Construction of D–A-Conjugated Covalent Organic Frameworks with Enhanced Photodynamic, Photothermal, and Nanozymatic Activities for Efficient Bacterial Inhibition

光热治疗 共轭体系 共价键 材料科学 光动力疗法 光化学 光热效应 活性氧 抗菌剂 细菌 光敏剂 纳米技术 组合化学 生物物理学 化学 有机化学 生物化学 聚合物 生物 复合材料 遗传学
作者
Guiping Yang,Xiaolin Meng,Sai Jin Xiao,Qiong‐Qing Zheng,Quan‐Gen Tan,Ru‐Ping Liang,Li Zhang,Pu Zhang,Jian‐Ding Qiu
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:14 (24): 28289-28300 被引量:88
标识
DOI:10.1021/acsami.2c05953
摘要

Bacterial infection causes serious threats to human life, especially with the appearance of antibiotic-resistant bacteria. Phototherapeutic approaches have become promising due to their noninvasiveness, few adverse effects, and high efficiency. Herein, a covalent organic framework (TAPP-BDP) with a conjugated donor-acceptor (D-A) structure has been constructed for efficient photoinduced bacteriostasis. Under the irradiation with a single near-infrared (NIR) light (λ = 808 nm), TAPP-BDP alone involves triple and synergistic bacterial inhibition based on the integration of photodynamic, photothermal, and peroxidase-like enzymatic activities. The unique D-A structure endows TAPP-BDP with a narrow energy band gap, improving its photodynamic and nanozyme activities to generate reactive oxygen species (ROS) to realize the broad-spectrum bactericidal activity. The extended π-conjugated skeleton of TAPP-BDP results in enhanced absorption in NIR, and the remarkable photothermal activity can increase the temperature up to 65 °C to cause efficient bacterial degeneration. TAPP-BDP shows excellent antibacterial efficiency against both Gram-negative and Gram-positive bacteria. Animal experiments further suggest that TAPP-BDP can effectively heal wounds infected with Staphylococcus aureus in living systems.
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