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混合微塑料的新威胁:对漂浮大型植物中全(多)氟烷基物质生物累积和植物毒性的影响

The emerging threat of hybrid microplastics: Impacts on per(poly)fluoroalkyl substance bioaccumulation and phytotoxicity in floating macrophytes.

作者信息

Chen Zi-Wei, Hua Zu-Lin, Shi Ye-Bing, Gu Li, Ye Fu-Zhu, Chen Jia-Yun, Guo Peng

机构信息

Ministry of Education Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, College of Environment, Hohai University, Nanjing 210098, PR China.

Ministry of Education Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, College of Environment, Hohai University, Nanjing 210098, PR China; Yangtze Institute for Conservation and Development, Nanjing 210098, PR China.

出版信息

J Hazard Mater. 2025 Sep 5;495:139130. doi: 10.1016/j.jhazmat.2025.139130. Epub 2025 Jul 2.

Abstract

This study investigated how microplastic (MP) hybridization influence the environmental behavior of per(poly)fluoroalkyl substances (PFASs), with a focus on the bioaccumulation and phytotoxicity of Eichhornia crassipes, a macrophyte employed for phytoremediation. Perfluorooctanoic acid (PFOA) and perfluoro-2-methyl-3-oxahexanoic acid (GenX) were selected as the targeted PFASs, and polypropylene (PP), polyethylene (PE), and polystyrene (PS) were selected as the model MPs. Compared with previous co-exposure studies, this study considered the exposed polymer component, and innovatively introduced Simpson diversity (SDI) index to evaluate the component evenness and complexity, thereby quantifying the MP hybridization. Results revealed that at environmentally relevant concentrations, increased MP hybridization significantly enhanced the PFOA (k = 0.462) and GenX (k = 0.455) bioaccumulation in E. crassipes, with GenX exhibiting a greater sensitivity to colloidal interactions than PFOA. Although pure MPs initially promoted the PFOA/GenX removal by E. crassipes from the water column, this effect diminished with MP hybridization. This phenomenon is likely attributed to increased MP self-assembly and colloidal enlargement, thereby hindering PFOA/GenX adsorption onto the MPs. However, the enhanced rhizosphere filtration provided by MP hybridization led to a greater overall PFOA/GenX accumulation to E. crassipes. Furthermore, MP hybridization exacerbated lipid peroxidation and amplified the integrated toxicological responses in E. crassipes under coexposure to PFOA/GenX. Interestingly, despite the prevalence of antagonistic effects between MPs and PFOA/GenX, these effects decreased with increasing MP hybridization.

摘要

本研究调查了微塑料(MP)杂交如何影响全(多)氟烷基物质(PFASs)的环境行为,重点关注用于植物修复的大型植物凤眼莲的生物累积和植物毒性。选择全氟辛酸(PFOA)和全氟-2-甲基-3-氧杂己酸(GenX)作为目标PFASs,并选择聚丙烯(PP)、聚乙烯(PE)和聚苯乙烯(PS)作为模型微塑料。与之前的共同暴露研究相比,本研究考虑了暴露的聚合物成分,并创新性地引入辛普森多样性(SDI)指数来评估成分的均匀性和复杂性,从而量化微塑料杂交。结果表明,在环境相关浓度下,微塑料杂交增加显著增强了凤眼莲对PFOA(k = 0.462)和GenX(k = 0.455)的生物累积,GenX对胶体相互作用的敏感性高于PFOA。虽然纯微塑料最初促进了凤眼莲从水柱中去除PFOA/GenX,但这种效果随着微塑料杂交而减弱。这种现象可能归因于微塑料自组装增加和胶体增大,从而阻碍了PFOA/GenX吸附到微塑料上。然而,微塑料杂交增强的根际过滤导致凤眼莲对PFOA/GenX的总体累积量更大。此外,微塑料杂交加剧了脂质过氧化,并放大了凤眼莲在同时暴露于PFOA/GenX时的综合毒理学反应。有趣的是,尽管微塑料与PFOA/GenX之间普遍存在拮抗作用,但这些作用随着微塑料杂交增加而减弱。

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