Unleashing the potential of bimetallic nanobomb-mediated STING pathway to enhance bispecific T-cell engager against colorectal cancer photo-immunotherapy
Mu Min, Li Hui, Chen Bo, Fan Rangrang, Zhong Kunhong, Wang Guoqing, Feng Chenqian, Chen Nianyong, Guo Gang, Tong Aiping, Zou Bingwen
Journal:Signal Transduction and Targeted Therapy
IF:81.2
DOI:10.1038/s41392-026-02596-6
PMID:41781380
Published:2026-03-05
research field:肿瘤学生物材料分子靶向治疗免疫学光热疗法癌症免疫治疗纳米医学
Abstract
The broader clinical application of Bispecific T-cell engagers (BiTEs) is hindered by their short half-life, on-target off-tumor toxicity, and limited therapeutic effect for solid tumors. Herein, we constructed a bimetallic-enriched triple-kill nanobomb manganese/Co 2+ -dopamine@BiTE/HPT (MnO 2 /Co-DA@BiTE/HPT) based on metal-polyphenol to improve the immunosuppressive tumor microenvironment by activating innate and adaptive immunity, thereby enhancing the treatment efficacy of BiTEs (PD-L1/CD3). A hyaluronic acid-modified PD-L1 aptamer (HPT) was introduced to improve the active targeting of the nanobombs and bind with PD-L1 overexpressing colorectal cancer. Bimetallic (Mn 2+ /Co 2+ ) activated the STING pathway; simultaneously, photothermal therapy (PTT) induces DNA fragmentation to cooperate with bimetallic to amplify the STING signal to “heat” the “cold” tumor microenvironment. The “hot” tumor with a large amount of T-cell infiltration facilitated BiTE recruitment of T cells to kill tumor cells. Furthermore, the efficient therapeutic potency of the triple-kill nanobombs (STING, BiTE, and PTT) was determined in subcutaneous colorectal cancer, distal, lung metastasis, and postoperative recurrence models, which indicated that MnO 2 /Co-DA@BiTE/HPT could improve the immune microenvironment, produce long-term immune memory, inhibit tumor growth, and prevent tumor recurrence and metastasis.
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