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Unravelling the Potential Cytotoxic Effects of Metal Oxide Nanoparticles and Metal(Loid) Mixtures on A549 Human Cell Line

机译:揭示金属氧化物纳米颗粒和金属(类固醇)混合物对A549人细胞系的潜在细胞毒性作用

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摘要

Humans are typically exposed to environmental contaminants’ mixtures that result in different toxicity than exposure to the individual counterparts. Yet, the toxicology of chemical mixtures has been overlooked. This work aims at assessing and comparing viability and cell cycle of A549 cells after exposure to single and binary mixtures of: titanium dioxide nanoparticles (TiO NP) 0.75–75 mg/L; cerium oxide nanoparticles (CeO NP) 0.75–10 μg/L; arsenic (As) 0.75–2.5 mg/L; and mercury (Hg) 5–100 mg/L. Viability was assessed through water-soluble tetrazolium (WST-1) and thiazolyl blue tetrazolium bromide (MTT) (24 h exposure) and clonogenic (seven-day exposure) assays. Cell cycle alterations were explored by flow cytometry. Viability was affected in a dose- and time-dependent manner. Prolonged exposure caused inhibition of cell proliferation even at low concentrations. Cell-cycle progression was affected by TiO NP 75 mg/L, and As 0.75 and 2.5 μg/L, increasing the cell proportion at G0/G1 phase. Combined exposure of TiO NP or CeO NP mitigated As adverse effects, increasing the cell surviving factor, but cell cycle alterations were still observed. Only CeO NP co-exposure reduced Hg toxicity, translated in a decrease of cells in Sub-G1. Toxicity was diminished for both NPs co-exposure compared to its toxicity alone, but a marked toxicity for the highest concentrations was observed for longer exposures. These findings prove that joint toxicity of contaminants must not be disregarded.
机译:人体通常会暴露于环境污染物的混合物中,而混合环境所产生的毒性与暴露于个别污染物所导致的毒性不同。然而,化学混合物的毒理学已被忽略。这项工作旨在评估和比较暴露于单一和二元混合物的A549细胞的活力和细胞周期:二氧化钛纳米颗粒(TiO NP)0.75-75 mg / L;氧化铈纳米颗粒(CeO NP)0.75–10μg/ L;砷(As)0.75–2.5 mg / L;和汞(Hg)5–100 mg / L。通过水溶性四唑鎓(WST-1)和噻唑基溴化四唑鎓蓝(MTT)(暴露24小时)和克隆形成(暴露7天)测定来评估生存力。通过流式细胞术探索细胞周期改变。活力以剂量和时间依赖性方式受到影响。长时间暴露即使在低浓度下也能抑制细胞增殖。 TiO NP 75 mg / L,As 0.75和2.5μg/ L影响细胞周期进程,从而增加了G0 / G1相的细胞比例。 TiO NP或CeO NP的联合暴露得到缓解作为不利影响,增加了细胞存活因子,但仍观察到细胞周期改变。只有CeO NP共同暴露可降低Hg毒性,这转化为Sub-G1细胞的减少。与单独的NPs共同毒性相比,两种NPs共同暴露的毒性都降低了,但是长时间暴露于最高浓度时却观察到明显的毒性。这些发现证明,污染物的联合毒性不可忽视。

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