An overview on dispersion procedures and testing methods for the ecotoxicity testing of nanomaterials in the marine environment

生态毒性 环境科学 环境化学 色散(光学) 营养水平 表征(材料科学) 污染 人类健康 纳米技术 生物 化学 生态学 材料科学 环境卫生 医学 光学 物理 有机化学 毒性
作者
Andrea Brunelli,Virginia Cazzagon,Eleonora Faraggiana,Cinzia Bettiol,Marco Picone,Antonio Marcomini,Elena Badetti
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:921: 171132-171132 被引量:5
标识
DOI:10.1016/j.scitotenv.2024.171132
摘要

Considerable efforts have been devoted to develop or adapt existing guidelines and protocols, to obtain robust and reproducible results from (eco)toxicological assays on engineered nanomaterials (NMs). However, while many studies investigated adverse effects of NMs on freshwater species, less attention was posed to the marine environment, a major sink for these contaminants. This review discusses the procedures used to assess the ecotoxicity of NMs in the marine environment, focusing on the use of protocols and methods for preparing NMs dispersions and on the NMs physicochemical characterization in exposure media. To this purpose, a critical analysis of the literature since 2010 was carried out, based on the publication of the first NMs dispersion protocols. Among the 89 selected studies, only <5 % followed a standardized dispersion protocol combined with NMs characterization in ecotoxicological media, while more than half used a non-standardized dispersion method but performed NMs characterization. In the remaining studies, only partial or no information on dispersion procedures or on physicochemical characterization was provided. This literature review also highlighted that metal oxides NMs were the most studied (42 %), but with an increasing interest in last years towards nanoplastics (14 %) and multicomponent nanomaterials (MCNMs, 7 %), in line with the growing attention on these emerging contaminants. For all these NMs, primary producers as algae and bacteria were the most studied groups of marine species, in addition to mollusca, while organisms at higher trophic levels were less represented, likely due to challenges in evaluating adverse effects on more complex organisms. Thus, despite the wide use of NMs in different applications, standard dispersion protocols are not often used for ecotoxicity testing with marine species. However, the efforts to characterize NMs in ecotoxicological media recognize the importance of following conditions that are as standardized as possible to support the ecological hazard assessment of NMs.

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