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首页> 外文期刊>Environmental Pollution >Toxicity of engineered micro- and nanomaterials with antifouling properties to the brine shrimp Artemia salina and embryonic stages of the sea urchin Paracentrotus lividus
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Toxicity of engineered micro- and nanomaterials with antifouling properties to the brine shrimp Artemia salina and embryonic stages of the sea urchin Paracentrotus lividus

机译:具有防污特性的工程化纳米材料对盐水虾卤虫和海胆Paracentrotus lividus胚胎期的毒性

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摘要

Antifouling booster biocides are chemicals used in protective paints to tackle the adhesion of fouling organisms to maritime artificial structures. However, they are also known to exert toxic effects on non target organisms. Recent research developments have highlighted the potential use of engineered microanomaterials (EMNMs) as carriers of antifouling booster biocides in order to control their release and to reduce the harmful effects on living biota. In the present study, we sought to assess the toxicity of two commercially-available booster biocides: (zinc pyrithione (ZnPT) and copper pyrithione (CuPT)); three unloaded engineered microanomaterials (EMNMs); layered double hydroxides (LDH), silica nano capsules (SiNC), polyurea microcapsules (PU);, and six novel EMNMs (loaded with each of the two biocides). The exposure tests were conducted on the larval stage (nauplii) of the brine shrimp Artemia salina and on two embryonic developmental stages of the European purple sea urchin Paracentrotus lividus. The findings indicate that the unloaded LDH and PU (i.e. both biocide-free EMNMs) have non/low toxic effects on both species. The unloaded SiNC, in contrast, exerted a mild toxic effect on the A. salina nauplii and P. lividus embryos. The free biocides presented different toxicity values, with ZnPT being more toxic than CuPT in the P. lividus assays. LDH-based pyrithiones demonstrated lower toxicity compared to the free forms of the state-of-the-art compounds, and constitute good candidates in terms of their antifouling efficacy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:防污助长杀菌剂是用于防护漆中的化学物质,可解决污垢生物与海洋人工结构之间的粘附问题。然而,还已知它们对非靶标生物产生毒性作用。最近的研究进展突显了工程微/纳米材料(EMNMs)作为防污助微生物剂载体的潜在用途,以控制其释放并减少对生物群落的有害影响。在本研究中,我们试图评估两种市售的增强型杀菌剂的毒性:(巯氧吡啶锌(ZnPT)和巯氧吡啶铜(CuPT));三个卸载的工程微/纳米材料(EMNM);层状双氢氧化物(LDH),二氧化硅纳米囊(SiNC),聚脲微囊(PU);和六个新型EMNM(两种杀生物剂均载有)。在盐水虾卤虫盐沼的幼体阶段(无节幼体)和欧洲紫海胆Paracentrotus lividus的两个胚胎发育阶段进行了暴露测试。研究结果表明,未装载的LDH和PU(即两种不含杀生物剂的EMNMs)对这两种物种均具有非毒性/低毒性。相比之下,空载的SiNC对盐沼无节肢动物和lividus胚胎具有轻度的毒性作用。游离杀生物剂表现出不同的毒性值,在青枯菌检测中,ZnPT比CuPT毒性更大。基于LDH的巯氧吡啶酮与游离形式的现有技术化合物相比,显示出较低的毒性,并且就其防污功效而言是很好的候选者。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2019年第8期|530-537|共8页
  • 作者单位

    Tel Aviv Univ, George S Wise Fac Life Sci, Sch Zool, IL-66978 Tel Aviv, Israel|Interuniv Inst Marine Sci Eilat, Elat, Israel;

    Univ Aveiro, Dept Biol, P-3810193 Aveiro, Portugal|Univ Aveiro, CESAM, P-3810193 Aveiro, Portugal;

    Smallmatek Small Mat & Technol Lda, Rua Canhas, P-3810075 Aveiro, Portugal;

    Smallmatek Small Mat & Technol Lda, Rua Canhas, P-3810075 Aveiro, Portugal;

    Interuniv Inst Marine Sci Eilat, Elat, Israel|Univ Haifa, Leon H CharneySch Marine Sci, Dept Marine Biol, MorrisKahn Marine Res Stn, Haifa, Israel;

    Tel Aviv Univ, George S Wise Fac Life Sci, Sch Zool, IL-66978 Tel Aviv, Israel;

    Univ Aveiro, Dept Mat & Ceram Engn, CICECO Aveiro Inst Mat, P-3810193 Aveiro, Portugal;

    Tel Aviv Univ, George S Wise Fac Life Sci, Sch Zool, IL-66978 Tel Aviv, Israel;

  • 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

    Fouling; Engineered microanomaterials (EMNMs); Layered double hydroxides (LDH); Silica mesoporous nanocapsules (SiNC); Polyurea microcapsules (PU); Pyrithione;

    机译:结垢;工程微/纳米材料(EMNMs);层状双氢氧化物(LDH);二氧化硅介孔纳米胶囊(SiNC);聚脲微胶囊(PU);吡啶酮;

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