5 citations
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October 2023 in “International Wound Journal” In this study, a novel portable LED device significantly accelerated wound healing in rats, with faster wound closure, increased collagen deposition, and more microvessels at a higher radiation intensity, suggesting its potential for innovative wound management.
September 2026 in “Angewandte Chemie” In this research, SEU-302, a newly developed covalent organic framework, exhibited significant antibacterial and wound-healing properties in vitro and in vivo, effectively eliminating Staphylococcus aureus and reducing inflammation under light activation, thereby showcasing its potential for therapeutic photodynamic applications.
March 2026 in “Quality in Sport” This review evaluates photobiomodulation's diverse clinical uses in sports and medicine, reporting physiological modulation and potential therapeutic benefits, but emphasizes the importance of precise dosimetry for success.
August 2023 in “International Journal of Nanomedicine” This study found that a graphene-barium titanate nanosystem can accelerate wound healing by killing bacteria and promoting fibroblast proliferation, demonstrating effectiveness in both Gram-negative and Gram-positive bacteria-infected wounds in mice.
September 2026 in “Angewandte Chemie International Edition” In this study, SEU-302, a newly synthesized covalent organic framework, demonstrated potent photodynamic antibacterial effects, showing effective elimination of Staphylococcus aureus, wound healing promotion, and inflammation reduction both in vitro and in vivo, highlighting its therapeutic promise against bacterial infections.