脾脏
免疫系统
免疫学
免疫疗法
抗原
淋巴系统
抗原呈递
淋巴
医学
免疫
交叉展示
生物
癌症研究
T细胞
病理
作者
Xuanyi He,Jing Wang,Yuqing Tang,Seok Theng Chiang,Tianzhen Han,Qi Chen,Chunxi Qian,Xiaoshuai Shen,Rongxiu Li,Xiangzhao Ai
标识
DOI:10.1002/adhm.202300351
摘要
Abstract Vaccines provide a powerful tool to modulate the immune system for human disease prevention and treatment. Classical vaccines mainly initiate immune responses in the lymph nodes (LNs) after subcutaneous injection. However, some vaccines suffer from inefficient delivery of antigens to LNs, undesired inflammation, and slow immune induction when encountering the rapid proliferation of tumors. Alternatively, the spleen, as the largest secondary lymphoid organ with a high density of antigen‐presenting cells (APCs) and lymphocytes, acts as an emerging target organ for vaccinations in the body. Upon intravenous administration, the rationally designed spleen‐targeting nanovaccines can be internalized by the APCs in the spleen to induce selective antigen presentation to T and B cells in their specific sub‐regions, thereby rapidly boosting durable cellular and humoral immunity. Herein, the recent advances of spleen‐targeting nanovaccines for immunotherapy based on the anatomical architectures and functional zones of the spleen, as well as their limitations and perspectives for clinical applications are systematically summarized. The aim is to emphasize the design of innovative nanovaccines for enhanced immunotherapy of intractable diseases in the future.
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