首页> 外文期刊>Vaccine >Intradermally administered TLR4 agonist GLA-SE enhances the capacity of human skin DCs to activate T cells and promotes emigration of Langerhans cells.
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Intradermally administered TLR4 agonist GLA-SE enhances the capacity of human skin DCs to activate T cells and promotes emigration of Langerhans cells.

机译:皮内施用的TLR4激动剂GLA-SE增强了人类皮肤DC激活T细胞的能力,并促进了Langerhans细胞的迁移。

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The natural TLR4 agonist lipopolysaccharide (LPS) has notable adjuvant activity. However, it is not useful as a vaccine adjuvant due to its toxicity. Glucopyranosyl lipid A (GLA) is a synthetic derivative of the lipid A tail of LPS with limited cytotoxicity, but strong potential to induce immune responses in mice, guinea pigs, non-human primates, and humans. In this study we determined how this synthetic TLR4 agonist affects the function of different subsets of human skin dendritic cells (DCs). The effect of GLA in an aqueous formulation (GLA-AF) or in an oil-in-water emulsion (GLA-SE) was compared to that of LPS and TLR3 agonist poly(I:C) using a human skin explant model with intradermal injections for the administration of the agonists. Intradermal injection of GLA-SE or LPS, but not GLA-AF, enhanced the emigration of CD1ahigh/langerin+ Langerhans cells (LCs), but not dermal DCs (DDCs). LCs and CD14- DDCs exhibited an enhanced mature phenotype following intradermal administration of either of the two GLA formulations tested, similar to DCs that emigrated from LPS-injected skin. However, only injection of GLA-SE resulted in a significant increase in the production of the wide range of cytokines that is observed with LPS. Moreover, DCs that emigrated from GLA-SE-injected skin induced stronger CD4+ T-cell activation, as indicated by a more pronounced T-cell proliferation, than DCs from skin injected with GLA-AF or LPS. Altogether, our data show that GLA-SE has a notable potency to stimulate the function of skin DCs, indicating that GLA-SE may be a good candidate as adjuvant for vaccines administered via the intradermal route.Digital Object Identifier http://dx.doi.org/10.1016/j.vaccine.2012.04.051
机译:天然TLR4激动剂脂多糖(LPS)具有显着的佐剂活性。但是,由于其毒性,它不能用作疫苗佐剂。葡糖基糖基脂质A(GLA)是LPS脂质A尾巴的合成衍生物,具有有限的细胞毒性,但在小鼠,豚鼠,非人类灵长类动物和人类中具有很强的诱导免疫反应的潜力。在这项研究中,我们确定了这种合成的TLR4激动剂如何影响人类皮肤树突状细胞(DC)不同亚群的功能。使用带有皮肤内皮的人皮肤外植体模型,将GLA在水性制剂(GLA-AF)或水包油乳液(GLA-SE)中的作用与LPS和TLR3激动剂聚(I:C)的作用进行了比较激动剂的注射。皮内注射GLA-SE或LPS而不是GLA-AF可以促进CD1a high / langerin + Langerhans细胞(LC)的迁移,但不能促进皮肤DC(DDC)的迁移)。皮下注射两种测试的GLA制剂后,LC和CD14 - DDC表现出增强的成熟表型,类似于从注射LPS的皮肤移出的DC。但是,仅注射GLA-SE会导致LPS所观察到的多种细胞因子的产生显着增加。而且,从注射了GLA-SE的皮肤中移出的DC诱导的CD4 + T细胞活化性强于T细胞增殖,这比注射了GLA-AF或LPS的皮肤的DC更为明显。 。总而言之,我们的数据表明GLA-SE具有刺激皮肤DC功能的显着功效,表明GLA-SE可能是通过皮内途径施用疫苗的佐剂的良好候选者。标识符http://dx.doi.org/10.1016/j.vaccine.2012.04.051

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