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Gut Microbiome and Associated Systemic Inflammation Regulates Trafficking of Engineered Nanovaccines

机译:肠道微生物组和相关的系统性炎症调节贩运工程纳米虫植物

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Conclusion: Here we demonstrate that polymeric nanoparticle vaccines can have varied distribution in body as a function of gut associated systemic inflammation, which previously has not been adequately considered in vaccination studies. This work has the potential to provide the first evidence that changes in gut flora (the upstream cause of the TLR5-/- phenotype) can influence vaccine's interaction with antigen presenting cells and resulting B and T cell adaptive immunity by altering local and systemic inflammation. Our ability to better understand how biomaterials-based pathogen-mimicking micro and nanoparticle vaccines trigger and control mammalian immunity across various demographics, will greatly help the design and clinical translation of more effective vaccines against emerging infectious diseases, HIV/AIDS, cancer, etc.
机译:结论:在这里,我们证明聚合物纳米颗粒疫苗可以作为肠道相关的系统性炎症的函数具有变化的身体分布,该炎症前面尚未得到足够的疫苗接种研究。这项工作有可能提供肠道菌群变化(TLR5 / - 表型的上游原因)的第一种证据可以通过改变局部和全身炎症来影响与抗原呈递细胞的疫苗与抗原的相互作用影响。我们能够更好地了解基于生物材料的病原体 - 模仿微型和纳米颗粒疫苗触发和控制各种人口统计数据的哺乳动物免疫力,将极大地帮助更有效的疫苗对新兴传染病,艾滋病毒/艾滋病,癌症等的设计和临床翻译。

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