A NIR-II Laser-Triggered Nb2C-Arg/Gel Composite Multifunctional Hydrogel with Photothermal, ROS Scavenging, and NO Release for Infected Wound Healing

光热治疗 自愈水凝胶 生物相容性 伤口愈合 光热效应 活性氧 一氧化氮 体内 化学 溶血 抗菌剂 活力测定 材料科学 成纤维细胞 生物物理学 纳米技术 体外 生物化学 免疫学 有机化学 高分子化学 医学 生物技术 生物
作者
Mi Liu,Weidan Zhao,Denghao Li,Di Cui,Jiali Liu,Qingao Chen,Yan Zhou,Li Jiang,Huaibin Zhou
出处
期刊:Langmuir [American Chemical Society]
卷期号:41 (26): 17104-17116
标识
DOI:10.1021/acs.langmuir.5c01761
摘要

Infected wound healing remains a significant clinical challenge due to bacterial resistance and excessive inflammation. Herein, a multifunctional hydrogel dressing (Nb2C-Arg/Gel) is developed that integrates two-dimensional Nb2C nanosheets (photothermal agent) and arginine [nitric oxide (NO) donor] into a calcium ion cross-linked sodium alginate matrix. The hydrogel has a relatively high swelling capacity and good ability to scavenge reactive oxygen species (ROS), which are beneficial for absorbing wound exudate and reducing the inflammatory response of wounds. Under irradiation with a low-power NIR-II laser (1064 nm, 1 W cm-2), Nb2C-Arg/Gel achieves rapid photothermal heating (48.6 °C in 1 min), while thermally enhances arginine decomposition-triggered on-demand NO release. This synergistic mechanism provides superior antimicrobial efficacy against Staphylococcus aureus (97.65%) and methicillin-resistant S. aureus (90.05%). In vivo studies on MRSA-infected murine wounds demonstrate that the residual area on day 10 was 2.9%, which accelerated healing compared to that of the control group (17.8%), accompanied by reduced inflammation and enhanced angiogenesis. The excellent biocompatibility of hydrogel is validated by low hemolysis (<5%) and promoted fibroblast proliferation (125% cell viability). Combining with photothermal, NO-mediated antibacterial action, and ROS scavenging to alleviate oxidative stress, this antibiotic-free hydrogel dressing has great potential for clinical application for the treatment of refractory-infected wounds.
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