生物膜
光热治疗
重编程
渗透(战争)
抗菌剂
材料科学
右旋糖酐
免疫系统
生物污染
胞外聚合物
化学
细胞外基质
纳米技术
微生物学
生物物理学
先天免疫系统
细菌
热疗
药物输送
前药
自愈水凝胶
铜绿假单胞菌
双重角色
免疫疗法
细胞外
体内
炎症
附带损害
巨噬细胞
作者
Lu Chen,Yan Luo,Yujing Chen,Xiaoyi Zhao,Zheng Wang,Dandan Sui,Fu‐Jian Xu,Yusheng Li,Nana Zhao
标识
DOI:10.1002/adfm.202532113
摘要
ABSTRACT Bacterial biofilms represent a major clinical challenge due to their inherent tolerance to antimicrobials and ability to subvert host immune responses. The dense extracellular polymeric substance (EPS) matrix not only limits the penetration of antibacterial agents but also polarizes macrophages toward an anti‐inflammatory M2 phenotype, further impairing bacterial clearance. To address these dual barriers, we developed a near‐infrared‐II (NIR‐II) light‐responsive nanoplatform, termed MCD (MnCO@N‐C@Dex). Its design integrates a nitrogen‐doped carbon nanoshell (N‐C NSs) core loaded with a manganese carbonyl (MnCO) prodrug and an outer dextran coating. Under 1064 nm irradiation, the N‐C NSs simultaneously generate localized hyperthermia for photothermal therapy (PTT) and produce hydroxyl radicals (·OH), which subsequently trigger on‐demand carbon monoxide (CO) release from MnCO, establishing a cascade PTT/CO bactericidal process. Concurrently, the dextran coating enhances biofilm penetration and reprograms macrophages toward the pro‐inflammatory M1 phenotype, thereby boosting antibacterial immunity. MCD shows efficient biofilm penetration and potent disruption of Staphylococcus aureus biofilms in vitro. In a mouse subcutaneous abscess model, MCD further demonstrates strong antibiofilm and immunomodulatory effects, leading to effective infection clearance. This work demonstrates that combining NIR‐II‐triggered gas therapy with targeted immune reprogramming offers a promising and safe strategy for treating biofilm‐associated infections.
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