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Time-course profiling of molecular stress responses to silver nanoparticles in the earthworm Eisenia fetida

机译:fEisenia fetida对银纳米颗粒的分子应力响应的时程分布

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摘要

The molecular mechanism of silver nanoparticle (AgNP) toxicity, particularly its temporal aspect, is currently limited in the literature. This study seeks to identify and profile changes in molecular response patterns over time during soil exposure of the earthworm Eisenia fetida to AgNPs (82 ± 27 nm) with reference to dissolved silver salt (AgNO_3). Principal component analysis of selected gene and enzyme response profiles revealed dissimilar patterns between AgNO_3 and AgNP treatments and also over time. Despite the observed difference in molecular profiles, the body burdens of total Ag were within the same range (10-40 mg/kg dry weight worm) for both treatments with apparent correlation to the induction pattern of metallothionein. AgNO_3 induced the genes and enzymes related to oxidative stress at day 1, after which markers of energy metabolism were all suppressed at day 2. Exposure to AgNPs likewise led to induction of oxidative stress genes at day 2, but with a temporal pattern shift to immune genes at day 14 following metabolic upregulation at day 7. The involvement of oxidative stress and subsequent alterations in immune gene regulation were as predicted by our in vitro study reported previously, highlighting the importance of immunological endpoints in nanosilver toxicity.
机译:银纳米颗粒(AgNP)毒性的分子机制,特别是其时间方面,目前在文献中受到限制。这项研究旨在识别和描述f虫在土壤中暴露于AgNPs(82±27 nm)时,相对于溶解的银盐(AgNO_3)的分子响应模式随时间的变化并进行剖析。所选基因和酶反应谱的主成分分析表明,AgNO_3和AgNP处理之间的模式不同,而且随着时间的推移也有所不同。尽管观察到分子轮廓上的差异,但两种处理的总银的身体负荷都在相同范围内(10-40 mg / kg干重蠕虫),与金属硫蛋白的诱导方式明显相关。 AgNO_3在第1天诱导了与氧化应激相关的基因和酶,此后在第2天能量代谢的标志物均被抑制。暴露于AgNPs同样在第2天诱导了氧化应激基因的诱导,但时间模式向免疫转变在第7天的代谢上调后的第14天,这些基因被氧化。氧化应激的参与和免疫基因调控的后续变化如我们先前报道的体外研究所预测的那样,突显了免疫学终点在纳米银毒性中的重要性。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2013年第1期|219-226|共8页
  • 作者单位

    Department of Bioscience-Terrestrial Ecology, Aarhus University, Vejlsovej 25, DK-8600 Silkeborg, Denmark,INANO Interdisciplinary Nanoscience Center, Aarhus University, Custav Wieds Vej 14, DK-8000 Aarhus C, Denmark;

    Department of Bioscience-Terrestrial Ecology, Aarhus University, Vejlsovej 25, DK-8600 Silkeborg, Denmark;

    Department of Bioscience-Terrestrial Ecology, Aarhus University, Vejlsovej 25, DK-8600 Silkeborg, Denmark;

    Department of Bioscience-Terrestrial Ecology, Aarhus University, Vejlsovej 25, DK-8600 Silkeborg, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);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 nanoparticle; Time-course; Oxidative stress; Immunity; In vivo; Metallothionein;

    机译:银纳米粒子;时间课程;氧化应激免疫;体内;金属硫蛋白;

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