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Enhancing immunomodulation on innate immunity by shape transition among RNA triangle square and pentagon nanovehicles

机译:通过RNA三角形正方形和五边形纳米车辆之间的形状转换增强对先天免疫的免疫调节

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摘要

Modulation of immune response is important in cancer immunotherapy, vaccine adjuvant development and inflammatory or immune disease therapy. Here we report the development of new immunomodulators via control of shape transition among RNA triangle, square and pentagon. Changing one RNA strand in polygons automatically induced the stretching of the interior angle from 60° to 90° or 108°, resulting in self-assembly of elegant RNA triangles, squares and pentagons. When immunological adjuvants were incorporated, their immunomodulation effect for cytokine TNF-α and IL-6 induction was greatly enhanced in vitro and in animals up to 100-fold, while RNA polygon controls induced unnoticeable effect. The RNA nanoparticles were delivered to macrophages specifically. The degree of immunostimulation greatly depended on the size, shape and number of the payload per nanoparticles. Stronger immune response was observed when the number of adjuvants per polygon was increased, demonstrating the advantage of shape transition from triangle to pentagon.
机译:免疫应答的调节在癌症免疫疗法,疫苗佐剂开发以及炎性或免疫疾病疗法中很重要。在这里,我们报告通过控制RNA三角形,正方形和五边形之间的形状过渡来开发新的免疫调节剂。在多边形中改变一根RNA链会自动将内角从60°拉伸到90°或108°,从而导致优雅的RNA三角形,正方形和五边形的自组装。掺入免疫佐剂后,它们对细胞因子TNF-α和IL-6诱导的免疫调节作用在体外和在动物中可大大增强,最高可达100倍,而RNA多边形对照则诱导了不起的作用。将RNA纳米颗粒特异性地递送至巨噬细胞。免疫刺激的程度很大程度上取决于每个纳米颗粒的有效载荷的大小,形状和数量。当每个多边形的佐剂数量增加时,观察到更强的免疫反应,证明了从三角形到五边形的形状转变的优势。

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