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.
Yao et al. (Sun,) studied this question.
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