首页> 外文期刊>Environmental toxicology and chemistry >EFFECTS FROM FILTRATION, CAPPING AGENTS, AND PRESENCE/ABSENCE OF FOOD ON THE TOXICITY OF SILVER NANOPARTICLES TO DAPHNIA MAGNA
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EFFECTS FROM FILTRATION, CAPPING AGENTS, AND PRESENCE/ABSENCE OF FOOD ON THE TOXICITY OF SILVER NANOPARTICLES TO DAPHNIA MAGNA

机译:过滤,上盖剂和食物的存在/缺失对银纳米颗粒对大PH虫的毒性的影响

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摘要

Relatively little is known about the behavior and toxicity of nanoparticles in the environment. Objectives of work presented here include establishing the toxicity of a variety of silver nanoparticles (AgNPs) to Daphnia magna neonates, assessing the applicability of a commonly used bioassay for testing AgNPs, and determining the advantages and disadvantages of multiple characterization techniques for AgNPs in simple aquatic systems. Daphnia magna were exposed to a silver nitrate solution and AgNPs suspensions including commercially available AgNPs (uncoated and coated), and laboratory-synthesized AgNPs (coated with coffee or citrate). The nanoparticle suspensions were analyzed for silver concentration (microwave acid digestions), size (dynamic light scattering and electron microscopy), shape (electron microscopy), surface charge (zeta potentiometer), and chemical speciation (X-ray absorption spectro-scopy, X-ray diffraction). Toxicities of filtered (100nm) versus unfiltered suspensions were compared. Additionally, effects from addition of food were examined. Stock suspensions were prepared by adding AgNPs to moderately hard reconstituted water, which were then diluted and used straight or after filtration with 100-nm filters. All nanoparticle exposure suspensions, at every time interval, were digested via microwave digester and analyzed by inductively coupled argon plasma-optical emission spectroscopy or graphite furnace-atomic absorption spectroscopy. Dose-response curves were generated and median lethal concentration (LC50) values calculated. The LC50 values for the unfiltered particles were (in μg/L): 1.1 ± 0.1-AgNO_3; 1.0 ± 0.1-coffee coated; 1.1 ± 0.2-citrate coated; 16.7 ± 2.4 Sigma Aldrich Ag-nanoparticles (SA) uncoated; 31.5 ±8.1 SA coated. LC50 values for the filtered particles were (in μg/L): 0.7 ±0.1-AgNO_3; 1.4±0.1-SA uncoated; 4.4 ± 1.4-SA coated. The LC50 resulting from the addition of food was 176.4 ±25.5-SA coated. Recommendations presented in this study include AgNP handling methods, effects from sample preparation, and advantages/ disadvantages of different nanoparticle characterization techniques.
机译:关于纳米粒子在环境中的行为和毒性的了解相对较少。本文介绍的工作目标包括确定各种银纳米颗粒(AgNPs)对大型蚤(Daphnia magna)新生儿的毒性,评估常用的生物测定方法来测试AgNPs的适用性,以及确定多种表征技术在简单水产养殖中对AgNPs的优缺点。系统。将大型蚤(Daphnia magna)暴露于硝酸银溶液和AgNPs悬浮液中,其中包括市售的AgNP(未涂覆和涂覆),以及实验室合成的AgNP(涂覆有咖啡或柠檬酸盐)。分析了纳米颗粒悬浮液的银浓度(微波酸消解),大小(动态光散射和电子显微镜),形状(电子显微镜),表面电荷(ζ电位计)和化学形态(X射线吸收光谱,X) -射线衍射)。比较了过滤后的(100nm)和未过滤的悬浮液的毒性。此外,还检查了添加食物的影响。通过将AgNPs添加到中等硬度的水中制备储备悬浮液,然后将其稀释并直接使用或在100-nm滤膜过滤后使用。在每个时间间隔,通过微波消解器消化所有纳米颗粒暴露的悬浮液,并通过电感耦合氩等离子体光发射光谱法或石墨炉原子吸收光谱法进行分析。产生剂量反应曲线并计算中值致死浓度(LC50)值。未过滤颗粒的LC50值为(μg/ L):1.1±0.1-AgNO_3; 1.0±0.1咖啡涂层; 1.1±0.2柠檬酸盐涂层; 16.7±2.4 Sigma Aldrich Ag-纳米颗粒(SA)无涂层; 31.5±8.1 SA涂层过滤后的颗粒的LC50值为(μg/ L):0.7±0.1-AgNO_3; 1.4±0.1-SA无涂层4.4±1.4-SA涂层通过添加食物得到的LC50为176.4±25.5-SA包被。本研究提出的建议包括AgNP处理方法,样品制备的效果以及不同纳米颗粒表征技术的优缺点。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2010年第12期|p.2742-2750|共9页
  • 作者单位

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio;

    Shaw Environmental and Infrastructure,U.S. EPA Test & Evaluation Facility, Cincinnati, Ohio;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio;

    Lakeshore Engineering Services, U.S. EPA Test & Evaluation Facility, Cincinnati, Ohio;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio;

    Pegasus Technical Services, 46 East Hollister Street, Cincinnati, Ohio, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    silver; nanoparticles; daphnia magna; aquatic toxicity;

    机译:银;纳米粒子水蚤水生毒性;

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