首页> 外文期刊>Environmental Pollution >Toxicological appraisal of the chemical fractions of ambient fine (PM_(2.5-0.3)) and quasi-ultrafine (PM_(0.3)) particles in human bronchial epithelial BEAS-2B cells
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Toxicological appraisal of the chemical fractions of ambient fine (PM_(2.5-0.3)) and quasi-ultrafine (PM_(0.3)) particles in human bronchial epithelial BEAS-2B cells

机译:毒理学评估的环境细粒(PM_(2.5-0.3))和人支气管上皮BEA-2B细胞中的准超细(PM_(0.3))颗粒

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摘要

New toxicological research is still urgently needed to improve the current knowledge about the induction of some underlying mechanisms of toxicity by the different chemical fractions of ambient particulate matter (PM). This in vitro study sought also to better evaluate and compare the respective toxicities of fine particles (PM2.5-0.3) and their inorganic and organic chemical fractions, and the respective toxicities of the organic chemical fractions of PM2.5-0.3 and quasi-ultrafine particles (PM0.3). Human bronchial epithelial BEAS-2B cells were also exposed for 6-48 h to relatively low doses of PM2.5-0.3 and their organic extractable (OEM2.5-0.3) and non-extractable (NEM2.5-0.3) fractions, and the organic extractable fraction (OEM0.3) of PM0.3. We reported that not only PM2.5-0.3, but also, to a lesser extent, its inorganic chemical fraction, NEM2.5-0.3, and organic chemical fraction, OEM2.5-0.3, were able to significantly induce ROS overproduction and oxidative damage notwithstanding the early activation of NRF2 signaling pathway. Moreover, for any exposure, inflammatory and apoptotic events were noticed. Similar results were observed in BEAS-2B cells exposed to OEM0.3, rich of polycyclic aromatic hydrocarbons and their nitrated and oxygenated derivatives. In BEAS-2B cells exposed for 24 and 48 h to OEM2.5-0.3 and OEM0.3, to a higher extent, there was an alteration of the levels of some critical proteins even though crucial for the autophagy rather than a real reduction of autophagy. It is noteworthy that the toxicological effects were equal or mostly higher in BEAS-2B cells exposed for 6 and/or 24 h to PM2.5-0.3 from those exposed to NEM2.5-0.3 or OEM2.5-0.3, and in BEAS-2B cells exposed for 6 and/or mostly 24 h to OEM0.3 from those exposed to OEM2.5-0.3. Taken together, these results revealed the higher potentials for toxicity, closely linked to their respective physical and chemical characteristics, of PM2.5-0.3 vs NEM2.5-0.3 and/or OEM2.5-0.3, and OEM0.3 vs OEM2.5-0.3. (c) 2020 Elsevier Ltd. All rights reserved.
机译:迫切需要新的毒理学研究,以改善目前通过环境颗粒物质(PM)的不同化学分数对一些关于一些毒性潜在机制的知识。这种体外研究也寻求更好地评估和比较细颗粒(PM2.5-0.3)和无机和有机化学级分的各自毒性,以及PM2.5-0.3的有机化学级分的各自的毒性和准则超细颗粒(PM0.3)。人的支气管上皮细胞2B细胞也暴露于6-48小时,以相对低剂量的PM2.5-0.3及其有机可提取物(OEM2.5-0.3)和不可萃取(NEM2.5-0.3)级分,以及PM0.3的有机可提取物级分(OEM0.3)。我们报道不仅是PM2.5-0.3,而且,在较小程度上,其无机化学级分,NEM2.5-0.3和有机化学级分,OEM2.5-0.3能够显着地诱导ROS过量生产和氧化尽管NRF2信号通路的早期激活,但损坏。此外,对于任何暴露,注意到炎症和凋亡事件。在暴露于OEM0.3的BEA-2B细胞中观察到类似的结果,富含多环芳烃及其硝化和氧化衍生物。在BEA-2B细胞中暴露24和48小时至OEM2.5-0.3和OEM0.3,在更高的程度上,即使对自噬而不至关重要,即使是对自噬的至关重要,也存在一些关键蛋白质的水平。自噬。值得注意的是,在暴露于NEM2.5-0.3或OEM2.5-0.3和BEA的那些中,毒理学效应在暴露6和/或24小时暴露于PM2.5-0.3的BEA-2B细胞中的等于或大多数较高。 -2B细胞暴露于6和/或大多24小时至OEM0.3从暴露于OEM2.5-0.3的那些。总之,这些结果揭示了毒性较高的潜力,与其各自的物理和化学特性密切相关,PM2.5-0.3和/或OEM2.5-0.3和OEM0.3 VS OEM2。 5-0.3。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2020年第1期|114620.1-114620.12|共12页
  • 作者单位

    Univ Littoral Cote dOpale Unite Chim Environm & Interact Vivant UCEIV EA 4492 FR CNRS Dunkerque France|Univ Lille CHU Lille Inst Pasteur Lille ULR IMPacts Environm Chim Sante IMPECS 4483 Lille France|NCSR Lebanese Atom Energy Commiss Beirut Lebanon;

    Univ Littoral Cote dOpale Unite Chim Environm & Interact Vivant UCEIV EA 4492 FR CNRS Dunkerque France;

    Univ Lille CHU Lille Inst Pasteur Lille ULR IMPacts Environm Chim Sante IMPECS 4483 Lille France;

    NCSR Lebanese Atom Energy Commiss Beirut Lebanon;

    Univ Lille CHU Lille Inst Pasteur Lille ULR IMPacts Environm Chim Sante IMPECS 4483 Lille France;

    Univ Littoral Cote dOpale Unite Chim Environm & Interact Vivant UCEIV EA 4492 FR CNRS Dunkerque France;

    NCSR Lebanese Atom Energy Commiss Beirut Lebanon;

    Univ Littoral Cote dOpale Ctr Commun Mesures Maison Rech Environm Ind Dunkerque France;

    Univ Littoral Cote dOpale Unite Chim Environm & Interact Vivant UCEIV EA 4492 FR CNRS Dunkerque France;

    Univ Lille CHU Lille Inst Pasteur Lille ULR IMPacts Environm Chim Sante IMPECS 4483 Lille France;

    Univ Lille CHU Lille Inst Pasteur Lille ULR IMPacts Environm Chim Sante IMPECS 4483 Lille France;

  • 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

    Fine particles; Quasi-ultrafine particles; Extractable and non-extractable chemical fractions; Normal human bronchial epithelial BEAS-2B cells; Toxicity; Underlying mechanisms;

    机译:细颗粒;准超细颗粒;可萃取和不可萃取的化学分数;正常人支气管上皮BEAS-2B细胞;毒性;潜在的机制;

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