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Toxicity of Oxidatively Degraded Quantum Dots to Developing Zebrafish (Danio rerio)

机译:氧化降解量子点对发育中的斑马鱼的毒性

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摘要

Once released into the environment, engineered nanoparticles (eNPs) are subjected to processes that may alter their physical or chemical properties, potentially altering their toxicity vis-a-vis the as-synthesized materials. We examined the toxicity to zebrafish (Danio rerio) embryos of CdSe_(core)/ZnS_(shell) quantum dots (QDs) before and after exposure to an in vitro chemical model designed to simulate oxidative weathering in soil environments based on a reductant-driven Fenton's reaction. Exposure to these oxidative conditions resulted in severe degradation of the QDs: the Zn shell eroded, Cd~(2+) and selenium were released, and amorphous Se-containing aggregates were formed. Products of QD weathering exhibited higher potency than did as-synthesized QDs. Morphological endpoints of toxicity included pericardia!, ocular and yolk sac edema, nondepleted yolk, spinal curvature, tail malformations, and craniofacial malformations. To better understand the selenium-like toxicity observed in QD exposures, we examined the toxicity of selenite, selenate, and amorphous selenium nanoparticles (SeNPs). Selenite exposures resulted in high mortality to embryos/larvae while selenate and SeNPs were nontoxic. Co-exposures to SeNPs + CdCl_2 resulted in dramatic increase in mortality and recapitulated the morphological endpoints of toxicity observed with exposure to products of QD weathering. Cadmium body burden was increased in larvae exposed to weathered QDs or SeNP + CdCl_2 suggesting the increased potency of products of QD weathering was due to selenium modulation of cadmium toxicity. Our findings highlight the need to examine the toxicity of eNPs after they have undergone environmental weathering processes.
机译:工程化的纳米颗粒(eNPs)释放到环境中后,会经历可能会改变其物理或化学性质的过程,从而有可能改变其相对于合成材料的毒性。我们研究了CdSe_(核心)/ ZnS_(壳)量子点(QDs)对斑马鱼(Danio rerio)胚胎的毒性,暴露于体外化学模型之前和之后,该模型旨在模拟基于还原剂驱动的土壤环境中的氧化风化芬顿的反应。暴露于这些氧化条件导致量子点的严重降解:锌壳被腐蚀,Cd〜(2+)和硒被释放,并形成非晶态的含硒聚集体。 QD风化产物比合成QD表现出更高的效力。毒性的形态学终点包括心包,眼和卵黄囊水肿,未消耗的卵黄,脊柱弯曲,尾巴畸形和颅面畸形。为了更好地了解在QD暴露中观察到的类似硒的毒性,我们检查了亚硒酸盐,硒酸盐和无定形硒纳米颗粒(SeNPs)的毒性。亚硒酸盐的暴露导致胚胎/幼虫的高死亡率,而硒酸盐和SeNPs无毒。共同暴露于SeNPs + CdCl_2导致死亡率急剧增加,并概括了暴露于QD风化产物时观察到的毒性形态学终点。暴露于风化QD或SeNP + CdCl_2的幼虫中镉的身体负担增加,这表明QD风化产物的效力增加是由于硒对镉毒性的调节。我们的发现突出表明,在经过环境风化过程后,有必要检查eNP的毒性。

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  • 来源
    《Environmental Science & Technology》 |2013年第16期|9132-9139|共8页
  • 作者单位

    Molecular and Environmental Toxicology Center;

    Environmental Chemistry and Technology Program,Department of Chemistry, Albion College, Albion, MI;

    Molecular and Environmental Toxicology Center,Department of Biology, University of Wisconsin - La Crosse, La Crosse, WI.;

    Department of Chemistry,AkzoNobel, Brewster, NY;

    Department of Chemistry;

    Department of Chemistry;

    Molecular and Environmental Toxicology Center,School of Pharmacy;

    Molecular and Environmental Toxicology Center,School of Pharmacy;

    Molecular and Environmental Toxicology Center,Environmental Chemistry and Technology Program,Department of Chemistry,Department of Soil Science, University of Wisconsin, Madison, Wisconsin 53706, United States;

  • 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

  • 入库时间 2022-08-17 14:02:09

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