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重新思考微塑料作为人为污染物载体的相关性:在高度污染的溪流中暴露时,有毒物质对微塑料的吸附 - 斑马鱼(Danio rerio)中有毒效应的分析定量和评估。

Rethinking the relevance of microplastics as vector for anthropogenic contaminants: Adsorption of toxicants to microplastics during exposure in a highly polluted stream - Analytical quantification and assessment of toxic effects in zebrafish (Danio rerio).

机构信息

Aquatic Ecology and Toxicology Group, Centre for Organismal Studies, University of Heidelberg, Im Neuenheimer Feld 504, Heidelberg, D-69120, Germany.

Hochschule Fresenius GmbH, University of Applied Sciences Fresenius, Limburger Str. 2, Idstein, D-65510, Germany.

出版信息

Sci Total Environ. 2022 Apr 10;816:151640. doi: 10.1016/j.scitotenv.2021.151640. Epub 2021 Nov 11.

Abstract

Given the increasing amounts of plastic debris entering marine and freshwater ecosystems, there is a growing demand for environmentally relevant exposure scenarios to improve the risk assessment of microplastic particles (MPs) in aquatic environments. So far, data on adverse effects in aquatic organisms induced by naturally exposed MPs are scarce and controversially discussed. As a consequence, we investigated the potential role of MPs regarding the sorption and transfer of environmental contaminants under natural conditions. For this end, a mixture of four common polymer types (polyethylene, polypropylene, polystyrene, polyvinyl chloride) was exposed to natural surface water in a polluted stream for three weeks. Samples of water, MP mixture, sediment, and suspended matter were target-screened for the presence of pollutants using GC/LC-MS, resulting in up to 94 different compounds. Possible adverse effects were investigated using several biomarkers in early developmental stages of zebrafish (Danio rerio). Exposure to natural stream water samples significantly inhibited acetylcholinesterase activity, altered CYP450 induction and modified behavioral patterns of zebrafish. In contrast, effects by samples of both non-exposed MPs and exposed MPs in zebrafish were less prominent than effects by water samples. In fact, the analytical target screening documented only few compounds sorbed to natural particles and MPs. Regarding acute toxic effects, no clear differentiation between different MPs and natural particles could be made, suggesting that - upon exposure in natural water bodies - MPs seem to approximate the sorption behavior of natural particles, presumably to a large extent due to biofilm formation. Thus, if compared to natural inorganic particles, MPs most likely do not transfer elevated amounts of environmental pollutants to biota and, therefore, do not pose a specific additional threat to aquatic organisms.

摘要

鉴于越来越多的塑料碎片进入海洋和淡水生态系统,人们越来越需要与环境相关的暴露场景,以改善水生环境中微塑料颗粒 (MPs) 的风险评估。到目前为止,关于自然暴露的 MPs 对水生生物产生的不良影响的数据很少,并且存在争议。因此,我们研究了 MPs 在自然条件下对环境污染物的吸附和转移的潜在作用。为此,我们将四种常见聚合物类型(聚乙烯、聚丙烯、聚苯乙烯、聚氯乙烯)的混合物暴露在受污染溪流的天然地表水中三周。使用 GC/LC-MS 对水样、MP 混合物、沉积物和悬浮物进行目标筛选,以检测污染物的存在,结果发现了多达 94 种不同的化合物。使用斑马鱼早期发育阶段的几种生物标志物研究了可能的不利影响。暴露于天然溪流水样会显著抑制乙酰胆碱酯酶活性,改变 CYP450 的诱导,并改变斑马鱼的行为模式。相比之下,未暴露的 MPs 和暴露的 MPs 的水样对斑马鱼的影响不如水样明显。事实上,分析目标筛选仅记录了少数几种被天然颗粒和 MPs 吸附的化合物。关于急性毒性效应,无法区分不同 MPs 和天然颗粒之间的差异,这表明在天然水体中暴露时, MPs 似乎近似于天然颗粒的吸附行为,这主要是由于生物膜的形成。因此,如果与天然无机颗粒相比, MPs 不太可能将大量环境污染物转移到生物群中,因此对水生生物不会构成特定的额外威胁。

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