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首页> 外文期刊>ACS nano >Multifunctional nanorods serving as nanobridges to modulate t cell-mediated immunity
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Multifunctional nanorods serving as nanobridges to modulate t cell-mediated immunity

机译:多功能纳米棒充当调节t细胞介导免疫力的纳米桥

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Electrodeposited nanorods serving as multivalent bridges were fabricated and surface-decorated with ligands for immune cells. Gold and nickel solutions were sequentially electrodeposited on nanoporous anodized disc templates and the template was dissolved to retrieve bisegmented nanorods with different lengths. Gold and nickel segmented nanorods were surface-immobilized with mannose and RGD peptides to prepare immune-cell recruiting nanorods. Surface- functionalization of nanorods were confirmed by fluorescence-labeling of each ligands and confocal microscopy. Dendritic cells and T cells were co-incubated with the surface-functionalized nanorods, and the proximity between the nanorods and the immune cells was visualized by variable pressure scanning electron microscopy and confocal microscopy. The long nanorods were associated with the immune cells, whereas the shorter nanorods were rather endocytosed by cells, suggesting a feasibility of the longer nanorods as bridging for the cells. Cytokine releases from the immune cells were monitored by cultivating lipopolysaccharide-activated dendritic cells with T cells. Interleukine-2 and interferon-γ release profiles showed a strong correlation with the length of the nanorod, where the 4 μm nanorods induced the highest levels of cytokine release compared to 1 or 2 μm nanorods. Thus, we concluded that the proximity of the immune cells increased by bridging the immune cells with the nanobridging system, which subsequently increased cytokine release by facilitating the antigen presentation process.
机译:制备了用作多价桥的电沉积纳米棒,并用免疫细胞的配体进行了表面修饰。金和镍溶液依次电沉积在纳米多孔阳极化圆盘模板上,并将模板溶解以回收具有不同长度的双段纳米棒。将金和镍分割的纳米棒表面固定有甘露糖和RGD肽,以制备免疫细胞募集纳米棒。通过每个配体的荧光标记和共聚焦显微镜证实了纳米棒的表面功能化。将树突状细胞和T细胞与表面功能化的纳米棒共孵育,并通过可变压力扫描电子显微镜和共聚焦显微镜观察纳米棒与免疫细胞之间的接近程度。较长的纳米棒与免疫细胞有关,而较短的纳米棒则被细胞内吞,这暗示了较长的纳米棒与细胞桥接的可行性。通过将脂多糖激活的树突状细胞与T细胞一起培养来监测免疫细胞的细胞因子释放。 Interleukine-2和γ干扰素的释放曲线与纳米棒的长度密切相关,与1或2μm纳米棒相比,4μm纳米棒诱导的细胞因子释放水平最高。因此,我们得出的结论是,通过将免疫细胞与纳米桥接系统连接起来,免疫细胞的亲和力增加,随后通过促进抗原呈递过程增加了细胞因子的释放。

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