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首页> 外文期刊>Scientific reports. >Physico-chemical properties based differential toxicity of graphene oxide/reduced graphene oxide in human lung cells mediated through oxidative stress
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Physico-chemical properties based differential toxicity of graphene oxide/reduced graphene oxide in human lung cells mediated through oxidative stress

机译:通过氧化胁迫介导的人肺细胞中石墨烯氧化物/降墨氧化物的基于物理化学性质

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Goraphene derivatives (GD) are currently being evaluated for technological and biomedical applications owing to their unique physico-chemical properties over other carbon allotrope such as carbon nanotubes (CNTs). But, the possible association of their properties with underlying in vitro effects have not fully examined. Here, we assessed the comparative interaction of three GD - graphene oxide (GO), thermally reduced GO (TRGO) and chemically reduced GO (CRGO), which significantly differ in their lateral size and functional groups density, with phenotypically different human lung cells; bronchial epithelial cells (BEAS-2B) and alveolar epithelial cells (A549). The cellular studies demonstrate that GD significantly ineternalize and induce oxidative stress mediated cytotoxicity in both cells. The toxicity intensity was in line with the reduced lateral size and increased functional groups revealed more toxicity potential of TRGO and GO respectively. Further, A549 cells showed more susceptibility than BEAS-2B which reflected cell type dependent differential cellular response. Molecular studies revealed that GD induced differential cell death mechanism which was efficiently prevented by their respective inhibitors. This is prior study to the best of our knowledge involving TRGO for its safety evaluation which provided invaluable information and new opportunities for GD based biomedical applications.
机译:目前正在评估甲烷烃衍生物(GD)由于其独特的物理化学性质,而在其他碳分式异构素(如碳纳米管(CNT))上是独特的物理化学性质。但是,他们的性质与潜在的体外效应的性能结合尚未完全检查。这里,我们评估了三种Gd-石墨烯氧化物(GO)的比较相互作用,热还原(TRGU)和化学减少的去(CRGO),其横向尺寸和官能团密度显着不同,具有表型不同的人肺细胞;支气管上皮细胞(BEA-2B)和肺泡上皮细胞(A549)。细胞研究表明,GD显着均衡并诱导两种细胞中的氧化胁迫介导的细胞毒性。毒性强度符合减少的横向尺寸,并且增加的官能团显示出TRGO的更多毒性潜力。此外,A549细胞显示出比BEA-2b更大的敏感性,所述BEA-2B反映了细胞类型依赖性细胞反应。分子研究表明,GD诱导的差异细胞死亡机制通过各自的抑制剂有效地预防。这是我们以涉及TRGO的安全性评估的知识,为其提供宝贵的信息和基于GD的生物医学应用的新机会,这是我们的最佳研究。

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