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The CpG molecular structure controls the mineralization of calcium phosphate nanoparticles and their immunostimulation efficacy as vaccine adjuvants

机译:中央人民政府控制分子结构矿化的磷酸钙纳米颗粒和他们immunostimulation作为疫苗的功效佐剂

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The co-precipitation of calcium phosphate nanoparticles (CaPs) in the presence of nucleotide chains such as polynucleotides (i.e., plasmid DNA and siRNA) and oligonucleotides has been extensively used for pre-clinical gene or drug delivery and immunotherapy studies. However, the exact role of these molecules in mineralization and tuning the physicochemical characteristics of the synthesized CaPs is still not entirely clear. In this study, we evaluated the effects of three different CpG oligodeoxynucleotides (ODN) and two representative nucleic acids (siRNA and DNA), when used as templates for the formation of CaPs. We examined the influence of CpGs with naturally-occurring phosphodiester or modified phosphorothioate backbones on the homogeneous formation of CaPs from a modified simulated body fluid solution. The hydrodynamic size, size polydispersity, morphology and surface charge of the CaPs were used as the most critical checkpoints to unravel the involved mechanisms. Our results show that the characteristics of CaPs are highly dependent on the composition, backbone, sequence and concentrations of the CpGs. The CpG type and concentration control the size distribution of the mineralized CaPs and their immunostimulation performance as verified by the activation of dendritic cells and secretion of the pro-inflammatory interleukin-6 (IL-6) cytokine, type I interferon-alpha (IFN-alpha) and co-stimulatory CD80, CD86 and CD40 markers. This study paves the way for better design of more efficient CaPs loaded with different types of CpGs for immunostimulation applications as vaccine adjuvants.
机译:磷酸钙的共同沉淀纳米颗粒(帽)的存在核苷酸链等分布(即质粒DNA和核)和寡核苷酸被广泛用于临床前基因或药和免疫治疗研究。这些分子的确切作用矿化和调整物理化学合成帽仍的特征不清楚。三个不同的CpG的影响oligodeoxynucleotides (ODN)和两个小干扰rna和DNA核酸代表(),当用作模板帽的形成。我们检查了论文认定的影响自然产生的磷酸二酯或修改在均匀phosphorothioate骨干从修改模拟身体形成帽液的解决方案。多分散性,形态和表面电荷的帽被用作最关键检查点解开相关机制。我们的结果表明,帽子的特点是高度依赖于组成,骨干,序列和浓度论文认定。粒度分布和矿化的上限他们immunostimulation性能验证树突状细胞的活化的炎性分泌白细胞介素- 6细胞因子(il - 6)、I型α干扰素(IFN-alpha)和co-stimulatory CD80、CD86和CD40标记。设计更高效的帽子装满不同类型的论文认定immunostimulation应用程序作为疫苗佐剂。

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