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首页> 外文期刊>Molecular pharmaceutics >Poly(I:C)-Encapsulating Nanoparticles Enhance Innate Immune Responses to the Tuberculosis Vaccine Bacille Calmette-Guerin (BCG) via Synergistic Activation of Innate Immune Receptors
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Poly(I:C)-Encapsulating Nanoparticles Enhance Innate Immune Responses to the Tuberculosis Vaccine Bacille Calmette-Guerin (BCG) via Synergistic Activation of Innate Immune Receptors

机译:聚(i:c)占纳米颗粒,通过共同免疫受体的协同活化增强对结核病疫苗Bacilly-guerin(BCG)的先天免疫应答

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摘要

The attenuated live vaccine strain bacille Calmette Guerin (BCG) is currently the only available vaccine against tuberculosis (TB), but is largely ineffective against adult pulmonary TB, the most common disease form. This is hi part due to BCG's ability to interfere with the host innate immune response, a feature that might be targeted to enhance the potency of this vaccine. Here, we investigated the ability of chitosan-based nanoparticles (pIC-NPs) containing polyinosinic polycytidylic acid (poly(I:C)), an inducer of innate immunity via Toll-like receptor 3 (TLR3), to enhance the immunogenicity of BCG in mouse bone marrow derived macrophages (BMDM) in vitro. Incorporation of poly(I:C) into NPs protected it against degradation by ribonudeases and increased its uptake by mouse BMDM. Whereas soluble poly(I:C) was ineffective, pIC-NPs strongly enhanced the proinflammatory immune response of BCG-infected macrophages in a synergistic fashion, as evident by increased production of cytokines and induction of nitric oxide synthesis. Using macrophages from mice deficient in key signaling molecules involved in the pathogen recognition response, we identified combined activation of MyD88- and TRIF-dependent TLR signaling pathways to be essential for the synergistic effect between BCG and NP. Moreover, synergy was strongly dependent on the order of the two stimuli, with TLR activation by BCG functioning as the priming event for the subsequent pIC-NP stimulus, which acted through an auto-/paracrine type I interferon (IFN) feedback loop. Our results provide a foundation for a promising new approach to enhance BCG-vaccine immunogenicity by costimulation with NPs. They also contribute to a molecular understanding of the observed synergistic interaction between the pIC-NPs and BCG vaccine.
机译:衰减的活疫苗菌株Bacille Calmette Guerin(BCG)目前是唯一可用的抗结核(TB)的疫苗(TB),但对成年肺结核,最常见的疾病形式很大程度上无效。这是由于BCG干扰主体先天免疫反应的能力,这是一个可能靶向增强该疫苗的效力的特征。在这里,我们研究了含壳聚糖的纳米颗粒(PIC-NPS)的聚胞苷多环酸(Poly(I:C))的能力,通过Toll样受体3(TLR3)是先天免疫的诱导剂,以增强BCG的免疫原性在小鼠骨髓中衍生巨噬细胞(BMDM)体外。将Poly(I:C)的掺入NPS保护其免受核心赎回酶降解,并通过小鼠BMDM增加其摄取。然而,可溶性多(I:C)无效,PIC-NPS以协同的方式强大地增强了BCG感染的巨噬细胞的促炎症免疫应答,这是通过增加细胞因子的产生和一氧化氮合成的产生显而易见。在涉及病原体识别响应中涉及的关键信号传导分子中使用缺乏小鼠的巨噬细胞,我们确定了MyD88和TRIF依赖性TLR信号传导途径的组合激活,对于BCG和NP之间的协同效应是必不可少的。此外,协同作用强烈依赖于两种刺激的顺序,通过BCG的TLR激活作为随后的PIC-NP刺激的引发事件,其通过自动/旁静脉I型干扰素(IFN)反馈回路。我们的结果为具有NPS共刺激增强BCG-疫苗免疫原性的有前途的新方法提供了基础。它们还有助于对PIC-NPS和BCG疫苗之间观察到的协同相互作用的分子理解。

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