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微塑料比无机汞更能加剧甲基汞对斑马鱼(Danio rerio)的不利影响。

Microplastics aggravate the adverse effects of methylmercury than inorganic mercury on zebrafish (Danio rerio).

作者信息

Lei Yajie, Li Xue, Mao Xuefei

机构信息

Institute of Quality Standard and Testing Technology for Agro-products, Chinese Academy of Agricultural Sciences, And Key Laboratory of Agro-food Safety and Quality, Ministry of Agriculture and Rural Affairs, Beijing, 100081, China; National Nanfan Research Institute (Sanya), Chinese Academy of Agricultural Sciences, Sanya, 572024, China.

Institute of Quality Standard and Testing Technology for Agro-products, Chinese Academy of Agricultural Sciences, And Key Laboratory of Agro-food Safety and Quality, Ministry of Agriculture and Rural Affairs, Beijing, 100081, China.

出版信息

Environ Pollut. 2025 Feb 15;367:125559. doi: 10.1016/j.envpol.2024.125559. Epub 2024 Dec 20.

Abstract

The potential health risks of microplastics (MPs) and their combined exposure with heavy metals such as mercury (Hg) in aquatic environment are increasingly concerned recently. In this work, zebrafish embryos were exposed to different levels of polystyrene microplastics (PS-MPs, ∼0.1 μm) coupled with Hg(II) or/and MeHg at 20 μg/L, to investigate the tissue biodistribution and accumulation of PS-MPs and Hg species, and their interaction, as well as embryo toxicity, oxidative stress and metabolic profiles. With zebrafish embryo development, PS-MPs were ingested and then primarily translocated to yolk sac, liver, and intestinal tissues, further acted as a significant vector for improving the bioaccumulation of MeHg vs. Hg(II). Whatever single or combined exposure of PS-MPs and Hg species, embryo disorders, such as delayed hatching, developmental abnormalities, and motor behavioral, and increased oxidative stress indications were obviously found. Herein, PS-MPs + MeHg aggravated oxidative stress compared with MeHg alone, which might been relevant to the high accumulation of Hg level in zebrafish larvae induced by PS-MPs. Non-targeted metabolomics results proved PS-MPs involvement disturbed lipid metabolism, amino acid metabolism, and energy metabolism compared with alone Hg(II) or MeHg exposure, of which excessive energy metabolism by activating the glycolysis process was found in PS-MPs + MeHg treatment. This work reveals the enhancement efficacy of PS-MPs on MeHg induced toxicity and adverse stress, further proving the differentiated effect of elemental chemical forms with microplastics. In the future, elemental species must be considered for the combined toxicity evaluation and ecological risk assessments of microplastics and heavy metals.

摘要

微塑料(MPs)及其在水生环境中与汞(Hg)等重金属的联合暴露对健康的潜在风险近来日益受到关注。在本研究中,将斑马鱼胚胎暴露于不同水平的聚苯乙烯微塑料(PS-MPs,约0.1μm),并添加20μg/L的Hg(II)或/和甲基汞(MeHg),以研究PS-MPs和汞物种在组织中的生物分布与积累、它们之间的相互作用,以及胚胎毒性、氧化应激和代谢谱。随着斑马鱼胚胎发育,PS-MPs被摄入,然后主要转移至卵黄囊、肝脏和肠道组织,进一步成为促进甲基汞相对于Hg(II)生物累积的重要载体。无论PS-MPs和汞物种是单独暴露还是联合暴露,均明显发现胚胎出现紊乱,如孵化延迟、发育异常和运动行为异常,以及氧化应激指标增加。在此,与单独的甲基汞相比,PS-MPs + 甲基汞加剧了氧化应激,这可能与PS-MPs诱导斑马鱼幼体中汞水平的高积累有关。非靶向代谢组学结果证明,与单独暴露于Hg(II)或甲基汞相比,PS-MPs的参与扰乱了脂质代谢、氨基酸代谢和能量代谢,其中在PS-MPs + 甲基汞处理中发现通过激活糖酵解过程导致能量代谢过度。本研究揭示了PS-MPs对甲基汞诱导的毒性和不良应激的增强作用,进一步证明了微塑料与元素化学形态的差异效应。未来,在评估微塑料和重金属的联合毒性及生态风险时,必须考虑元素种类。

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