A Near-Infrared-Triggered Photothermal/Nitric Oxide-Enhanced Photodynamic Nanoplatform Based on l-Arginine-Modified
Xudong Liu1, Qingyan Kang2, Chang Yang1
1Jilin Province Key Laboratory of Carbon Fiber Development and Application, College of Chemistry and Life Science, Changchun University of Technology, Changchun 130012, People's Republic of China.
Abstract:
Diabetic wounds, plagued by hyperglycemia, bacterial infections, and chronic inflammation, pose a global challenge. Herein, an intelligent photothermal-responsive nanoplatform (AI-MPDA@BP) was constructed by modifying polydopamine (MPDA) with l-arginine (l-Arg), then loading indocyanine green (ICG) and black phosphorus (BP) nanosheets. Under near-infrared light (NIR) irradiation, it generates efficient photothermal therapy (PTT) and reactive oxygen species (ROS), which trigger sustained NO release from l-Arg. NO not only exerts antibacterial activity but also boosts ICG-mediated photodynamic therapy (PDT). Meanwhile, BP's antioxidant properties enable robust ROS scavenging. The PTT-PDT synergy neutralizes oxidative stress and alleviates inflammation, achieving a 95% bactericidal rate against Staphylococcus aureus (S. aureus). In diabetic mouse models, AI-MPDA@BP eliminated infections, reversed inflammation, and promoted angiogenesis and collagen deposition, enabling scar-free complete wound healing within 14 days. This multifunctional nanoplatform offers an efficient, safe strategy for chronic wound treatment with broad clinical prospects.
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