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首页> 外文期刊>Nanoscale >Large-sized graphene oxide synergistically enhances parenchymal hepatocyte IL-6 expression monitored by dynamic imaging
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Large-sized graphene oxide synergistically enhances parenchymal hepatocyte IL-6 expression monitored by dynamic imaging

机译:大尺寸石墨烯氧化物表现为协同作用增强了实质肝细胞il - 6表达由动态监控成像

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Graphene oxides (GOs) have received significant attention as emerging biomedical materials due to their special properties. The application of GOs in biological systems has raised considerable concern about their hepatotoxicity, however their biological effects on parenchymal hepatocytes remain unclear, despite the fact that GOs have shown size-dependent interactions with immunocytes in the liver. Herein we chose pleiotropic cytokine IL-6 as the model parameter to investigate inflammation responses upon exposure to GOs. An early and sensitive reporter mouse model was constructed, allowing non-invasive and longitudinal imaging of parenchymal hepatocyte IL-6 expressions. GOs of various lateral dimensions were assessed by using the reporter mice. The results demonstrated that large-sized GOs (L-GO) induced much stronger IL-6 activation. A detailed analysis uncovered that L-GO induced ROS production and TLR-4 activation promoted macrophage polarization and secretion of pro-inflammatory cytokines IL-1 beta and TNF-alpha, activated via> the NF-kappa B signaling pathway, which in turn initiated the expression of IL-6 in hepatocytes. These in-depth investigations are expected to help modulate the inflammatory responses involved in hepatotoxicity and provide extended information to design sub-hepatic distribution and cell subset targeting by controlling the nanoparticle sizes.
机译:石墨烯氧化物(GOs)收到显著由于关注新兴生物医学材料他们的特殊属性。在生物系统引起了相当大的担心他们的肝毒性,然而他们在实质肝细胞生物效应仍不清楚,尽管神仙所示的尺度依赖的相互作用免疫细胞在肝脏。多效性的细胞因子il - 6作为模型参数探讨炎症反应暴露于神仙。小鼠模型构建,允许非侵入性和纵向成像实质肝细胞il - 6表达。各种横向维度评估使用记者的老鼠。大型非政府组织(L-GO)诱发更强的il - 6激活。L-GO诱导活性氧的生产和地激活促进巨噬细胞极化和分泌促炎细胞因子il - 1β和通过> nf -κB tnf,激活信号通路,从而启动了在肝细胞表达il - 6。调查预计将有助于调节炎症反应参与了肝毒性设计并提供扩展的信息sub-hepatic分布和细胞子集针对通过控制纳米粒子的大小。

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