过氧化氢酶
光热治疗
活性氧
金黄色葡萄球菌
生物膜
过氧化氢
抗菌剂
微生物学
材料科学
伤口愈合
吞噬作用
硫化氢
抗生素
光敏剂
光动力疗法
药理学
氧气
内生
免疫抑制
癌症研究
生物物理学
激进的
药品
铋
化学
抗药性
硫化物
缝隙连接
光热效应
光催化
纳米技术
生物
作者
Yanling Lin,Li Liu,Chen Li,Xinda Yang,Jiabin Luo,Rumeng Lin,Yu Wang,Yan Gao,Jinghua Li,Yingbo Sun,Fengjiao Yang,Fenyong Sun,Zhongqi Cui,Shuo Shi
摘要
ABSTRACT Diabetic wounds infected with methicillin‐resistant Staphylococcus aureus (MRSA) pose a significant challenge to clinical healing. Proliferating MRSA not only invades neutrophils to induce immunosuppression but also produces hydrogen sulfide (H 2 S) and forms biofilms to enhance its resistance to antimicrobial agents. Herein, three AgTCPP‐BiMOF‐2dDR (PBMD‐1/2/3) particles with cubic, rhombohedral and urchin‐like morphologies are designed as bacteria‐derived H 2 S scavengers to induce N1 neutrophil polarization. Among these morphologies, the formation of heterogeneous structure between urchin‐like PBMD‐3 and in situ produced Bi 2 S 3 enables bandgap modulation, enhancing photodynamic (55.55%, ·OH conversion rate) and photothermal (11.75%) conversion efficiencies under 650/980 nm laser irradiation, respectively. Additionally, more bismuth active sites in the urchin‐like structure significantly boost H 2 S‐scavenging activity, thereby leading to the high expression of the N1 marker CD54 (24.4%). Capitalizing on these merits, urchin‐like PBMD‐3 exhibits the most prominent therapeutic effect, with eradication rates of MRSA and biofilms being nearly 100% in vitro. With catalase (CAT)‐like activity, dual‐metal (Ag/Bi) PBMD‐3 converts endogenous H 2 O 2 into dissolved oxygen to alleviate ROS accumulation and hypoxia. In a MRSA‐infected rat skin wound model, PBMD‐3A hydrogel shows prominent wound healing with negligible systemic toxicity. This work establishes a novel morphology‐dependent immunotherapeutic strategy for the treatment of MRSA‐infected diabetic wounds.
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