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Immunomodulatory nanogels overcome restricted immunity in a murine model of gut microbiome–mediated metabolic syndrome

机译:免疫调节纳米凝胶克服了肠道微生物组介导的代谢综合征小鼠模型中的受限免疫

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Biomaterials-based nanovaccines, such as those made of poly(lactic-co-glycolic acid) (PLGA), can induce stronger immunity than soluble antigens in healthy wild-type mouse models. However, whether metabolic syndrome can influence the immunological responses of nanovaccines remains poorly understood. Here, we first show that alteration in the sensing of the gut microbiome through Toll-like receptor 5 (TLR5) and the resulting metabolic syndrome in TLR5sup?/?/sup mice diminish the germinal center immune response induced by PLGA nanovaccines. The PLGA nanovaccines, unexpectedly, further changed gut microbiota. By chronically treating mice with antibiotics, we show that disrupting gut microbiome leads to poor vaccine response in an obesity-independent manner. We next demonstrate that the low immune response can be rescued by an immunomodulatory Pyr-pHEMA nanogel vaccine, which functions through TLR2 stimulation, enhanced trafficking, and induced stronger germinal center response than alum-supplemented PLGA nanovaccines. The study highlights the potential for immunomodulation under gut-mediated metabolic syndrome conditions using advanced nanomaterials.
机译:在健康的野生型小鼠模型中,基于生物材料的纳米疫苗,例如由聚乳酸-乙醇酸(PLGA)制成的纳米疫苗,可以诱导比可溶性抗原更强的免疫力。但是,代谢综合征是否可以影响纳米疫苗的免疫反应仍知之甚少。在这里,我们首先表明,通过Toll样受体5(TLR5)对肠道微生物组的感知改变以及由此产生的TLR5 ?/?小鼠代谢综合征减少了PLGA诱导的生发中心免疫反应。纳米疫苗。意外地,PLGA纳米疫苗进一步改变了肠道菌群。通过长期用抗生素治疗小鼠,我们显示破坏肠道微生物组会导致肥胖反应无关的不良疫苗反应。接下来,我们证明低免疫应答可以通过免疫调节的Pyr-pHEMA纳米凝胶疫苗来挽救,该疫苗通过TLR2刺激,增强的运输以及比铝补充的PLGA纳米疫苗更强的生发中心反应而起作用。该研究强调了使用先进的纳米材料在肠道介导的代谢综合征条件下进行免疫调节的潜力。

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