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首页> 外文期刊>Biomaterials >Tuning the immune response of dendritic cells to surface-assembled poly(I:C) on microspheres through synergistic interactions between phagocytic and TLR3 signaling.
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Tuning the immune response of dendritic cells to surface-assembled poly(I:C) on microspheres through synergistic interactions between phagocytic and TLR3 signaling.

机译:通过吞噬和TLR3信号之间的协同相互作用,调节树突状细胞对微球表面组装的poly(I:C)的免疫反应。

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摘要

The artificial dsRNA polyriboinosinic acid-polyribocytidylic acid, poly(I:C), is a potent adjuvant candidate for vaccination, as it strongly drives cell-mediated immunity. However, because of its effects on non-immune bystander cells, poly(I:C) administration may bear danger for the development of autoimmune diseases. Thus poly(I:C) should be applied in the lowest dose possible. We investigated microspheres carrying surface-assembled poly(I:C) as a two-in-one adjuvant formulation to stimulate maturation of monocyte-derived dendritic cells (MoDCs). Negatively charged polystyrene microspheres were equipped with a poly(ethylene glycol) corona through electrostatically driven surface assembly of a library of polycationic poly(l-lysine)-graft-poly(ethylene glycol) copolymers, PLL-g-PEG. Stable surface assembly of poly(I:C) was achieved by incubation of polymer-coated microspheres in an aqueous poly(I:C) solution. Surface-assembled poly(I:C) exhibited a strongly enhanced efficacy to stimulate maturation of MoDCs by up to two orders of magnitude, as compared to free poly(I:C). Multiple phagocytosis events were the key factor to enhance the efficacy. The cytokine secretion pattern of MoDCs after exposure to surface-assembled poly(I:C) differed from that of free poly(I:C), while their ability to stimulate T cell proliferation was similar. Overall, phagocytic signaling plays an important role in defining the resulting immune response to such two-in-one adjuvant formulations.
机译:人工dsRNA聚核糖苷酸-聚核糖酸(poly:I:C)是有效的疫苗佐剂,因为它强烈驱动细胞介导的免疫。但是,由于其对非免疫旁观者细胞的作用,聚(I:C)给药可能对自身免疫性疾病的发展产生危险。因此,聚(I:C)应该以最低剂量使用。我们调查了携带表面组装的聚(I:C)作为二合一佐剂配方的微球,以刺激单核细胞衍生的树突状细胞(MoDCs)的成熟。带有负电荷的聚苯乙烯微球通过聚阳离子聚(1-赖氨酸)-接枝-聚(乙二醇)共聚物,PLL-g-PEG库的静电驱动表面组装而配备了聚乙二醇电晕。聚(I:C)的表面稳定组装是通过在聚(I:C)水溶液中孵育聚合物涂层的微球来实现的。与游离的Poly(I:C)相比,表面组装的poly(I:C)刺激MoDCs的成熟度大大提高了两个数量级。多次吞噬事件是提高疗效的关键因素。暴露于表面组装的聚(I:C)后,MoDCs的细胞因子分泌模式与游离的聚(I:C)不同,而它们刺激T细胞增殖的能力却相似。总体而言,吞噬信号在确定对此类二合一佐剂制剂的最终免疫应答中起重要作用。

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