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The interactions between pristine graphene and macrophages and the production of cytokines/chemokines via TLR- and NF-κB-related signaling pathways

机译:原始石墨烯与巨噬细胞之间的相互作用以及经由TLR和NF-κB相关信号通路的细胞因子/趋化因子的产生

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Graphene may have attractive properties for some biomedical applications, but its potential adverse biological effects, in particular, possible modulation of immune responses, require further investigation. Macrophages are one of the most important effector cells of the innate immune system, and play pivotal roles in the response to graphene exposure. We have previously reported that exposure of macrophages to high concentrations of graphene triggers cell death via MAPK- and TGF-related pathways. However, little is known about the influence of exposure to low concentrations of graphene on the function of macrophages. In the present investigation, we demonstrate the biological effects of sub-cytotoxic concentrations of commercial pristine graphene on both primary murine macrophages and immortalized macrophages. Graphene significantly stimulates the secretion of Th1/Th2 cytokines including IL-1α, IL-6, IL-10, TNF-α and GM-CSF as well as chemokines such as MCP-1, MIP-1α, MIP-1β and RANTES, probably by activating TLR-mediated and NF-κB-dependent transcription. Furthermore, these graphene-induced factors alter the morphology of na?ve macrophages by remodeling their actin assembly, decreasing their ability to adhere to the extracellular matrix, and attenuating their phagocytosis. This negative feedback of the immune response of macrophages by graphene-induced factors may play an important role in the prevention of their over-activation after graphene exposure. These findings shed light on the interaction of graphene and macrophages in vitro. Further research is needed to systematically assess the biological responses of graphene, both to improve its safety and to contribute to the design of new biological applications.
机译:石墨烯对于某些生物医学应用可能具有吸引人的特性,但是其潜在的不利生物学效应,特别是免疫应答的可能调节,需要进一步研究。巨噬细胞是先天免疫系统最重要的效应细胞之一,在对石墨烯暴露的反应中起关键作用。我们以前曾报道过巨噬细胞暴露于高浓度的石墨烯会通过MAPK和TGF相关途径触发细胞死亡。然而,关于暴露于低浓度石墨烯对巨噬细胞功能的影响知之甚少。在目前的调查中,我们证明了商业原始质素石墨烯的亚细胞毒性浓度对原代鼠巨噬细胞和永生化巨噬细胞的生物学影响。石墨烯可显着刺激Th1 / Th2细胞因子(包括IL-1α,IL-6,IL-10,TNF-α和GM-CSF)以及趋化因子(如MCP-1,MIP-1α,MIP-1β和RANTES)的分泌,可能是通过激活TLR介导的和NF-κB依赖性转录来实现的。此外,这些石墨烯诱导的因子通过重塑它们的肌动蛋白装配,降低其粘附至细胞外基质的能力并减弱其吞噬作用,从而改变了幼稚巨噬细胞的形态。石墨烯诱导的因子对巨噬细胞免疫反应的这种负反馈可能在预防石墨烯暴露后其过度活化中起重要作用。这些发现揭示了石墨烯与巨噬细胞在体外的相互作用。需要进一步研究以系统地评估石墨烯的生物学反应,以提高其安全性并有助于新的生物学应用的设计。

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