the Organisation for Economic Co-operation and Development (OECD) test guideline 201. Light microscopy revealed distinct patterns of ENM attachment to algal cells according to the type of compound, with stronger interactions leading to greater toxicity. This was confirmed by electron microscopy, which allowed the quantitative assessment of particle attachment. Our results indicate that algal extracellular polymeric substances play an important role in the attachment of ENMs, influencing the formation of agglomerates. The attachment parameters in short-term tests predicted the toxicity of CeO and TiO ENMs and can be considered as a valuable tool for the identification of sets of similar nanoforms as requested by the European Chemicals Agency in the context of grouping and read-across.

摘要

基于CeO和TiO的工程纳米材料(ENMs)对单细胞绿藻的影响不同,但这些影响并未反映出表征此类材料在水和其他测试介质中的物理化学参数。为了确定与藻类的相互作用是否可以预测ENMs的生态毒性,我们通过光学显微镜和电子显微镜研究了模型化合物(CeO的三种亚型和TiO的五种亚型)与藻类细胞的附着情况。我们将观察结果与根据经济合作与发展组织(OECD)测试指南201进行的生长抑制试验中确定的EC值相关联。光学显微镜显示,根据化合物类型,ENMs与藻类细胞的附着模式不同,相互作用越强,毒性越大。电子显微镜证实了这一点,它可以对颗粒附着进行定量评估。我们的结果表明,藻类细胞外聚合物在ENMs的附着中起重要作用,影响团聚体的形成。短期测试中的附着参数预测了CeO和TiO ENMs的毒性,可被视为一种有价值的工具,用于识别欧洲化学品管理局在分组和类推方面要求的类似纳米形式组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0942/7352665/b9ace9e036df/nanomaterials-10-01021-g001.jpg

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