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首页> 外文期刊>The journal of immunology >Effective Combination Adjuvants Engage Both TLR and Inflammasome Pathways To Promote Potent Adaptive Immune Responses
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Effective Combination Adjuvants Engage Both TLR and Inflammasome Pathways To Promote Potent Adaptive Immune Responses

机译:有效的组合佐剂参与TLR和炎症小体途径,以促进有效的适应性免疫反应。

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The involvement of innate receptors that recognize pathogen- and danger-associated molecular patterns is critical to programming an effective adaptive immune response to vaccination. The synthetic TLR4 agonist glucopyranosyl lipid adjuvant (GLA) synergizes with the squalene oil-in-water emulsion (SE) formulation to induce strong adaptive responses. Although TLR4 signaling through MyD88 and TIR domain–containing adapter inducing IFN-β are essential for GLA-SE activity, the mechanisms underlying the synergistic activity of GLA and SE are not fully understood. In this article, we demonstrate that the inflammasome activation and the subsequent release of IL-1β are central effectors of the action of GLA-SE, as infiltration of innate cells into the draining lymph nodes and production of IFN-γ are reduced in ASCsup?/?/sup animals. Importantly, the early proliferation of Ag-specific CD4sup+/sup T cells was completely ablated after immunization in ASCsup?/?/sup animals. Moreover, numbers of Ag-specific CD4sup+/sup T and B cells as well as production of IFN-γ, TNF-α, and IL-2 and Ab titers were considerably reduced in ASCsup?/?/sup, NLRP3sup?/?/sup, and IL-1Rsup?/?/sup mice compared with wild-type mice and were completely ablated in TLR4sup?/?/sup animals. Also, extracellular ATP, a known trigger of the inflammasome, augments Ag-specific CD4sup+/sup T cell responses, as hydrolyzing it with apyrase diminished adaptive responses induced by GLA-SE. These data thus demonstrate that GLA-SE adjuvanticity acts through TLR4 signaling and NLRP3 inflammasome activation to promote robust Th1 and B cell responses to vaccine Ags. The findings suggest that engagement of both TLR and inflammasome activators may be a general paradigm for induction of robust CD4 T cell immunity with combination adjuvants such as GLA-SE.
机译:识别病原体和危险相关分子模式的先天受体的参与对于编程有效的针对疫苗的适应性免疫反应至关重要。合成的TLR4激动剂吡喃葡萄糖基脂质佐剂(GLA)与角鲨烯水包油乳液(SE)制剂协同作用,以诱导强烈的适应性反应。尽管通过MyD88和含TIR结构域的衔接子诱导IFN-β的TLR4信号转导对于GLA-SE活性是必不可少的,但尚未完全了解GLA和SE协同活性的潜在机制。在本文中,我们证明了炎症小体激活和随后的IL-1β释放是GLA-SE作用的主要效应器,因为在ASC中,先天细胞向引流淋巴结的浸润和IFN-γ的产生减少了。 sup>?/?动物。重要的是,在ASC ?/?动物中免疫后,Ag特异性CD4 + T细胞的早期增殖被完全消除。此外,在ASC α/中,Ag特异性CD4 + T和B细胞的数目以及IFN-γ,TNF-α和IL-2和Ab效价的产生显着降低。与野生型小鼠相比,?,NLRP3 ?/?和IL-1R ?/?小鼠在TLR4 ?/中被完全切除。 ?动物。此外,细胞外ATP(一种已知的炎症小体触发物)可增强Ag特异性CD4 + T细胞的反应,因为用腺苷三磷酸酶水解可减弱GLA-SE诱导的适应性反应。因此,这些数据证明,GLA-SE佐剂通过TLR4信号转导和NLRP3炎性小体激活来起作用,从而促进了对疫苗Ags的强劲的Th1和B细胞应答。这些发现表明,TLR和炎性体激活剂的结合可能是使用佐剂(例如GLA-SE)诱导强大的CD4 T细胞免疫力的一般范例。

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