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Toxicity of Graphene Shells Graphene Oxide and Graphene Oxide Paper Evaluated with Escherichia coli Biotests

机译:大肠杆菌生物测试评估石墨烯壳氧化石墨烯和氧化石墨烯纸的毒性

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摘要

The plate-like graphene shells (GS) produced by an original methane pyrolysis method and their derivatives graphene oxide (GO) and graphene oxide paper (GO-P) were evaluated with luminescent Escherichia coli biotests and additional bacterial-based assays which together revealed the graphene-family nanomaterials' toxicity and bioactivity mechanisms. Bioluminescence inhibition assay, fluorescent two-component staining to evaluate cell membrane permeability, and atomic force microscopy data showed GO expressed bioactivity in aqueous suspension, whereas GS suspensions and the GO-P surface were assessed as nontoxic materials. The mechanism of toxicity of GO was shown not to be associated with oxidative stress in the targeted soxS::lux and katG::lux reporter cells; also, GO did not lead to significant mechanical disruption of treated bacteria with the release of intracellular DNA contents into the environment. The well-coordinated time- and dose-dependent surface charge neutralization and transport and energetic disorders in the Escherichia coli cells suggest direct membrane interaction, internalization, and perturbation (i.e., “membrane stress”) as a clue to graphene oxide's mechanism of toxicity.
机译:通过发光的大肠杆菌生物测试和其他基于细菌的分析共同评估了通过原始甲烷热解方法生产的板状石墨烯壳(GS)及其衍生物氧化石墨烯(GO)和氧化石墨纸(GO-P)。石墨烯家族纳米材料的毒性和生物活性机制。生物发光抑制测定,荧光二组分染色以评估细胞膜通透性以及原子力显微镜数据显示,GO在水性悬浮液中表达了生物活性,而GS悬浮液和GO-P表面被视为无毒材料。在目标的soxS :: lux和katG :: lux报告基因细胞中,GO的毒性机制与氧化应激无关。此外,GO并不会随着细胞内DNA含量释放到环境中而导致处理过的细菌发生重大机械破坏。大肠杆菌细胞中时间和剂量依赖的表面电荷中和,运输和能量异常协调良好,表明直接的膜相互作用,内在化和微扰(即“膜应力”)是氧化石墨烯毒性机制的线索。

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