伤口愈合
自愈水凝胶
肉芽组织
生物相容性
体内
材料科学
生物医学工程
壳聚糖
止血
伤口敷料
医学
肿胀 的
化学
药理学
外科
高分子化学
复合材料
生物化学
冶金
生物技术
生物
作者
Xin Zhao,Hao Wu,Baolin Guo,Ruonan Dong,Yusheng Qiu,X. Peter
出处
期刊:Biomaterials
[Elsevier]
日期:2017-01-11
卷期号:122: 34-47
被引量:1616
标识
DOI:10.1016/j.biomaterials.2017.01.011
摘要
Injectable self-healing hydrogel dressing with multifunctional properties including anti-infection, anti-oxidative and conductivity promoting wound healing process will be highly desired in wound healing application and its design is still a challenge. We developed a series of injectable conductive self-healed hydrogels based on quaternized chitosan-g-polyaniline (QCSP) and benzaldehyde group functionalized poly(ethylene glycol)-co-poly(glycerol sebacate) (PEGS-FA) as antibacterial, anti-oxidant and electroactive dressing for cutaneous wound healing. These hydrogels presented good self-healing, electroactivity, free radical scavenging capacity, antibacterial activity, adhesiveness, conductivity, swelling ratio, and biocompatibility. Interestingly, the hydrogel with an optimal crosslinker concentration of 1.5 wt% PEGS-FA showed excellent in vivo blood clotting capacity, and it significantly enhanced in vivo wound healing process in a full-thickness skin defect model than quaternized chitosan/PEGS-FA hydrogel and commercial dressing (Tegaderm™ film) by upregulating the gene expression of growth factors including VEGF, EGF and TGF-β and then promoting granulation tissue thickness and collagen deposition. Taken together, the antibacterial electroactive injectable hydrogel dressing prolonged the lifespan of dressing relying on self-healing ability and significantly promoted the in vivo wound healing process attributed to its multifunctional properties, meaning that they are excellent candidates for full-thickness skin wound healing.
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