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首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >In vitro investigation of oxide nanoparticle and carbon nanotube toxicity and intracellular accumulation in A549 human pneumocytes.
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In vitro investigation of oxide nanoparticle and carbon nanotube toxicity and intracellular accumulation in A549 human pneumocytes.

机译:体外研究A549人肺细胞中的氧化物纳米颗粒和碳纳米管毒性以及细胞内积累。

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摘要

If released in the environment, nanomaterials might be inhaled by populations and cause damage to the deepest regions of the respiratory tract, i.e., the alveolar compartment. To model this situation, we studied the response of A549 human pneumocytes after exposure to aluminium oxide or titanium oxide nanoparticles, and to multi-walled carbon nanotubes. The influence of size, crystalline structure and chemical composition was investigated. After a detailed identification of nanomaterial physico-chemical characteristics, cells were exposed in vitro and viability and intracellular accumulation were assessed. In our conditions, carbon nanotubes were more toxic than metal oxide nanoparticles. Our results confirmed that both nanotubes and nanoparticles are able to rapidly enter into cells, and distribute in the cytoplasm and intracellular vesicles. Among nanoparticles, we demonstrate significant difference in biological response as a function of size, crystalline phase and chemical composition. Their toxicity was globally lower than nanotubes toxicity. Among nanotubes, the length did not influence cytotoxicity, neither the presence of metal catalyst impurities.
机译:如果释放到环境中,纳米材料可能会被人体吸入并损坏呼吸道的最深区域,即肺泡腔室。为了模拟这种情况,我们研究了A549人肺细胞暴露于氧化铝或二氧化钛纳米颗粒以及多壁碳纳米管后的反应。研究了尺寸,晶体结构和化学成分的影响。在详细鉴定纳米材料的理化特性后,将细胞在体外暴露,并评估其生存能力和细胞内积累。在我们的条件下,碳纳米管比金属氧化物纳米颗粒更具毒性。我们的结果证实,纳米管和纳米颗粒都能够迅速进入细胞,并分布在细胞质和细胞内囊泡中。在纳米颗粒之间,我们证明了生物学响应随大小,晶相和化学组成的变化而存在显着差异。它们的毒性总体上低于纳米管的毒性。在纳米管中,长度不影响细胞毒性,也不存在金属催化剂杂质。

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