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纳米材料富勒烯和纳米银对多毛纲沙蚕属(沙蚕科)和生活在其表面的细菌群落的毒理学效应。

Toxicological effects induced by the nanomaterials fullerene and nanosilver in the polychaeta Laeonereis acuta (Nereididae) and in the bacteria communities living at their surface.

机构信息

Instituto de Ciências Biológicas (ICB), Universidade Federal do Rio Grande - FURG, Rio Grande, Brazil.

出版信息

Mar Environ Res. 2013 Aug;89:53-62. doi: 10.1016/j.marenvres.2013.05.002. Epub 2013 May 13.

Abstract

Fullerene (nC60) and nanosilver (nAg) are nanomaterials with bactericide properties. The increments in their use raise questions about their potential environmental impacts, including estuarine ones. The polychaete Laeonereis acuta (Nereididae) secretes mucus that is colonized by bacteria communities. We analyzed the antioxidant and oxidative damage responses of anterior, middle and posterior region of L. acuta and bacteria communities after nC60 or nAg exposure during 24 h. Molecular analysis showed a prevalence of Vibrio genera in the communities. Bacteria biomass was lowered in worms exposed to 1.0 mg/L of nAg. nC60 reduced total antioxidant capacity of bacteria from worms exposed to 0.1 mg/L. Worms anterior region presented lower antioxidant capacity after exposure to 1.0 mg nC60/L, and the same was observed in the posterior region of worms exposed to 1.0 mg nAg/L. Lipid peroxidation was reduced in the anterior region of worms exposed to nC60 and the opposite was observed in the posterior region.

摘要

富勒烯(nC60)和纳米银(nAg)是具有杀菌性能的纳米材料。它们的使用量不断增加,引发了人们对其潜在环境影响的关注,包括对河口环境的影响。沙蚕(Nereididae 科)分泌的黏液会被细菌群落定植。我们分析了在 24 小时内暴露于 nC60 或 nAg 后,沙蚕前部、中部和后部区域以及细菌群落的抗氧化和氧化损伤反应。分子分析显示,在这些群落中,弧菌属普遍存在。暴露于 1.0mg/L nAg 的蠕虫中细菌生物量降低。nC60 降低了暴露于 0.1mg/L nC60 的蠕虫中细菌的总抗氧化能力。暴露于 1.0mg nC60/L 的沙蚕前部区域的抗氧化能力降低,而暴露于 1.0mg nAg/L 的沙蚕后部区域则出现了同样的情况。暴露于 nC60 的沙蚕前部区域的脂质过氧化作用减少,而暴露于 nAg 的沙蚕后部区域则出现了相反的情况。

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