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首页> 外文期刊>Aquatic Toxicology >Dynamic cytotoxicity of ZnO nanoparticles and bulk particles to Escherichia coli: A view from unfixed ZnO particle:Zn2+ ratio
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Dynamic cytotoxicity of ZnO nanoparticles and bulk particles to Escherichia coli: A view from unfixed ZnO particle:Zn2+ ratio

机译:ZnO纳米粒子的动态细胞毒性和块状粒子到大肠杆菌:来自未固定ZnO颗粒的视图:Zn2 +比

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摘要

ZnO nanoparticles (NPs) form binary mixtures of ZnO particles and released Zn2+ in the environment, and the quantitative contributions of these components to toxicity are still uncertain. Herein, quantitative contribution of ZnO particle and Zn2+ to cytotoxicity of ZnO NPs to Escherichia coli were determined during 48 h bioassay. The cytotoxicity and mechanisms of ZnO NPs were dynamic and affected by ionic strength, Fe3+, humic acid, and temperature due to the unfixed ZnO particle:Zn2+ ratio. ZnO NPs and ZnO bulk particles (BPs) had comparable cytotoxicity but distinct cytotoxic mechanisms. ZnO NPs cytotoxicity arises mainly from ZnO particles for 3 h and from Zn2+ afterwards (8-48 h). The cytotoxicity of ZnO BPs depends predominantly on ZnO particles for 12 h and on Zn2+ from 24 to 48 h. The cytotoxicity of ZnO NPs and BPs is partially attributable to Zn accumulation, and dependent on ZnO particle:Zn2+ ratio. The linear regressions of acute toxicity for ZnO NPs vs. BPs and Zn2+ yielded excellent r(2) (0.9994 and 0.9998) from literature data and good r(2) (>= 0.714) under certain environmental factors, which can be applied to assess environmental risk of ZnO NPs. Furthermore, dynamic cytotoxicity and mechanisms should be seriously considered during the environmental risk assessment of ZnO NPs.
机译:ZnO纳米颗粒(NPS)形成ZnO颗粒的二元混合物并在环境中释放Zn2 +,这些组分对毒性的定量贡献仍然不确定。这里,在48小时生物测定期间测定ZnO颗粒和ZnO颗粒和Zn2 +对大肠杆菌的细胞毒性的定量贡献。 ZnO NPS的细胞毒性和机制是由离子强度,Fe3 +,腐殖酸和由于未固定的ZnO颗粒:Zn2 +的比率影响的动态和影响。 ZnO NPS和ZnO散装颗粒(BPS)具有相当的细胞毒性,但不同的细胞毒性机制。 ZnO NPS细胞毒性主要来自ZnO颗粒3小时,然后从Zn2 +之后(8-48小时)。 ZnO BPS的细胞毒性主要取决于ZnO颗粒以12小时和Zn2 +从24至48小时上。 ZnO NPS和BPS的细胞毒性部分应归因于Zn累积,依赖于ZnO颗粒:Zn2 +比。在某些环境因素下,在文献数据和良好的R(2)(> = 0.714)下,ZnO NPS和Zn2 +对ZnO NPS和Zn2 +的线性回归产生优异的R(2)(0.994和0.9998),其在某些环境因素中可以应用于评估Zno NPS的环境风险。此外,在ZnO NPS的环境风险评估期间应认真考虑动态细胞毒性和机制。

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  • 来源
    《Aquatic Toxicology》 |2020年第2020期|共10页
  • 作者单位

    Nanyang Normal Univ Henan Prov Academician Workstn Water Secur Water Nanyang 473061 Peoples R China;

    Nanyang Normal Univ Henan Prov Academician Workstn Water Secur Water Nanyang 473061 Peoples R China;

    Nanyang Normal Univ Henan Prov Academician Workstn Water Secur Water Nanyang 473061 Peoples R China;

    Nanyang Normal Univ Henan Prov Academician Workstn Water Secur Water Nanyang 473061 Peoples R China;

    State Key Lab Motor Vehicle Biofuel Technol Nanyang 473000 Peoples R China;

    Nanyang Normal Univ Henan Prov Academician Workstn Water Secur Water Nanyang 473061 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水生生物学;
  • 关键词

    ZnO nanoparticles; ZnO particle:Zn2+ ratio; Cytotoxicity; Cytotoxic mechanism; Escherichia coli;

    机译:ZnO纳米粒子;ZnO颗粒:Zn2 +比例;细胞毒性;细胞毒理机制;大肠杆菌;

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