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Differences in inflammation and acute phase response but similar genotoxicity in mice following pulmonary exposure to graphene oxide and reduced graphene oxide

机译:肺暴露于氧化石墨烯和还原氧化石墨烯后小鼠的炎症和急性期反应的差异,但相似的遗传毒性

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摘要

We investigated toxicity of 2-3 layered 1 μm sized graphene oxide (GO) and reduced graphene oxide (rGO) in mice following single intratracheal exposure with respect to pulmonary inflammation, acute phase response (biomarker for risk of cardiovascular disease) and genotoxicity. In addition, we assessed exposure levels of particulate matter emitted during production of graphene in a clean room and in a normal industrial environment using chemical vapour deposition. Toxicity was evaluated at day 1, 3, 28 and 90 days (18, 54 and 162 μg/mouse), except for GO exposed mice at day 28 and 90 where only the lowest dose was evaluated. GO induced a strong acute inflammatory response together with a pulmonary (Serum-Amyloid A, Saa3) and hepatic (Saa1) acute phase response. rGO induced less acute, but a constant and prolonged inflammation up to day 90. Lung histopathology showed particle agglomerates at day 90 without signs of fibrosis. In addition, DNA damage in BAL cells was observed across time points and doses for both GO and rGO. In conclusion, pulmonary exposure to GO and rGO induced inflammation, acute phase response and genotoxicity but no fibrosis.
机译:我们调查了单次气管内暴露后对肺部炎症,急性期反应(心血管疾病风险的生物标志物)和基因毒性的影响,研究了2-3层> 1μm大小的氧化石墨烯(GO)和氧化石墨烯(rGO)减少的毒性。此外,我们使用化学气相沉积法评估了在洁净室和正常工业环境中石墨烯生产过程中排放的颗粒物的暴露水平。在第1、3、28和90天(18、54和162μg/小鼠)评估毒性,除了在第28和90天仅接触最低剂量的GO暴露小鼠。 GO诱导了强烈的急性炎症反应,以及肺(血清淀粉样蛋白A,Saa3)和肝(Saa1)急性期反应。 rGO引起的急性反应较轻,但直至90天仍持续持续。肺组织病理学显示,在90天时颗粒聚集,没有纤维化的迹象。另外,在GO和rGO的时间和剂量上都观察到了BAL细胞中的DNA损伤。总之,肺部接触GO和rGO可引起炎症,急性期反应和遗传毒性,但无纤维化。

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