伤口愈合
生物相容性
化学
血管生成
壳聚糖
自愈水凝胶
杆菌肽
生物医学工程
材料科学
高分子化学
外科
癌症研究
生物化学
医学
抗生素
有机化学
作者
Xiaolian Feng,Qian Zhang,Shiqi Li,Yunquan Zheng,Xianai Shi,Feng Li,Shaobin Guo,Jing Wang
标识
DOI:10.1016/j.ijbiomac.2020.07.058
摘要
Acute full-thickness wounds require a more extended healing period, thus increasing the risk of infection. Severe infection frequently resulted in wound ulceration, necrosis, and even life-threatening complications. Here, a hybrid hydrogel comprising aminated collagen (AC), oxidized sodium alginate (OSA), and antimicrobial peptides (polymyxin B sulfate and bacitracin) was developed to enhance full-thickness wound healing. The AC with low immunogenicity and high biocompatibility was made from marine fish scales, which are eco-friendly, low-cost, and sustainable. The cross-linked hydrogel was formed by a Schiff base reaction without any catalysts and additional procedures. As expected, the presented hybrid hydrogel can effectively against E. coli and S. aureus, as well as promote cell growth and angiogenesis in vitro. In addition, the hydrogel can promote full-thickness wound healing in a rat model through accelerating reepithelialization, collagen deposition, and angiogenesis. Our work demonstrated that the hybrid hydrogel has promising applications in the field of wound healing, which would prompt the utilization of marine fish resources during food processing.
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