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用于减轻炎症状况的模块化补体组装。

Modular complement assemblies for mitigating inflammatory conditions.

机构信息

Biomedical Engineering Department, Duke University, Durham, NC 27708.

Biomedical Engineering Department, Duke University, Durham, NC 27708

出版信息

Proc Natl Acad Sci U S A. 2021 Apr 13;118(15). doi: 10.1073/pnas.2018627118.

Abstract

Complement protein C3dg, a key linkage between innate and adaptive immunity, is capable of stimulating both humoral and cell-mediated immune responses, leading to considerable interest in its use as a molecular adjuvant. However, the potential of C3dg as an adjuvant is limited without ways of controllably assembling multiple copies of it into vaccine platforms. Here, we report a strategy to assemble C3dg into supramolecular nanofibers with excellent compositional control, using β-tail fusion tags. These assemblies were investigated as therapeutic active immunotherapies, which may offer advantages over existing biologics, particularly toward chronic inflammatory diseases. Supramolecular assemblies based on the Q11 peptide system containing β-tail-tagged C3dg, B cell epitopes from TNF, and the universal T cell epitope PADRE raised strong antibody responses against both TNF and C3dg, and prophylactic immunization with these materials significantly improved protection in a lethal TNF-mediated inflammation model. Additionally, in a murine model of psoriasis induced by imiquimod, the C3dg-adjuvanted nanofiber vaccine performed as well as anti-TNF monoclonal antibodies. Nanofibers containing only β-tail-C3dg and lacking the TNF B cell epitope also showed improvements in both models, suggesting that supramolecular C3dg, by itself, played an important therapeutic role. We observed that immunization with β-tail-C3dg caused the expansion of an autoreactive C3dg-specific T cell population, which may act to dampen the immune response, preventing excessive inflammation. These findings indicate that molecular assemblies displaying C3dg warrant further development as active immunotherapies.

摘要

补体蛋白 C3dg 是先天免疫和适应性免疫之间的关键连接物,能够刺激体液和细胞介导的免疫反应,因此作为分子佐剂引起了相当大的兴趣。然而,如果没有将多个 C3dg 可控地组装到疫苗平台中的方法,那么 C3dg 作为佐剂的潜力是有限的。在这里,我们报告了一种使用 β 尾融合标签将 C3dg 组装成具有出色组成控制的超分子纳米纤维的策略。这些组装体被研究为治疗性主动免疫疗法,与现有生物制剂相比,它们可能具有优势,特别是针对慢性炎症性疾病。基于包含β尾标记的 C3dg、TNF 的 B 细胞表位和通用 T 细胞表位 PADRE 的 Q11 肽系统的超分子组装体,针对 TNF 和 C3dg 均产生了强烈的抗体反应,并且用这些材料进行预防性免疫接种可显著改善致命性 TNF 介导的炎症模型中的保护作用。此外,在咪喹莫特诱导的银屑病小鼠模型中,C3dg 佐剂纳米纤维疫苗的疗效与抗 TNF 单克隆抗体相当。仅含有β尾-C3dg 且缺乏 TNF B 细胞表位的纳米纤维在两种模型中也均有改善,表明超分子 C3dg 本身发挥了重要的治疗作用。我们观察到,用β尾-C3dg 免疫会导致自身反应性 C3dg 特异性 T 细胞群体的扩增,这可能会起到抑制免疫反应、防止过度炎症的作用。这些发现表明,展示 C3dg 的分子组装体值得进一步开发为主动免疫疗法。

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