光合作用
材料科学
制氢
异质结
免疫疗法
氢化酶
人工光合作用
纳米技术
生物物理学
催化作用
氢
X射线光电子能谱
免疫系统
生物
生物化学
氢氧化物
电子供体
电子传输链
光化学
降级(电信)
电子转移
免疫增强剂
红螺科
电子受体
化学工程
糖原
细胞生物学
CD8型
组合化学
光合反应中心
电子
多糖
癌症免疫疗法
接受者
细胞
作者
Ruimin Xue,Chaojie Yu,Tao Wang,Yi Yang,Shibo Wang,Yanfang Zhu,Wanning Jin,Tingting Hu,Chaoliang Tan,Ruizheng Liang
摘要
ABSTRACT Photosynthetic hydrogen (H 2 )‐generating microbes represent a highly promising H 2 delivery platform for antitumor therapy due to their spontaneous tumor colonization and high catalytic selectivity. However, existing microbes suffer from inadequate near‐infrared (NIR) responsiveness and photoelectron injection. Here, we engineer a microbial‐semiconductor hybrid by electrostatically assembling copper sulfide‐loaded layered double hydroxide (LDH/CuS) nanosheets onto the surface of Rhodopseudomonas palustris ( R.P .) for NIR‐driven photosynthetic H 2 immunotherapy. The LDH/CuS enhances NIR capture and forms a p‒n heterojunction that weakens the electron exclusion barrier, enabling directed pumping of photogenerated electrons into R.P . Under 808 nm irradiation, the LDH/CuS heterojunction boosts photoelectron injection into the hydrogenase system of R.P . by 6.8‐fold, achieving highly efficient photosynthetic H 2 production. Notably, the R.P .@LDH/CuS actively colonizes hypoxic tumors with a high targeting efficiency of 73.2% and selectively converts tumor‐enriched lactic acid (LA) and glycogen into H 2 under NIR stimulation. Through the LA depletion and immunogenic cell death induction, the microbial‐semiconductor hybrid triggers potent antitumor immune responses, increasing infiltrated CD8 + T cells by over 9‐fold and achieving a remarkable tumor inhibition rate of 97.8%. This work presents an NIR‐driven biohybrid system with spatially directional electron pumping for efficient photosynthetic H 2 generation, advancing a promising paradigm for precision‐targeted tumor immunotherapy.
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