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Factors affecting T cell responses induced by fully synthetic glyco-gold-nanoparticles

机译:影响完全合成的Glyco-gold-nanoparticles诱导的T细胞反应的因素

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We have synthesized and characterized nearly monodisperse and highly pure gold nanoparticles (2 and 5 nm) coated with non-immunoactive mono- and disaccharides, modelled after the capsular polysaccharide of serogroup A of the Neisseria meningitidis bacterium. We have used them to test their ability to induce immune cell responses as a consequence of their multivalency. The results indicate that they are indeed immunoactive and that immunoactivity is strongly dependent on size, and larger, 5 nm nanoparticles perform far better than smaller, 2 nm ones. Immune response (activation of macrophages) initiates with the whole nanoparticle recognition by the surface of antigen-presenting cells, independent of the saccharide oligomerization (or charge) on the nanoparticle surface. The induction of T cell proliferation and the increase of IL.-2 levels, a consequence of the expression of MHC II involved in antigen presentation, require the presence of a disaccharide on the nanoparticle, not just a monosaccharide. A possible explanation is that, at this stage, the saccharides are detached from the gold surface. These results may provide leads for designing new saccharide-based, nanoparticle-conjugate vaccines.
机译:我们已经合成并表征了几乎单分散的和高度纯的金纳米颗粒(2和5 nm),这些粒子涂有非免疫活性的单糖和二糖,以奈瑟氏菌细菌的血清群A的囊囊多糖A进行建模。我们已经使用它们来测试其诱导免疫细胞反应的能力,这是由于它们的多价。结果表明它们确实具有免疫活性,并且免疫活性很大程度上取决于大小,并且较大的5 nm纳米颗粒的性能远胜于较小的2 nm。免疫反应(巨噬细胞的激活)通过抗原呈递细胞表面识别整个纳米颗粒,而与纳米颗粒表面上的糖糖寡聚(或电荷)无关。 T细胞增殖的诱导和IL.-2水平的增加,这是MHC II参与抗原表现的结果,需要在纳米颗粒上存在二糖,而不仅仅是单糖。一个可能的解释是,在此阶段,糖与金表面分离。这些结果可能为设计新的基于糖的纳米颗粒偶联疫苗提供潜在客户。

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