化学免疫疗法
生物正交化学
前药
犬尿氨酸
免疫系统
化学
串扰
癌症研究
免疫疗法
代谢途径
代谢工程
药理学
生物
色氨酸代谢
免疫抑制
新陈代谢
生物化学
细胞生物学
癌症免疫疗法
细胞
T细胞
作者
Yue Sun,Congcong Huang,Chenglong Ma,Chuanqi Zhao,Mengmeng Liu,Zitong Zhu,Yanjie Zhang,J. Ren J. Ren,Xiaogang Qu
标识
DOI:10.1002/adma.202517934
摘要
Bioorthogonal chemistry offers a promising approach for advancing chemoimmunotherapy, yet two critical challenges remain: (1) achieving deep tumor penetration of catalysts while ensuring precise tumor-confined prodrug activation, and (2) reversing metabolic immunosuppression to potentiate immunotherapy efficacy. To tackle these issues, here we fabricate a bioorthogonal probiotic nanosystem (NP@ZIF-8@Apt-Lr) by engineering prodrug catalysts and an indoleamine 2,3-dioxygenase (IDO) inhibitor onto AS1411 aptamer-modified Lactobacillus reuteri (Lr). AS1411-guided recognition and GSH-responsive prodrug decaging provide a double guarantee for tumor-selective drug activation, enabling localized tumor killing and further immunogenic cell death (ICD). Also, the inherent tumor-homing properties of Lr endow the nanosystem with the ability of penetrating deep tissue. More crucially, the released IDO inhibitor blocks the immunosuppressive kynurenine pathway of tryptophan metabolism, while Lr redirects tryptophan metabolism toward the immunostimulatory indole-3-aldehyde pathway through host-microbial crosstalk. Upon treatment, NP@ZIF-8@Apt-Lr overcomes immune tolerance and stimulates T lymphocyte infiltration into tumors. Furthermore, it significantly enhances the efficacy of chemoimmunotherapy by suppressing bilateral tumor development and inducing an immune memory response. This work presents a new strategy for enhancing bioorthogonal chemoimmunotherapy through precise prodrug activation and probiotic-mediated metabolic reprogramming by host-microbial crosstalk.
科研通智能强力驱动
Strongly Powered by AbleSci AI