首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genotoxic effects of silver nanoparticles stimulated by oxidative stress in human normal bronchial epithelial (BEAS-2B) cells.
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Genotoxic effects of silver nanoparticles stimulated by oxidative stress in human normal bronchial epithelial (BEAS-2B) cells.

机译:在人类正常支气管上皮细胞(BEAS-2B)中,氧化应激刺激银纳米颗粒的遗传毒性作用。

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Many classes of silver nanoparticles (Ag-NPs) have been synthesized and widely applied, but the genotoxicity of Ag-NPs and the factors leading to genotoxicity remain unknown. Therefore, the purpose of this study is to elucidate the genotoxic effects of Ag-NPs in lung and the role of oxidative stress on the genotoxic effects of Ag-NPs. For this, Ag-NPs were completely dispersed in medium by sonication and filtration. The Ag-NPs dispersed in medium were 43-260nm in size. We observed distinct uptake of Ag-NPs into BEAS-2B cells. The Ag-NPs aggregates were wrapped with an endocytic vesicle within the cytoplasm and nucleus of BEAS-2B cells. In the comet assay and micronucleus (MN) assay for BEAS-2B cells, Ag-NPs stimulated DNA breakage and MN formation in a dose-dependent manner. The genotoxic effect of Ag-NPs was partially blocked by scavengers. In particular, of the scavengers tested, superoxide dismutase most significantly blocked the genotoxic effects in both the cytokinesis-block MN assay and the comet assay. In the modified comet assay, Ag-NPs induced a significant increase in oxidative DNA damage. Furthermore, in the oxidative stress assay, Ag-NPs significantly increased the reactive oxygen radicals. These results suggest that Ag-NPs have genotoxic effects in BEAS-2B cells and that oxidative stress stimulated by Ag-NPs may be an important factor in their genotoxic effects.
机译:合成并广泛应用了许多种类的银纳米颗粒(Ag-NPs),但是Ag-NPs的遗传毒性和导致遗传毒性的因素仍然未知。因此,本研究的目的是阐明Ag-NPs在肺中的遗传毒性作用以及氧化应激对Ag-NPs的遗传毒性作用的作用。为此,通过超声和​​过滤将Ag-NP完全分散在培养基中。分散在培养基中的Ag-NP的尺寸为43-260nm。我们观察到不同的Ag-NPs吸收到BEAS-2B细胞中。 Ag-NPs聚集体被内吞小泡包裹在BEAS-2B细胞的细胞质和细胞核内。在BEAS-2B细胞的彗星检测和微核(MN)检测中,Ag-NP以剂量依赖性方式刺激DNA断裂和MN形成。 Ag-NPs的遗传毒性作用被清除剂部分阻断。特别是,在测试的清除剂中,超氧化物歧化酶在胞质分裂阻滞MN测定和彗星测定中均最显着地阻断了遗传毒性作用。在改进的彗星试验中,Ag-NPs引起氧化DNA损伤的明显增加。此外,在氧化应激测定中,Ag-NPs显着增加了反应性氧自由基。这些结果表明,Ag-NPs在BEAS-2B细胞中具有遗传毒性作用,而Ag-NPs刺激的氧化应激可能是其遗传毒性作用的重要因素。

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