Enhanced Mechanical Strength and Sustained Drug Release in Carrier‐Free Silver‐Coordinated Anthraquinone Natural Antibacterial Anti‐Inflammatory Hydrogel for Infectious Wound Healing

伤口愈合 自愈水凝胶 再生(生物学) 抗菌剂 材料科学 微生物学 细胞生物学 医学 免疫学 生物 高分子化学
作者
Xiaoliu Liang,Linyu Ding,Jiaxin Ma,Jiwei Li,Lei Cao,Hui Liu,Minglei Teng,Zhenjie Li,Yisheng Peng,Hu Chen,Yali Zheng,Hongwei Cheng,Gang Liu
出处
期刊:Advanced Healthcare Materials [Wiley]
被引量:1
标识
DOI:10.1002/adhm.202400841
摘要

Abstract The persistent challenge of healing infectious wounds and the rise of bacterial resistance represent significant hurdles in contemporary medicine. In this study, based on the natural small molecule drug Rhein self‐assembly to form hydrogels and coordinate assembly with silver ions (Ag + ), a sustained‐release carrier‐free hydrogel with compact structure is constructed to promote the repair of bacterial‐infected wounds. As a broad‐spectrum antimicrobial agent, Ag + can avoid the problem of bacterial resistance caused by the abuse of traditional antibiotics. In addition, due to the slow‐release properties of Rhein hydrogel, continuous effective concentration of Ag + at the wound site can be ensured. The assembly of Ag + and Rhein makes the hydrogel system with enhanced mechanical stability. More importantly, it is found that Rhein effectively promotes skin tissue regeneration and wound healing by reprogramming M1 macrophages into M2 macrophages. Further mechanism studies show that Rhein realizes its powerful anti‐inflammatory activity through NRF2/HO‐1 activation and NF‐κB inhibition. Thus, the hydrogel system combines the excellent antibacterial properties of Ag + with the excellent anti‐inflammatory and tissue regeneration ability of Rhein, providing a new strategy for wound management with dual roles.
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