Superhydrophobic ROS biocatalytic metal coatings for the rapid healing of diabetic wounds
作者:Jun Yu, Duan Wu, Jing Zhang, Ming Hao, Jie Li, Ruopu Zhao, Weikang Wu, Heng Han Sua, Hieng Kiat Jun, Yilun Liu, Yang Lü, Yang Lü, Sida Liu · 发表于:Materials Today Bio · 年份:2025 · DOI:10.1016/j.mtbio.2025.101840 · 被引用次数:9 · 研究领域:Electrospun Nanofibers in Biomedical Applications、Nanoplatforms for cancer theranostics、Wound Healing and Treatments
In diabetic patients, hyperglycemia-induced elevated reactive oxygen species (ROS) accumulation severely impairs chronic wound healing by causing cellular component oxidation, inducing DNA damage, triggering cell death, exacerbating inflammatory responses, disrupting vascular endothelial function, reducing local blood supply, and inhibiting angiogenesis. This cascade results in a vicious cycle that delays the healing process. In this study, we developed a novel multifunctional composite dressing by depositing a transition-metal catalytic coating onto a superhydrophobic polydimethylsiloxane layer via magnetron sputtering. Two coatings were developed based on vanadium-ruthenium-boron (VRuB) intermetallic and VRu intermetallic compounds, which functioned as intermetallic compounds and exhibited various enzyme-like activities. The VRuB coating exhibited particularly prominent catalase-like activity (maximal reaction velocity (V max ) of 48.53 × 10 −6 M s −1 ; turnover number of 7.66 s −1 ). Experimental characterizations and theoretical calculations revealed that B incorporation significantly improved catalytic performance. The artificial enzyme spray-coating process retained superhydrophobicity at the wound-contacting interface while enhancing the ROS-scavenging capabilities. Biological experiments demonstrated that the coating exhibited excellent biocompatibility and effective ROS-scavenging characteristics. These benefits were attributed to its synergistic properties, includin...