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环境电晕在决定工程纳米材料的生物效应方面的关键作用。

The Crucial Role of Environmental Coronas in Determining the Biological Effects of Engineered Nanomaterials.

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Small. 2020 Sep;16(36):e2003691. doi: 10.1002/smll.202003691. Epub 2020 Aug 11.

Abstract

In aquatic environments, a large number of ecological macromolecules (e.g., natural organic matter (NOM), extracellular polymeric substances (EPS), and proteins) can adsorb onto the surface of engineered nanomaterials (ENMs) to form a unique environmental corona. The presence of environmental corona as an eco-nano interface can significantly alter the bioavailability, biocompatibility, and toxicity of pristine ENMs to aquatic organisms. However, as an emerging field, research on the impact of the environmental corona on the fate and behavior of ENMs in aquatic environments is still in its infancy. To promote a deeper understanding of its importance in driving or moderating ENM toxicity, this study systemically recapitulates the literature of representative types of macromolecules that are adsorbed onto ENMs; these constitute the environmental corona, including NOM, EPS, proteins, and surfactants. Next, the ecotoxicological effects of environmental corona-coated ENMs on representative aquatic organisms at different trophic levels are discussed in comparison to pristine ENMs, based on the reported studies. According to this analysis, molecular mechanisms triggered by pristine and environmental corona-coated ENMs are compared, including membrane adhesion, membrane damage, cellular internalization, oxidative stress, immunotoxicity, genotoxicity, and reproductive toxicity. Finally, current knowledge gaps and challenges in this field are discussed from the ecotoxicology perspective.

摘要

在水生环境中,大量的生态大分子(如天然有机物 (NOM)、细胞外聚合物 (EPS) 和蛋白质)可以吸附到工程纳米材料 (ENMs) 的表面,形成独特的环境冠。环境冠作为生态纳米界面的存在,会显著改变原始 ENMs 对水生生物的生物利用度、生物相容性和毒性。然而,作为一个新兴领域,关于环境冠对 ENMs 在水生环境中归宿和行为的影响的研究仍处于起步阶段。为了更深入地了解其在驱动或调节 ENM 毒性方面的重要性,本研究系统地总结了吸附在 ENMs 上的代表性大分子类型的文献;这些大分子构成了环境冠,包括 NOM、EPS、蛋白质和表面活性剂。接下来,根据已报道的研究,将环境冠包覆的 ENMs 对不同营养级别的代表性水生生物的生态毒理学效应与原始 ENMs 进行了比较。根据该分析,比较了原始和环境冠包覆的 ENMs 触发的分子机制,包括膜黏附、膜损伤、细胞内化、氧化应激、免疫毒性、遗传毒性和生殖毒性。最后,从生态毒理学的角度讨论了该领域当前的知识空白和挑战。

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