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Lung metastasis-Harnessed in-Situ adherent porous organic nanosponge-mediated antigen capture for A self-cascaded detained dendritic cells and T cell infiltration
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Lung metastasis-Harnessed in-Situ adherent porous organic nanosponge-mediated antigen capture for A self-cascaded detained dendritic cells and T cell infiltration

Ting-Hsien Wu, Yu-Jen Lu, Min-Ren Chiang, Pin-Hua Chen, Yu-Sheng Lee, Ming-Yin Shen, Wen-Hsuan Chiang, Yu-Chen Liu, Chun-Yu Chuang, Hsiao-Chun Amy Lin, …
Biomaterials, 卷.305, 122443
03/2024

摘要

Antigen capture Dendritic cells Lung metastases Self-cascaded immunotherapy T cell infiltration Biophysics Bioengineering Ceramics and Composites Biomaterials Mechanics of Materials
The infiltration of cytotoxic T lymphocytes promises to suppress the most irresistible metastatic tumor for immunotherapy, yet immune privilege and low immunogenic responses in these aggressive clusters often restrict lymphocyte recruitment. Here, an in situ adherent porous organic nanosponge (APON) doubles as organ selection agent and antigen captor to overcome immune privilege is developed. With selective organ targeting, the geometric effect of APON composed of disc catechol-functionalized covalent organic framework (COF) boosts the drug delivery to lung metastases. Along with a self-cascaded immune therapy, the therapeutic agents promote tumor release of damage-associated molecular patterns (DAMPs), and then, in situ deposition of gels to capture these antigens. Furthermore, APON with catechol analogs functions as a reservoir of antigens and delivers autologous DAMPs to detain dendritic cells, resulting in a sustained enhancement of immunity. This disc sponges (APON) at lung metastasis as antigen reservoirs and immune modulators effectively suppress the tumor in 60 days and enhanced the survival rate.

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