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Reversing cancer immunoediting phases with a tumor-activated and optically reinforced immunoscaffold

Authors :
Xinchao Li
Xiuqi Liang
Wangxian Fu
Rui Luo
Miaomiao Zhang
Xiaorong Kou
Yi Zhang
Yingjie Li
Dongxue Huang
Yanjie You
Qinjie Wu
Changyang Gong
Source :
Bioactive Materials, Vol 35, Iss , Pp 228-241 (2024)
Publication Year :
2024
Publisher :
KeAi Communications Co., Ltd., 2024.

Abstract

In situ vaccine (ISV) is a promising immunotherapeutic tactic due to its complete tumoral antigenic repertoire. However, its efficiency is limited by extrinsic inevitable immunosuppression and intrinsic immunogenicity scarcity. To break this plight, a tumor-activated and optically reinforced immunoscaffold (TURN) is exploited to trigger cancer immunoediting phases regression, thus levering potent systemic antitumor immune responses. Upon response to tumoral reactive oxygen species, TURN will first release RGX-104 to attenuate excessive immunosuppressive cells and cytokines, and thus immunosuppression falls and immunogenicity rises. Subsequently, intermittent laser irradiation-activated photothermal agents (PL) trigger abundant tumor antigens exposure, which causes immunogenicity springs and preliminary infiltration of T cells. Finally, CD137 agonists from TURN further promotes the proliferation, function, and survival of T cells for durable antitumor effects. Therefore, cancer immunoediting phases reverse and systemic antitumor immune responses occur. TURN achieves over 90 % tumor growth inhibition in both primary and secondary tumor lesions, induces potent systemic immune responses, and triggers superior long-term immune memory in vivo. Taken together, TURN provides a prospective sight for ISV from the perspective of immunoediting phases.

Details

Language :
English
ISSN :
2452199X
Volume :
35
Issue :
228-241
Database :
Directory of Open Access Journals
Journal :
Bioactive Materials
Publication Type :
Academic Journal
Accession number :
edsdoj.4f766778544f42a7bff1750c4ab61a7b
Document Type :
article
Full Text :
https://doi.org/10.1016/j.bioactmat.2024.01.026