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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Oral co-administration of a bacterial protease inhibitor in the vaccine formulation increases antigen delivery at the intestinal epithelial barrier
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Oral co-administration of a bacterial protease inhibitor in the vaccine formulation increases antigen delivery at the intestinal epithelial barrier

机译:疫苗配方中的细菌蛋白酶抑制剂的口服共同施用增加了肠上皮屏障在肠道上皮屏障处的抗原输送

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摘要

The study of capture and processing of antigens (Ags) by intestinal epithelial cells is very important for development of new oral administration systems. Efficient oral Ag delivery systems must resist enzymatic degradation by gastric and intestinal proteases and deliver the Ag across biological barriers. The recombinant unlipidated outer membrane protein from Brucella spp. (U-Omp19) is a protease inhibitor with immunostimulatory properties used as adjuvant in oral vaccine formulations. In the present work we further characterized its mechanism of action and studied the interaction and effect of U-Omp19 on the intestinal epithelium. We found that U-Omp19 inhibited protease activity from murine intestinal brush-border membranes and cysteine proteases from human intestinal epithelial cells (IECs) promoting co-administered Ag accumulation within lysosomal compartments of IECs. In addition, we have shown that co-administration of U-Omp19 facilitated the transcellular passage of Ag through epithelial cell monolayers in vitro and in vivo while did not affect epithelial cell barrier permeability. Finally, oral co-delivery of U-Omp19 in mice induced the production of Ag-specific IgA in feces and the increment of CD103(+) CD11b(-) CD8 alpha(+) dendritic cells subset at Peyer's patches. Taken together, these data describe a new mechanism of action of a mucosal adjuvant and support the use of this rationale/strategy in new oral delivery systems for vaccines.
机译:肠上皮细胞抗原(AGS)的捕获和加工研究对于开发新的口服给药系统非常重要。高效的口腔AG递送系统必须通过胃和肠蛋白酶抵抗酶促降解,并在生物屏障中递送AG。来自BrucellaSPP的重组内膜外膜蛋白。 (U-OMP19)是一种蛋白酶抑制剂,其具有在口腔疫苗制剂中用作佐剂的免疫刺激性。在本工作中,我们进一步表征了其作用机制,并研究了U-OMP19对肠上皮的相互作用和作用。我们发现U-OMP19从人肠上皮细胞(IECS)抑制来自鼠肠刷边膜和半胱氨酸蛋白酶的蛋白酶活性,促进IECs溶酶体隔室内的共同施用的Ag积累。此外,我们已经表明,U-OMP19的共同施用通过上皮细胞单层在体外和体内促进了Ag的型叶细胞通过,同时不影响上皮细胞屏障渗透性。最后,小鼠U-OMP19的口服共同递送诱导粪便中的Ag特异性IgA的产生和Peyer斑块的CD103(+)CD11b( - )CD8α(+)树突细胞的增量。总之,这些数据描述了粘膜佐剂的新作用机制,并支持在新的口腔递送系统中使用这种理由/策略的疫苗。

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