细菌性肺炎
细菌
化学
体内
免疫系统
微生物学
巨噬细胞
细胞内
抗生素
炎症
肺炎
细菌生长
体外
细胞内寄生虫
膜
免疫疗法
抗生素治疗
活性氧
抗菌剂
细菌性脑膜炎
内生
作者
Weiqian Jin,Guoxing Ling,Jiaxiao Li,Shigao Ye,Yan Liu,Ruikai Zhu,Jing Qian,Yu Lan,Wenquan Lv,Jun Liu,Xiongwei Cai,Yongyuan Jian,Jingwei Jiang,Zuyuan Huang,Yuan Cao,Lin Liao,Ming Gao,C Luo,Baoshi Zheng
标识
DOI:10.1016/j.bioactmat.2026.06.004
摘要
The clinical therapy of infectious diseases such as bacterial pneumonia poses a major concern for the medical community. Traditional antibiotic therapies can be cytotoxic, and easy to develop bacterial resistance. Herein, we proposed a novel biomimetic nanoplatform called CM consisted of Cu based metal organic framework, and followed by being wrapped by macrophage membrane (MM). In vitro and in vivo results both confirmed that CM inherited the properties of original MM, specifically targeting the infectious site, achieved the near infrared (NIR) mediated Cu ions accumulation inside bacteria, and produced endogenous reactive oxygen species and inflammation related factors, ultimately resulting in the efficient bacteria elimination. In addition, transcriptomics and metabolomics revealed that CM + NIR induced intracellular Cu overload, thereby promoting bacterial cuproptosis. Significantly, CM + NIR roused immunoregulation to eliminate bacteria through inducing macrophage M1 polarization, and adjusting the number and proportion of immune cells. Altogether, CM + NIR promoted bacterial cuproptosis together with immunoactivation for all-stage bacterial elimination, resulting in precise bacterial pneumonia therapy, and also providing a generalized approach for targeted therapy of infectious diseases.
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