Abst'/> Comparative toxicities of silver nitrate, silver nanocolloids, and silver chloro-complexes to Japanese medaka embryos, and later effects on population growth rate
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Comparative toxicities of silver nitrate, silver nanocolloids, and silver chloro-complexes to Japanese medaka embryos, and later effects on population growth rate

机译:硝酸银,纳米银胶体和氯银配合物对日本高aka胚胎的比较毒性,以及其后对种群增长率的影响

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摘要

AbstractFish embryo toxicology is important because embryos are more susceptible than adults to toxicants. In addition, the aquatic toxicity of chemicals depends on water quality. We examined the toxicities to medaka embryos of three types of silver—AgNO3, silver nanocolloids (SNCs), and silver ions from silver nanoparticle plates (SNPPs)—under three pH conditions (4.0, 7.0, and 9.0) in embryo-rearing medium (ERM) or ultrapure water. Furthermore, we tested the later-life-stage effects of SNCs on medaka and their population growth. “Later-life-stage effects” were defined here as delayed toxic effects that occurred during the adult stage of organisms that had been exposed to toxicant during their early life stage only. AgNO3, SNCs, and silver ions were less toxic in ERM than in ultrapure water. Release of silver ions from the SNPPs was pH dependent: in ERM, silver toxicity was decreased owing to the formation of silver chloro-complexes. SNC toxicity was higher at pH 4.0 than at 7.0 or 9.0. AgNO3was more toxic than SNCs. To observe later-life effects of SNCs, larvae hatched from embryos exposed to 0.01 mg/L SNCs in ultrapure water were incubated to maturity under clean conditions. The mature medaka were then allowed to reproduce for 21 days. Calculations using survival ratios and reproduction data indicated that the intrinsic population growth rate decreased after exposure of embryos to SNC. SNC exposure reduced the extinction time as a function of the medaka population-carrying capacity.Graphical abstractDisplay OmittedHighlightsAcidic conditions enhanced the toxicity of silver to medaka embryogenesis.Embryo-rearing medium alleviated the toxicity of silver in all tested forms.Silver nanocolloid exposure significantly reduced medaka population growth rates.
机译: 摘要 3 ,银纳米胶体(SNC)和来自银纳米板(SNPP)的银离子。胚胎培养培养基(ERM)或超纯水中的3种pH条件(4.0、7.0和9.0)。此外,我们测试了SNC对medaka及其种群增长的后期生命周期影响。在这里,“生命后期效应”定义为仅在生命早期就暴露于有毒物质的生物体成年期发生的延迟毒性作用。 AgNO 3 ,SNC和银离子在ERM中的毒性小于在超纯水中。从SNPP中释放银离子是pH依赖的:在ERM中,由于形成了氯银络合物,银的毒性降低了。 pH 4.0时SNC的毒性高于7.0或9.0。 AgNO 3 比SNC具有更高的毒性。为了观察SNC的后生效应,将在超纯水中暴露于0.01 mg / L SNC的胚胎中孵化的幼虫孵化至成熟。然后将成熟的高aka繁殖21天。使用存活率和繁殖数据进行的计算表明,将胚胎暴露于SNC后,固有种群增长率下降。 SNC暴露减少了灭绝时间,这是the虫种群承载能力的函数。 < ce:section-title id =“ sectitle0015”>图形摘要 省略显示 亮点 酸性条件增强了银的毒性, medaka胚胎发生。 胚胎-饲养介质可减轻所有测试形式中银的毒性。 银纳米胶体暴露显着降低了med果种群的增长率。

著录项

  • 来源
    《Environmental pollution》 |2018年第2期|1155-1163|共9页
  • 作者单位

    Graduate School of Life Sciences, Toyo University,Research Fellow of Japan Society for the Promotion of Science;

    Department of Life Science, Toyo University;

    Graduate School of Life Sciences, Toyo University;

    Graduate School of Life Sciences, Toyo University;

    Department of Life Science, Toyo University;

    Graduate School of Life Sciences, Toyo University,Research Center for Life and Environmental Sciences, Toyo University;

    Research Center for Life and Environmental Sciences, Toyo University,Faculty of Agriculture, University of the Ryukyus;

    Graduate School of Life Sciences, Toyo University,Research Center for Life and Environmental Sciences, Toyo University;

  • 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

    Embryo; Medaka; Population growth rate; Silver ion; Silver nanocolloid;

    机译:胚胎;Medaka;人口增长率;银离子;银纳米胶体;
  • 入库时间 2022-08-17 13:25:45

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