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量化颗粒态银和溶解态银对银纳米线毒性和植物吸收动力学的相对贡献:粒径和包覆物的影响。

Quantifying the relative contribution of particulate versus dissolved silver to toxicity and uptake kinetics of silver nanowires in lettuce: impact of size and coating.

机构信息

Institute of Environmental Sciences (CML), Leiden University, Leiden, The Netherlands.

Leiden University College, Leiden University, Leiden, The Netherlands.

出版信息

Nanotoxicology. 2020 Dec;14(10):1399-1414. doi: 10.1080/17435390.2020.1831639. Epub 2020 Oct 19.

Abstract

Functionalized high-aspect-ratio silver nanowires (AgNWs) have been recognized as one of the most promising alternatives for fabricating products, with their use ranging from electronic devices to biomedical fields. Given concerns on the safety of AgNWs, there is an urgent need to investigate the relation between intrinsic properties of AgNWs and their toxicity. In this study, lettuce was exposed for either 6 or 18 d to different AgNWs to determine how the size/aspect ratio and coating of AgNWs affect the contributions of the dissolved and particulate Ag to the overall phytotoxicity and uptake kinetics. We found that the uncoated AgNW (39 nm diameter × 8.4 µm length) dissolved fastest of all AgNWs investigated. The phytotoxicity, uptake rate constants, and bioaccumulation factors of the PVP-coated AgNW (43 nm diameter × 1.8 µm length) and the uncoated AgNW (39 nm diameter × 8.4 µm length) were similar, and both were higher than that of the PVP-coated AgNW with the larger diameter(65 nm diameter × 4.4 µm length). These results showed that the diameter of the AgNWs predominantly affected toxicity and Ag accumulation in plants. Particulate Ag was found to be the predominant driver/descriptor of overall toxicity and Ag accumulation in the plants rather than dissolved Ag for all AgNWs tested. The relative contribution of dissolved versus particulate Ag to the overall effects was influenced by the exposure concentration and the extent of dissolution of AgNWs. This work highlights inherent particulate-dependent effects of AgNWs in plants and suggests that toxicokinetics should explicitly be considered for more nanomaterials and organisms, consequently providing more realistic input information for their environmental risk assessment.

摘要

功能化高长径比银纳米线(AgNWs)已被认为是最有前途的替代产品之一,其应用范围从电子设备到生物医学领域。鉴于对 AgNWs 安全性的关注,迫切需要研究 AgNWs 的内在特性与其毒性之间的关系。在这项研究中,生菜分别暴露于不同的 AgNWs 中 6 或 18 天,以确定 AgNWs 的尺寸/长径比和涂层如何影响溶解态和颗粒态 Ag 对整体植物毒性和吸收动力学的贡献。我们发现,在所研究的所有 AgNWs 中,未涂层的 AgNW(39nm 直径×8.4µm 长度)溶解最快。PVP 涂层的 AgNW(43nm 直径×1.8µm 长度)和未涂层的 AgNW(39nm 直径×8.4µm 长度)的植物毒性、吸收速率常数和生物累积因子相似,均高于直径较大的 PVP 涂层的 AgNW(65nm 直径×4.4µm 长度)。这些结果表明,AgNWs 的直径主要影响植物的毒性和 Ag 积累。对于所有测试的 AgNWs,发现颗粒态 Ag 是整体毒性和植物中 Ag 积累的主要驱动因素/描述符,而不是溶解态 Ag。溶解态 Ag 与颗粒态 Ag 对整体效应的相对贡献受暴露浓度和 AgNWs 溶解程度的影响。这项工作突出了 AgNWs 在植物中固有的基于颗粒的效应,并表明对于更多的纳米材料和生物体,毒代动力学应该明确考虑,从而为它们的环境风险评估提供更现实的输入信息。

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