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首页> 外文期刊>Environmental toxicology >Potentiating Effect of Graphene Nanomaterials on Aromatic Environmental Pollutant-Induced Cytochrome P450 1A Expression in the Topminnow Fish Hepatoma Cell Line PLHC-1
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Potentiating Effect of Graphene Nanomaterials on Aromatic Environmental Pollutant-Induced Cytochrome P450 1A Expression in the Topminnow Fish Hepatoma Cell Line PLHC-1

机译:石墨烯纳米材料对芳香环境污染物诱导的Topminnow鱼肝癌细胞PLHC-1细胞色素P450 1A表达的增强作用。

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Graphene and its derivatives are an emerging class of carbon nanomaterial with great potential for a broad range of industrial and consumer applications. However, their increasing production and use is expected to result in release of nano-sized graphene platelets into the environment, where they may interact with chemical pollutants modifying their fate and toxic potential. The objective of this study was to assess whether graphene nanoplatelets can act as vector for aromatic environmental pollutants increasing their cellular uptake and associated hazardous effects in vitro. For this purpose, cell cultures of the topminnow fish (Poeciliopsis lucida) hepatoma cell line PLHC-1 were simultaneously (and successively) exposed to graphene nanoplatelets (graphene oxide (GO) or carboxyl graphene (CXYG)) and an aryl hydrocarbon receptor (AhR) agonist (β-naphthoflavone (β-NF), benzo(k)fluoranthene (BkF) or 3,3',4,4',5,5'-hexachlorobiphenyl (PCB169)). Following exposure cytochrome P450 1A (Cyp1A) induction was assessed by measuring cyp1A mRNA expression levels using reverse transcriptase-quantitative polymerase chain reaction (RT-qPCR) and Cyp1A-dependent ethoxyresorufin-O-deethylase (EROD) activity. It was observed that pre- and co-exposure of cells to GO and CXYG nanoplatelets had a potentiating effect on β-NF, BkF, and PCB169-dependent Cyp1A induction suggesting that graphene nanoplatelets increase the effective concentration of AhR agonists by facilitating their passive diffusion into the cells by damaging the cells' plasma membrane and/or by transporting them over the plasma membrane via a Trojan horse-like mechanism. The results demonstrate the existence of combination effects between nanomaterials and environmental pollutants and stress the importance of considering these effects when evaluating their respective hazard.
机译:石墨烯及其衍生物是一类新兴的碳纳米材料,具有广泛的工业和消费应用潜力。然而,它们不断增加的生产和使用有望导致纳米级石墨烯血小板释放到环境中,在那里它们可能与化学污染物相互作用,从而改变其命运和毒性潜力。这项研究的目的是评估石墨烯纳米片是否可以作为芳香族环境污染物的载体,从而增加其细胞吸收以及相关的体外有害作用。为此,将topminnow鱼(Poeciliopsis lucida)肝癌细胞系PLHC-1的细胞培养物同时(并连续)暴露于石墨烯纳米血小板(氧化石墨烯(GO)或羧基石墨烯(CXYG))和芳烃受体(AhR )激动剂(β-萘黄酮(β-NF),苯并(k)荧蒽(BkF)或3,3',4,4',5,5'-六氯联苯(PCB169))。暴露后,通过使用逆转录酶定量聚合酶链反应(RT-qPCR)和依赖Cyp1A的乙氧基resorufin-O-脱乙基酶(EROD)活性测量cyp1A mRNA表达水平来评估细胞色素P450 1A(Cyp1A)诱导。观察到,将细胞预先和共暴露于GO和CXYG纳米片对β-NF,BkF和PCB169依赖性Cyp1A诱导具有增强作用,这表明石墨烯纳米片可通过促进其被动扩散来提高AhR激动剂的有效浓度。通过破坏细胞的质膜和/或通过特洛伊木马机制将其转运到质膜上而进入细胞。结果证明了纳米材料和环境污染物之间存在组合效应,并强调在评估它们各自的危害时考虑这些效应的重要性。

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