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首页> 外文期刊>Mutagenesis >Influence of dispersion medium on nanomaterial-induced pulmonary inflammation and DNA strand breaks: investigation of carbon black, carbon nanotubes and three titanium dioxide nanoparticles
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Influence of dispersion medium on nanomaterial-induced pulmonary inflammation and DNA strand breaks: investigation of carbon black, carbon nanotubes and three titanium dioxide nanoparticles

机译:分散介质对纳米材料诱导的肺炎症和DNA链的影响:炭黑,碳纳米管和三钛二氧化钛纳米粒子的研究

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摘要

Intratracheal instillation serves as a model for inhalation exposure. However, for this, materials are dispersed in appropriate media that may influence toxicity. We tested whether different intratracheal instillation dispersion media influence the pulmonary toxicity of different nanomaterials. Rodents were intratracheally instilled with 162 A mu g/mouse/1620 A mu g/rat carbon black (CB), 67 A mu g/mouse titanium dioxide nanoparticles (TiO2) or 54 A mu g/mouse carbon nanotubes (CNT). The dispersion media were as follows: water (CB, TiO2); 2% serum in water (CB, CNT, TiO2); 0.05% serum albumin in water (CB, CNT, TiO2); 10% bronchoalveolar lavage fluid in 0.9% NaCl (CB), 10% bronchoalveolar lavage (BAL) fluid in water (CB) or 0.1% Tween-80 in water (CB). Inflammation was measured as pulmonary influx of neutrophils into bronchoalveolar fluid, and DNA damage as DNA strand breaks in BAL cells by comet assay. Inflammation was observed for all nanomaterials (except 38-nm TiO2) in all dispersion media. For CB, inflammation was dispersion medium dependent. Increased levels of DNA strand breaks for CB were observed only in water, 2% serum and 10% BAL fluid in 0.9% NaCl. No dispersion medium-dependent effects on genotoxicity were observed for TiO2, whereas CNT in 2% serum induced higher DNA strand break levels than in 0.05% serum albumin. In conclusion, the dispersion medium was a determinant of CB-induced inflammation and genotoxicity. Water seemed to be the best dispersion medium to mimic CB inhalation, exhibiting DNA strand breaks with only limited inflammation. The influence of dispersion media on nanomaterial toxicity should be considered in the planning of intratracheal investigations.
机译:肿瘤内滴注用作吸入暴露的模型。然而,为此,材料分散在可能影响毒性的适当培养基中。我们测试了不同的肿瘤内滴注分散介质是否影响不同纳米材料的肺毒性。啮齿动物用162A mu g /小鼠/ 1620 a mu g /大鼠炭黑(cb),67A mu g /小鼠二氧化钛纳米颗粒(TiO 2)或54 a mu g /小鼠碳纳米管(cnt),啮齿动物滴注。分散介质如下:水(Cb,TiO 2);水中的2%血清(CB,CNT,TiO2); 0.05%血清白蛋白在水中(CB,CNT,TiO 2); 10%支气管肺泡灌洗液在0.9%NaCl(Cb),10%支气管肺泡灌洗液(BAL)液体(Cb)或水中0.1%Tween-80(Cb)。炎症被测量为嗜中性粒细胞的肺进入支气管肺泡流体,并且DNA损伤作为DNA链通过彗星测定在BAL细胞中断裂。在所有分散培养基中对所有纳米材料(38-NM TiO 2除外)观察到炎症。对于CB,炎症是分散介质依赖性的。仅在0.9%NaCl中的水,2%血清和10%BAL流体中观察到CB的DNA链中的DNA链裂缝水平增加。对于TiO 2,观察到对基因毒性的分散介质依赖性作用,而2%血清中的CNT诱导比0.05%血清白蛋白在0.05%血清白蛋白中较高的DNA链断裂。总之,分散介质是CB诱导的炎症和遗传毒性的决定因素。水似乎是最佳的分散介质,用于模拟CB吸入,表现出DNA链的炎症,只有有限的炎症。在肿瘤内调查的规划中,应考虑分散培养基对纳米材料毒性的影响。

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  • 来源
    《Mutagenesis》 |2017年第6期|共17页
  • 作者单位

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Nofer Inst Occupat Med Dept Toxicol &

    Carcinogenesis 8 Teresy St PL-91348 Lodz Poland;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

    Natl Res Ctr Working Environm Lerso Pk Alle 105 DK-2100 Copenhagen Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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