Characterization of the innate stimulatory capacity of plant-derived virus-like particles bearing influenza hemagglutinin

细胞生物学 生物 免疫系统 血凝素(流感) T细胞 树突状细胞 甲型流感病毒 先天免疫系统 模式识别受体 抗原 免疫学 病毒
作者
So‐Yoon Won,Kristin Hunt,Hannah Guak,Benedeta Hasaj,Nathalie Charland,Nathalie Landry,Brian J. Ward,Connie M. Krawczyk
出处
期刊:Vaccine [Elsevier BV]
卷期号:36 (52): 8028-8038 被引量:15
标识
DOI:10.1016/j.vaccine.2018.10.099
摘要

Cell-mediated immunity is an important component of immediate and long-term anti-viral protection. Dendritic cells (DCs) are essential for the induction of cell-mediated immunity by instructing the activation and differentiation of antigen-specific T cell responses. Activated DCs that express co-stimulatory molecules and pro-inflammatory cytokines are necessary to promote the development of type 1 immune responses required for viral control. Here we report that plant-derived virus-like particles (VLPs) bearing influenza hemagglutinins (HA) directly stimulate mouse and human DCs. DCs exposed to H1- and, to a lesser extent, H5-VLPs in vitro rapidly express co-stimulatory molecules and produce pro-inflammatory cytokines including IL-12, IL-6 and TNFα. Furthermore, these VLPs support the activation and differentiation of antigen-specific T cell responses. Mechanistically, H1-VLPs stimulate the activation of kinases typically activated downstream of pattern recognition receptors including AKT, p38, and p42/44 ERK. In vivo, immunization with plant-derived VLPs induce the accumulation of both cDC1s and cDC2 in the draining lymph node and a corresponding increase in T and B cells. VLPs devoid of HA protein activate DCs, suggesting they are intrinsically immunostimulatory. Together, the results demonstrate that these candidate plant-derived VLP vaccines have an inherent and direct stimulatory effect on DCs and can enhance the ability of DCs to promote Type 1 immune responses.

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