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◆ Advanced Materials Interfaces2026-03-01· Biofilm

NIR‐Activated Ag <sub>2</sub> S Quantum Dots for Efficient Broad‐Spectrum Antibacterial and Biofilm Disruption

Rui Yao, Peiqing Sun, Y.F. Chen, Zhijie Lei, Linlin Wang, Jianglin Yu, Ying Liu, Wusimanjiang Hailipitimu, Wei Wu, Jing Zhao, Xusheng Qiu

原始摘要(英文原文)· Original abstract
ABSTRACT Bacterial biofilms, encased in a protective extracellular polymeric substance (EPS) matrix and harboring metabolically dormant persister cells, pose a critical challenge in antimicrobial therapy due to their inherent resistance to conventional antibiotics. To overcome this, we present a near‐infrared (NIR)‐activated nanoplatform based on silver sulfide quantum dots (Ag 2 S QDs) that synergistically integrates photothermal therapy (PTT) and photodynamic therapy (PDT). Under NIR irradiation, Ag 2 S QDs rapidly generate localized hyperthermia and reactive oxygen species (ROS). This leads to complete eradication (99.99%) of planktonic bacteria within 10 min, as well as significant disruption of pre‐established biofilms (69–84% removal). The mechanism involves photothermal‐mediated degradation of the EPS barrier to facilitate deep penetration, and ROS‐induced oxidative damage to bacterial membranes and intracellular components. This strategy exhibits a physical barrier‐disruption paradigm that circumvents conventional antibiotic resistance mechanisms, demonstrating broad‐spectrum activity, a well‐defined therapeutic index, and spatiotemporally controllable biosafety for the precision treatment of biofilm‐associated infections.
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NIR‐Activated Ag <sub>2</sub> S Quantum Dots for Efficient Broad‐Spectrum Antibacterial and Biofilm Disruption — 科研速览 Science Skim