Wei Qi, Liu Shixian, Huang Xu, Xin Hua, Ding Jianxun
Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, 5625 Renmin Street, Changchun 130022, China.
Department of Thoracic Surgery, China-Japan Union Hospital of Jilin University, 126 Xiantai Street, Changchun 130033, China.
Biosaf Health. 2022 Dec 2;5(1):45-61. doi: 10.1016/j.bsheal.2022.11.002. eCollection 2023 Feb.
Infectious diseases are severe public health events that threaten global health. Prophylactic vaccines have been considered as the most effective strategy to train the immune system to recognize and clear pathogenic infections. However, the existing vaccines against infectious diseases have several limitations, such as difficulties in mass manufacturing and storage, weak immunogenicity, and low efficiency of available adjuvants. Biomaterials, especially functional polymers, are expected to break through these bottlenecks based on the advantages of biocompatibility, degradability, controlled synthesis, easy modification, precise targeting, and immune modulation, which are excellent carriers and adjuvants of vaccines. This review mainly summarizes the application of immunologically effective polymers-enhanced vaccines against viruses- and bacteria-related infectious diseases and predicted their potential improvements.
传染病是威胁全球健康的严重公共卫生事件。预防性疫苗被认为是训练免疫系统识别和清除致病性感染的最有效策略。然而,现有的针对传染病的疫苗存在一些局限性,如大规模生产和储存困难、免疫原性弱以及现有佐剂效率低等问题。生物材料,尤其是功能聚合物,基于其生物相容性、可降解性、可控合成、易于修饰、精确靶向和免疫调节等优势,有望突破这些瓶颈,它们是优秀的疫苗载体和佐剂。本综述主要总结了免疫有效聚合物增强疫苗在抗病毒和细菌相关传染病方面的应用,并预测了它们可能的改进方向。