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生态冠冕与蛋白质冠冕:腐殖质对电晕形成和纳米塑料颗粒毒性的影响。

Eco-Corona vs Protein Corona: Effects of Humic Substances on Corona Formation and Nanoplastic Particle Toxicity in .

机构信息

Key Laboratory of Environmental Biotechnology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, 18 Shuangqing Road, Beijing 100085, People's Republic of China.

College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

Environ Sci Technol. 2020 Jul 7;54(13):8001-8009. doi: 10.1021/acs.est.0c00615. Epub 2020 Jun 10.

Abstract

Despite many studies on the toxicity of nanoplastic particles (NPPs) to aquatic invertebrates, the effects of ecological constituents such as humic substances (HSs) are often neglected. In our study, was used to evaluate the effects of three HSs, natural organic matter (NOM), fulvic acid (FA), and humic acid (HA), on NPP toxicity and corona formation. Acute toxicities of NPPs were reduced by all HSs at environmentally relevant concentrations. NPPs elicited the upregulation of all genes related to detoxification, oxidative stress, and endocrine activity after 7 days of exposure. The presence of NOM or HA resulted in the mitigation of gene expression, whereas significantly higher upregulation of all of the genes was observed with FA. The presence of FA led to increased protein adsorption on NPPs in culture medium (eco-corona, EC) and homogenates (protein corona, PC), while there was less adsorption in the presence of HA. The highly abundant proteins identified in EC are involved in immune defense, cell maintenance, and antipredator response, while those in PC are responsible for lipid transport, antioxidant effects, and estrogen mediation. Our findings revealed the key influence of HSs on the toxicity of NPPs and provide an analytical and conceptual foundation for future study.

摘要

尽管有许多研究关注纳米塑料颗粒(NPPs)对水生无脊椎动物的毒性,但生态成分如腐殖质(HSs)的影响往往被忽视。在我们的研究中,使用了三种 HSs,即天然有机质(NOM)、富里酸(FA)和腐殖酸(HA),来评估它们对 NPP 毒性和冠形成的影响。在环境相关浓度下,所有 HSs 都降低了 NPP 的急性毒性。NPPs 在暴露 7 天后,会引发所有与解毒、氧化应激和内分泌活动相关基因的上调。NOM 或 HA 的存在导致基因表达的缓解,而 FA 的存在则导致所有基因的显著上调。FA 的存在导致 NPP 在培养基(生态冠,EC)和匀浆(蛋白冠,PC)中吸附更多的蛋白质,而在 HA 存在的情况下则吸附较少。在 EC 中鉴定到的高丰度蛋白质参与免疫防御、细胞维持和抗捕食反应,而在 PC 中鉴定到的蛋白质则负责脂质转运、抗氧化作用和雌激素介导。我们的研究结果揭示了 HSs 对 NPP 毒性的关键影响,并为未来的研究提供了分析和概念基础。

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