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The effect of surface modification of mesoporous silica micro-rod scaffold on immune cell activation and infiltration

机译:介孔二氧化硅微棒支架表面改性对免疫细胞活化和浸润的影响

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摘要

Biomaterial scaffold based vaccines show significant potential in generating potent antigen-specific immunity. However, the role of the scaffold surface chemistry in initiating and modulating the immune response is not well understood. In this study, a mesoporous silica micro-rod (MSR) scaffold was modified with PEG, PEG-RGD and PEG-RDG groups. PEG modification significantly enhanced BMDC activation marker up-regulation and IL-1β production in vitro, and innate immune cell infiltration in vivo. PEG-RGD MSRs and PEG-RDG MSRs displayed decreased inflammation compared to PEG MSRs, and the effect was not RGD specific. Finally, the Nlrp3 inflammasome was found to be necessary for MSR stimulated IL-1β production in vitro and played a key role in regulating immune cell infiltration in vivo. These findings suggest that simply modulating the surface chemistry of a scaffold can regulate its immune cell infiltration profile and have implications for the design and development of new material based vaccines.
机译:基于生物材料支架的疫苗在产生有效的抗原特异性免疫方面显示出巨大潜力。但是,支架表面化学在引发和调节免疫反应中的作用尚不十分清楚。在这项研究中,用PEG,PEG-RGD和PEG-RDG基团修饰了介孔二氧化硅微棒(MSR)支架。 PEG修饰在体外显着增强了BMDC激活标记的上调和IL-1β的产生,并在体内产生了先天免疫细胞的浸润。与PEG MSR相比,PEG-RGD MSR和PEG-RDG MSR表现出减少的炎症,并且这种作用不是RGD特异性的。最后,发现Nlrp3炎性体对于MSR刺激的IL-1β体外产生是必需的,并且在体内调节免疫细胞浸润中起关键作用。这些发现表明,简单地调节支架的表面化学性质可以调节其免疫细胞的渗透特性,并且对基于新材料的疫苗的设计和开发具有影响。

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