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首页> 外文期刊>Environmental Science: Nano >Mass spectrometry-based metabolomics to assess uptake of silver nanoparticles by Arabidopsis thaliana
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Mass spectrometry-based metabolomics to assess uptake of silver nanoparticles by Arabidopsis thaliana

机译:基于质谱的代谢组科评估拟南芥银纳米粒子的吸收

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摘要

Silver nanoparticles (AgNPs) are one of the most commonly utilized engineered nanomaterials in consumer products due to their antimicrobial properties. AgNPs can be introduced into the environment when products containing AgNPs are disposed of in landfills, or leach out from products during Washing, eventually reaching wastewater treatment plants. Hence, the usage of reclaimed water can lead to the unintentional exposure of different biological organisms to AgNPs. In addition, biosolids from wastewater treatment plants may contain AgNPs that can end up in the environment when the biosolids are land-applied to fertilize fields. In this study, the impact of citrate- and polyvinylpyrolidone-coated AgNPs on a model plant, Arabidopsis thaliana, was investigated using hydroponic cultures to quantitatively evaluate plant uptake of AgNPs, and to demonstrate the use of a metabolomics approach in assessing sub-lethal effects of AgNPs on plants. Analysis of AgNPs was performed using inductively coupled plasma mass spectrometry (ICP-MS) to quantify total silver concentrations in plant tissues, and metabolite profiling was achieved using liquid chromatography quadrupole time-of-flight mass spectrometry (LC-QToF/MS). Results show silver translocation from roots of Arabidopsis thaliana to leaves and flowering shoots in all plants treated with AgNPs. Furthermore, untargeted and targeted metabolomics results show alterations in the metabolome after treatment, as well as the accumulation of specific phytosphingosines and N-acylethanolamines in silver treated Arabidopsis thaliana. Correlating the silver concentrations in Arabidopsis thaliana and the changes in metabolite profile may provide insights on the mechanism and interactions between nanomaterials and biological organisms. This study lays the groundwork and provides a proof-of-concept on the utilization of mass spectrometry-based metabolomics as a tool for determining the biochemical effects of nanoparticles at sub-lethal concentrations in Arabidopsis thaliana.
机译:由于其抗微生物性质,银纳米颗粒(AgNP)是消费产品中最常用的工程纳米材料之一。当含有AgNP的产品处于垃圾填埋场中的产品,或在洗涤过程中从产品中浸出时,可以引入agnps,最终到达废水处理厂。因此,再生水的用法可以导致不同的生物体对agnps的无意暴露。此外,废水处理植物的生物糖可含有agnps,当生物杀死土地适用于施肥场时,可以在环境中最终达到agnps。在本研究中,使用水培培养物研究了柠檬酸盐和聚乙烯醇吡咯烷酮涂覆的agnps对模型植物拟南芥拟南芥的影响,以定量评估植物摄取agnps,并证明代谢组种方法在评估亚致死作用时使用植物agnps。使用电感耦合等离子体质谱(ICP-MS)进行AgNP分析,以量化植物组织中的总银浓度,并且使用液相色谱法(LC-QTOF / MS)使用液相色谱法达到代谢物分析。结果显示拟南芥根源的银色易位在用agnps治疗的所有植物中留下和开花芽。此外,未明确的和靶向的代谢组合结果显示治疗后代谢物中的改变,以及在银治疗的拟南芥中的特定植物磷苷和N-酰基乙醇胺的积累。将拟南芥中的银浓度与代谢物型材的变化相关,可以对纳米材料和生物生物之间的机制和相互作用提供见解。本研究奠定了基础作业,并提供了利用基于质谱的代谢组学的概念证据,作为确定纳米颗粒在拟南芥亚麻浓度下纳米颗粒的生物化学作用的工具。

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  • 来源
    《Environmental Science: Nano 》 |2017年第10期| 共10页
  • 作者单位

    Department of Chemistry University at Buffalo The State University of New York Buffalo NY 14220 USA.;

    Department of Chemistry University at Buffalo The State University of New York Buffalo NY 14220 USA.;

    Department of Biological Sciences University at Buffalo The State University of New York Buffalo NY 14220 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学 ;
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