Adjuvant Research Group, School of Biochemistry and Immunology, Trinity Biomedical Ssciences Institute, Trinity College Dublin, Dublin 2, D02 PN40, Ireland.
Nanoscale. 2020 May 28;12(20):11192-11200. doi: 10.1039/c9nr09661b. Epub 2020 May 14.
Graphene-based materials are of increasing interest for their potential use in biomedical applications. However, there is a need to gain a deeper understanding of how graphene modulates biological responses before moving towards clinical application. Innate immune training is a recently described phenomenon whereby cells of the innate immune system are capable of being programmed to generate an increased non-specific response upon subsequent challenge. This has been well established in the case of certain microbes and microbial products. However, little is known about the capacity of particulate materials, such as pristine graphene (pGr), to promote innate immune training. Here we report for the first time that while stimulation with pGr alone does not directly induce cytokine secretion by bone-marrow derived macrophages (BMDMs), it programs them for enhanced secretion of proinflammatory cytokines (IL-6, TNF-α) and a concomitant decrease in production of the regulatory cytokine, IL-10 after Toll-like receptor (TLR) ligand stimulation. This capacity of pGr to program cells for enhanced inflammatory responses could be overcome if the nanomaterial is incorporated in a collagen matrix. Our findings thus demonstrate the potential of graphene to modulate innate immunity over long timescales and have implications for the design and biomedical use of pGr-based materials.
基于石墨烯的材料因其在生物医学应用中的潜在用途而引起了越来越多的关注。然而,在将其推向临床应用之前,我们需要更深入地了解石墨烯如何调节生物反应。先天免疫训练是最近描述的一种现象,即先天免疫系统的细胞能够被编程,以便在随后的挑战中产生增强的非特异性反应。在某些微生物和微生物产物的情况下,这已经得到了很好的证实。然而,对于颗粒物质(如原始石墨烯(pGr))促进先天免疫训练的能力,人们知之甚少。在这里,我们首次报道,尽管 pGr 单独刺激本身不会直接诱导骨髓来源的巨噬细胞(BMDM)分泌细胞因子,但它会对其进行编程,以增强促炎细胞因子(IL-6、TNF-α)的分泌,并伴随 Toll 样受体(TLR)配体刺激后调节细胞因子(IL-10)的产生减少。如果纳米材料被掺入胶原基质中,则 pGr 编程细胞以增强炎症反应的能力可能会被克服。因此,我们的研究结果表明,石墨烯有可能在长时间内调节先天免疫,并对基于 pGr 的材料的设计和生物医学应用产生影响。