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Cytotoxic effects of commonly used nanomaterials and microplastics on cerebral and epithelial human cells

微塑料 十二烷基苯磺酸钠 细胞毒性 邻苯二甲酸二乙酯 化学 环境化学 氧化应激 生态毒性 活力测定 纳米材料 邻苯二甲酸盐 体外 毒性 纳米技术 材料科学 肺表面活性物质 生物化学 有机化学
作者
Gabriella F. Schirinzi,Ignacio Pérez-Pomeda,Josep Sanchís,Cesare Rossini,Marinella Farré,‪Damià Barceló
出处
期刊:Environmental Research [Elsevier BV]
卷期号:159: 579-587 被引量:681
标识
DOI:10.1016/j.envres.2017.08.043
摘要

Plastic wastes are among the major inputs of detritus into aquatic ecosystems. Also, during recent years the increasing use of new materials such as nanomaterials (NMs) in industrial and household applications has contributed to the complexity of waste mixtures in aquatic systems. The current effects and the synergism and antagonisms of mixtures of microplastics (MPLs), NMs and organic compounds on the environment and in human health have, to date, not been well understood but instead they are a cause for general concern. The aim of this work is to contribute to a better understanding of the cytotoxicity of NMs and microplastics/nanoplastics (MPLs/NPLs), at cell level in terms of oxidative stress (evaluating Reactive Oxygen Species effect) and cell viability. Firstly, the individual cytotoxicity of metal nanoparticles (NPs) (AgNPs and AuNPs), of metal oxide NPs (ZrO2NPs, CeO2NPs, TiO2NPs, and Al2O3NPs), carbon nanomaterials (C60fullerene, graphene), and MPLs of polyethylene (PE) and polystyrene (PS) has been evaluated in vitro. Two different cellular lines T98G and HeLa, cerebral and epithelial human cells, respectively, were employed. The cells were exposed during 24–48 h to different levels of contaminants, from 10 ng/mL to 10 µg/mL, under the same conditions. Secondly, the synergistic and antagonistic relationships between fullerenes and other organic contaminants, including an organophosphate insecticide (malathion), a surfactant (sodium dodecylbenzenesulfonate) and a plasticiser (diethyl phthalate) were assessed. The obtained results confirm that oxidative stress is one of the mechanisms of cytotoxicity at cell level, as has been observed for both cell lines and contributes to the current knowledge of the effects of NMs and MPLs-NPLs.
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