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不同粒径、包覆物和浓度的银纳米颗粒处理下的莴苣对银的吸收、转运和配体。

Uptake, translocation and ligand of silver in Lactuca sativa exposed to silver nanoparticles of different size, coatings and concentration.

机构信息

Department of Chemistry, University of Girona, C/M.Aurèlia Capmany 69, 17003 Girona, Spain.

Department of Chemistry, University of Girona, C/M.Aurèlia Capmany 69, 17003 Girona, Spain.

出版信息

J Hazard Mater. 2020 Feb 15;384:121201. doi: 10.1016/j.jhazmat.2019.121201. Epub 2019 Sep 12.

Abstract

The broad use of silver nanoparticles (AgNPs) in daily life products enhances their possibilities to reach the environment. Therefore, it is important to understand the uptake, translocation and biotransformation in plants and the toxicological impacts derived from these biological processes. In this work, Lactuca sativa (lettuce) was exposed during 9 days to different coated (citrate, polyvinylpyrrolidone, polyethylene glycol) and sized (60, 75, 100 nm) AgNPs at different concentrations (1, 3, 5, 7, 10, 15 mg L). Total silver measurements in lettuce roots indicated that accumulation of AgNPs is influenced by size and concentration, but not by nanoparticle coating. On the other hand, nanosilver translocation to shoots was more pronounced for neutral charged and large sized NPs at higher NP concentrations. Single particle inductively coupled plasma mass spectrometry analysis, after an enzymatic digestion of lettuce tissues indicated the dissolution of some NPs. Ag K-edge X-ray absorption spectroscopy analysis corroborated the AgNPs dissolution due to the presence of less Ag-Ag bonds and appearance of Ag-O and/or Ag-S bonds in lettuce roots. Toxicological effects on lettuces were observed after exposure to nanosilver, especially for transpiration and stomatal conductance. These findings indicated that AgNPs can enter to edible plants, exerting toxicological effects on them.

摘要

银纳米粒子(AgNPs)在日常生活产品中的广泛应用增加了它们进入环境的可能性。因此,了解 AgNPs 在植物中的摄取、转运和生物转化,以及这些生物过程所带来的毒理学影响,是非常重要的。在这项工作中,莴苣(生菜)在 9 天内分别暴露于不同包覆(柠檬酸盐、聚乙烯吡咯烷酮、聚乙二醇)和粒径(60、75、100nm)的 AgNPs 中,浓度分别为 1、3、5、7、10、15mg/L。莴苣根部的总银测量表明,AgNPs 的积累受粒径和浓度的影响,但不受纳米颗粒包覆的影响。另一方面,在较高的 NP 浓度下,带中性电荷和较大粒径的纳米银向茎叶的转运更为明显。在对莴苣组织进行酶消化后,采用单颗粒电感耦合等离子体质谱分析,表明一些 NPs 发生了溶解。Ag K 边 X 射线吸收光谱分析证实了 AgNPs 的溶解,因为在莴苣根部出现了较少的 Ag-Ag 键和 Ag-O 和/或 Ag-S 键。在暴露于纳米银后,莴苣表现出了毒性效应,特别是在蒸腾作用和气孔导度方面。这些发现表明,AgNPs 可以进入可食用植物,并对其产生毒理学影响。

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