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通过将活病毒困在皮下自佐剂水凝胶中来预防寨卡病毒感染。

Immunization against Zika by entrapping live virus in a subcutaneous self-adjuvanting hydrogel.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou, China.

Qiushi Academy for Advanced Studies, Zhejiang University, Hangzhou, China.

出版信息

Nat Biomed Eng. 2023 Jul;7(7):928-942. doi: 10.1038/s41551-023-01014-4. Epub 2023 Mar 23.

Abstract

The threat of new viral outbreaks has heightened the need for ready-to-use vaccines that are safe and effective. Here we show that a subcutaneous vaccine consisting of live Zika virus electrostatically entrapped in a self-adjuvanting hydrogel recruited immune cells at the injection site and provided mice with effective protection against a lethal viral challenge. The hydrogel prevented the escape of the viral particles and upregulated pattern recognition receptors that activated innate antiviral immunity. The local inflammatory niche facilitated the engulfment of the virus by immune cells infiltrating the hydrogel, the processing and cross-presentation of antigens and the expansion of germinal centre B cells and induced robust antigen-specific adaptive responses and immune memory. Inflammatory immune niches entrapping live viruses may facilitate the rapid development of safe and efficacious vaccines.

摘要

新的病毒性爆发的威胁加剧了对安全有效的即用型疫苗的需求。在这里,我们表明,由静电包埋在自佐剂水凝胶中的活 Zika 病毒组成的皮下疫苗可募集注射部位的免疫细胞,并为小鼠提供针对致命病毒攻击的有效保护。水凝胶防止了病毒颗粒的逃逸,并上调了激活先天抗病毒免疫的模式识别受体。局部炎症小生境促进了浸润水凝胶的免疫细胞对病毒的吞噬作用、抗原的加工和交叉呈递以及生发中心 B 细胞的扩增,并诱导了强大的抗原特异性适应性反应和免疫记忆。包埋活病毒的炎症免疫小生境可能有助于安全有效的疫苗的快速开发。

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