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通过结合β-葡聚糖,靶向树突状细胞的 Dectin-1 增强了三联甘露聚糖破伤风类毒素结合疫苗的免疫原性。

Enhanced immunogenicity of a tricomponent mannan tetanus toxoid conjugate vaccine targeted to dendritic cells via Dectin-1 by incorporating β-glucan.

机构信息

Department of Chemistry, Alberta Glycomics Centre, University of Alberta, Edmonton, Alberta T6G 2G2, Canada.

出版信息

J Immunol. 2013 Apr 15;190(8):4116-28. doi: 10.4049/jimmunol.1202937. Epub 2013 Mar 20.

Abstract

In a previous attempt to generate a protective vaccine against Candida albicans, a β-mannan tetanus toxoid conjugate showed poor immunogenicity in mice. To improve the specific activation toward the fungal pathogen, we aimed to target Dectin-1, a pattern-recognition receptor expressed on monocytes, macrophages, and dendritic cells. Laminarin, a β-glucan ligand of Dectin-1, was incorporated into the original β-mannan tetanus toxoid conjugate providing a tricomponent conjugate vaccine. A macrophage cell line expressing Dectin-1 was employed to show binding and activation of Dectin-1 signal transduction pathway by the β-glucan-containing vaccine. Ligand binding to Dectin-1 resulted in the following: 1) activation of Src family kinases and Syk revealed by their recruitment and phosphorylation in the vicinity of bound conjugate and 2) translocation of NF-κB to the nucleus. Treatment of immature bone marrow-derived dendritic cells (BMDCs) with tricomponent or control vaccine confirmed that the β-glucan-containing vaccine exerted its enhanced activity by virtue of dendritic cell targeting and uptake. Immature primary cells stimulated by the tricomponent vaccine, but not the β-mannan tetanus toxoid vaccine, showed activation of BMDCs. Moreover, treated BMDCs secreted increased levels of several cytokines, including TGF-β and IL-6, which are known activators of Th17 cells. Immunization of mice with the novel type of vaccine resulted in improved immune response manifested by high titers of Ab recognizing C. albicans β-mannan Ag. Vaccine containing laminarin also affected distribution of IgG subclasses, showing that vaccine targeting to Dectin-1 receptor can benefit from augmentation and immunomodulation of the immune response.

摘要

在之前尝试生成针对白色念珠菌的保护性疫苗时,β-甘露聚糖破伤风类毒素缀合物在小鼠中表现出较差的免疫原性。为了提高针对真菌病原体的特异性激活,我们旨在靶向 Dectin-1,这是一种在单核细胞、巨噬细胞和树突状细胞上表达的模式识别受体。将 Dectin-1 的β-葡聚糖配体裂褶多糖纳入原始的β-甘露聚糖破伤风类毒素缀合物中,提供了一种三组分缀合物疫苗。使用表达 Dectin-1 的巨噬细胞系来显示含β-葡聚糖的疫苗对 Dectin-1 信号转导途径的结合和激活。配体与 Dectin-1 的结合导致以下结果:1)Src 家族激酶和 Syk 的激活,其在结合缀合物附近募集和磷酸化;2)NF-κB 向核内易位。用三组分或对照疫苗处理未成熟的骨髓来源树突状细胞(BMDC)证实,含β-葡聚糖的疫苗通过树突状细胞靶向和摄取发挥其增强的活性。三组分疫苗刺激的未成熟原代细胞,但不是β-甘露聚糖破伤风类毒素疫苗,显示出 BMDC 的激活。此外,处理后的 BMDC 分泌了几种细胞因子的水平增加,包括 TGF-β 和 IL-6,它们是 Th17 细胞的已知激活剂。用新型疫苗免疫小鼠可改善免疫反应,表现为识别白色念珠菌β-甘露聚糖 Ag 的 Ab 高滴度。含裂褶多糖的疫苗也影响 IgG 亚类的分布,表明靶向 Dectin-1 受体的疫苗可以受益于免疫反应的增强和免疫调节。

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