免疫系统
肿瘤微环境
免疫疗法
细胞外基质
癌症研究
细胞生物学
重编程
CD8型
趋化因子
生物
材料科学
免疫学
细胞
生物化学
作者
Duo Wang,Mengqi Zhang,Guanhua Qiu,Chao Rong,Xiaoqi Zhu,Guchun Qin,Cunqing Kong,Jing Zhou,Xiayi Liang,Zhaoting Bu,Junjie Liu,Tao Luo,Jianjun Yang,Kun Zhang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-03-14
卷期号:17 (6): 5503-5516
被引量:32
标识
DOI:10.1021/acsnano.2c10845
摘要
Incomplete microwave ablation (iMWA) caused by uncontrollable heat diffusion enhances the immunosuppressive tumor microenvironment (ITM), consequently disabling the prevalent immune checkpoint blockade-combined immunotherapy against tumor recurrence. Herein, we successfully constructed an intratumorally synthesized Au bioreactor to disperse heat in thermally sensitive hydrogel-filled tumors and improve the energy utilization efficiency, which magnified the effective ablation zone (EAZ), counteracted iMWA, and simultaneously established and enhanced multiple biological process-regulated microwavegenetics. More significantly, we identified the extracellular matrix (ECM) viscosity as a general immune escape "target". After remodeling ECM, including ECM ingredients and cell adhesion molecules, this physical target was blocked by viscosity reprogramming, furnishing an effective tool to regulate the viscosity target. Thereby, such in situ Au bioreactor-enlarged EAZ and enhanced microwavegenetics reversed the immune-desert tumor microenvironment, mitigated ITM, secreted immune cell-attracting chemokines, recruited and polarized various immune cells, and activated or reactivated them like dendritic cells, natural killing cells, M1-type macrophages, and effector CD8+ or CAR-T cells. Contributed by these multiple actions, the in situ oncolytic Au bioreactors evoked CAR-T immunotherapy to acquire a considerably increased inhibition effect against tumor progression and recurrence after iMWA, thus providing a general method to enhance iMWA and CAR-T immunotherapy.
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