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代谢组学和生物化学紊乱揭示了环境微塑料和苯并[a]芘对海洋多毛类动物沙蚕(Hediste diversicolor)的毒性。

Metabolomic and biochemical disorders reveal the toxicity of environmental microplastics and benzo[a]pyrene in the marine polychaete Hediste diversicolor.

机构信息

Laboratory of Agrobiodiversity and Ecotoxicology, Higher Institute of Agronomy, University of Sousse, Sousse, Tunisia; Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy; Higher Institute of Biotechnology, University of Monastir, Monastir, Tunisia.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy.

出版信息

J Hazard Mater. 2024 Sep 15;477:135404. doi: 10.1016/j.jhazmat.2024.135404. Epub 2024 Aug 2.

Abstract

Recently, the abundance of environmental microplastics (MPs) has become a global paramount concern. Besides the danger of MPs for biota due to their tiny size, these minute particles may act as vectors of other pollutants. This study focused on evaluating the toxicity of environmentally relevant concentrations of MPs (10 and 50 mg/kg sediment) and benzo[a]pyrene (B[a]P, 1 µg/kg sediment), alone and in mixture, for 3 and 7 days in marine polychaete Hediste diversicolor, selected as a benthic bioindicator model. The exposure period was sufficient to confirm the bioaccumulation of both contaminants in seaworms, as well as the potential capacity of plastic particles to adsorb and vehiculate the B[a]P. Interestingly, increase of acidic mucus production was observed in seaworm tissues, indicative of a defense response. The activation of oxidative system pathways was demonstrated as a strategy to prevent lipid peroxidation. Furthermore, the comprehensive Nuclear Magnetic Resonance (NMR)-based metabolomics revealed significant disorders in amino acids metabolism, osmoregulatory process, energetic components, and oxidative stress related elements. Overall, these findings proved the possible synergic harmful effect of MPs and B[a]P even in small concentrations, which increases the concern about their long-term presence in marine ecosystems, and consequently their transfer and repercussions on marine fauna.

摘要

最近,环境中微塑料(MPs)的丰度成为了一个全球性的首要关注点。除了由于其微小尺寸而对生物群产生的 MPs 危险之外,这些微小颗粒还可能成为其他污染物的载体。本研究重点评估了环境相关浓度的 MPs(10 和 50 mg/kg 沉积物)和苯并[a]芘(B[a]P,1 µg/kg 沉积物),单独和混合,在海洋多毛类 Hediste diversicolor 中暴露 3 和 7 天的毒性,Hediste diversicolor 被选为底栖生物指示剂模型。暴露期足以确认两种污染物在海虫体内的生物累积,以及塑料颗粒吸附和运载 B[a]P 的潜在能力。有趣的是,观察到海虫组织中酸性粘液的产生增加,表明存在防御反应。氧化系统途径的激活被证明是防止脂质过氧化的一种策略。此外,基于全面的核磁共振(NMR)代谢组学揭示了氨基酸代谢、渗透调节过程、能量成分和与氧化应激相关元素的显著紊乱。总的来说,这些发现证明了 MPs 和 B[a]P 即使在小浓度下也可能产生协同的有害影响,这增加了人们对它们在海洋生态系统中长期存在的担忧,以及它们对海洋动物的转移和影响。

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