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The use of self-adjuvanting nanofiber vaccines to elicit high-affinity B cell responses to peptide antigens without inflammation

机译:使用自佐剂纳米纤维疫苗引起对肽抗原的高亲和力B细胞应答而无炎症

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摘要

Balancing immunogenicity with inflammation is a central tenet of vaccine design, especially for subunit vaccines that utilize traditional pro-inflammatory adjuvants. Here we report that by using a nanoparticulate peptide-based vaccine, immunogenicity and local inflammation could be decoupled. Self-assembled β-sheet-rich peptide nanofibers, previously shown to elicit potent antibody responses in mice, were found to be non-cytotoxic invitro and, remarkably, elicited no measurable inflammation invivo-with none of the swelling at the injection site, accumulation of inflammatory cells or cytokines, or production of allergic IgE that were elicited by an alum-adjuvanted vaccine. Nanofibers were internalized by dendritic cells and macrophages at the injection site, and only dendritic cells that acquired the material increased their expression of the activation markers CD80 and CD86. Immunization with epitope-bearing nanofibers elicited antigen-specific differentiation of T cells into T follicular helper cells and B cells into germinal center cells, as well as high-titer, high-affinity IgG that cross-reacted with the native protein antigen and was neutralizing in an invitro influenza hemagglutination inhibition assay. These responses were superior to those induced by alum and comparable to those induced by complete Freund's adjuvant. Thus, nanoparticulate assemblies may provide a new route to non-inflammatory immunotherapies and vaccines.
机译:使免疫原性与炎症相平衡是疫苗设计的中心原则,尤其是对于使用传统促炎性佐剂的亚单位疫苗。在这里,我们报道通过使用基于纳米微粒的肽的疫苗,免疫原性和局部炎症可以分离。自组装的富含β-折叠的肽纳米纤维,以前被证明可以在小鼠中引起有效的抗体反应,但被发现具有体外无细胞毒性,而且值得注意的是,它没有引起可测量的炎症体内-在注射部位没有肿胀,积累。明矾佐剂疫苗引起的炎症细胞或细胞因子的产生,或过敏性IgE的产生。纳米纤维在注射部位被树突状细胞和巨噬细胞内在化,只有获得该物质的树突状细胞才能增加其激活标记CD80和CD86的表达。带有抗原决定簇的纳米纤维免疫后,导致T细胞抗原特异性分化为T滤泡辅助细胞,B细胞分化为生发中心细胞,以及与天然蛋白抗原交叉反应并被中和的高滴度,高亲和力IgG。在体外流感血凝抑制试验中。这些反应优于明矾诱导的反应,与完全弗氏佐剂诱导的反应相当。因此,纳米颗粒组装可能为非炎性免疫治疗和疫苗提供一条新途径。

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