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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Ragweed pollen as an oral vaccine delivery system: Mechanistic insights
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Ragweed pollen as an oral vaccine delivery system: Mechanistic insights

机译:Ragweed Pollen作为口腔疫苗交付系统:机械洞察力

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AbstractWe have recently developed pollen grains (PGs) as a unique method to deliver vaccines orally. Extensive chemical processing ensures allergen-free pollen microcapsules that can be loaded with vaccine antigens. Successful oral vaccine delivery has been previously demonstrated by us in a mouse model. However, the underlying mechanisms that help the processed PGs to achieve this goal were not fully understood. In this study, we wanted to understand the effects of chemically processed ragweed pollen (Ambrosia elatior) on the innate immune system. Intestinal epithelial cells, macrophages, and dendritic cells all bridge the innate and adaptive immunity. This study has shown that in response to ragweed pollen all these cells release inflammatory cytokines and chemokines. Scanning electron microscopy imaging revealed that macrophages can engulf ragweed pollen. In addition, in the presence of ragweed, mouse dendritic cells upregulated their activation markers, that is, CD40, CD80, CD86, and MHC class II molecules. Ragweed pollens did not cause significant cell membrane damage as compared to similarly sized poly (lactic-co-glycolic acid) particles. Moreover, ragweed did not affect the integrity of the intestinal epithelial cells. Ragweed pollens were also found in the subepithelial region of the small intestine 24h after pollens were gavaged to mice. Our current findings lead to the conclusion that besides transporting the vaccine cargo, ragweed pollen shells have additional immunomodulatory properties that help the orally delivered antigen to effectively induce an immune response.
机译:<![cdata [ 抽象 我们最近开发了花粉谷物(PGS)作为口服送疫苗的独特方法。广泛的化学加工可确保无过敏原花粉微胶囊,其可以用疫苗抗原装载。我们以前在小鼠模型中展示了成功的口腔疫苗递送。然而,帮助加工PGS实现这一目标的潜在机制尚未完全理解。在这项研究中,我们希望了解化学加工的豚草花粉的影响( ambrosia helatior )在先天免疫系统上。肠上皮细胞,巨噬细胞和树突细胞全部桥接先天和适应性免疫。本研究表明,响应豚草花粉所有这些细胞释放出炎性细胞因子和趋化因子。扫描电子显微镜成像显示,巨噬细胞可以收集牛草花粉。另外,在豚草存在下,小鼠树突细胞上调其活化标志物,即CD40,CD80,CD86和MHC II类分子。与类似大小的聚(乳酸 - Co - 乙醇酸)颗粒相比,豚草花粉不会引起显着的细胞膜损伤。此外,豚草不影响肠上皮细胞的完整性。在花粉急于小鼠的情况下,在小肠的耻骨区域中也发现豚草花粉。我们目前的调查结果导致得出结论,除了运输疫苗货物外,豚草花粉壳还具有额外的免疫调节性质,帮助口服递送抗原有效诱导免疫应答。

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