材料科学
纳米纤维
佐剂
纳米技术
免疫系统
化学工程
生物物理学
免疫学
医学
生物
工程类
作者
Haixue Jia,Lin Jia,Dianyu Wang,Xue Lv,Qian Wang,Zhongyan Wang,Jinjian Liu,Lijun Yang,Jianfeng Liu
标识
DOI:10.1002/adfm.202315442
摘要
Abstract Limited ability to elicit cellular immune responses has restricted the effectiveness of conventional adjuvants in the context of cancers. Recent advancements in innate immune activation mechanism investigations have paved the way for the implementation of a “bottom‐up” approach in the development of novel adjuvants. Herein, a simple hydrogel adjuvant with a uniformly organized nanoscale microstructure, termed MnP gel is devised, by employing self‐assembling peptides incorporated with manganese ions (Mn 2+ ). MnP gel exhibits Mn 2+ sustained‐release properties in vivo and effectively promotes germinal center formation, thereby facilitating the generation of antibodies at levels comparable to conventional aluminum‐based adjuvants. Moreover, MnP gel transcends the scope of humoral immunity, demonstrating the ability to robustly trigger cellular immune responses and positioning it as a promising candidate for cancer prevention and treatments. In conclusion, the work has introduced a well‐defined hydrogel adjuvant as a proof‐of‐concept, simplifying vaccine adjuvant design and opening up new avenues for “on‐demand” immunomodulation strategies.
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