自愈水凝胶
材料科学
生物相容性
抗菌剂
PEG比率
止血剂
生物医学工程
纳米技术
止血
化学
外科
高分子化学
医学
有机化学
经济
冶金
财务
作者
Yazhong Bu,Licheng Zhang,Jianheng Liu,Lihai Zhang,Tongtong Li,Hong Shen,Xing Wang,Fei Yang,Peifu Tang,Decheng Wu
标识
DOI:10.1021/acsami.6b03235
摘要
Immediate hemorrhage control and infection prevention are pivotal for saving lives in critical situations such as battlefields, natural disasters, traffic accidents, and so on. In situ hydrogels are promising candidates, but their mechanical strength is often not strong enough for use in critical situations. In this study, we constructed three hydrogels with different amounts of Schiff-base moieties from 4-arm-PEG-NH2, 4-arm-PEG-NHS, and 4-arm-PEG-CHO in which vancomycin was incorporated as an antimicrobial agent. The hydrogels possess porous structures, excellent mechanical strength, and high swelling ratio. The cytotoxicity studies indicated that the composite hydrogel systems possess good biocompatibility. The Schiff bases incorporated improve the adhesiveness and endow the hydrogels with bacteria-sensitivity. The in vivo hemostatic and antimicrobial experiments on rabbits and pigs demonstrated that the hydrogels are able to aid in rapid hemorrhage control and infection prevention. In summary, vancomycin-loaded hydrogels may be excellent candidates as hemostatic and antibacterial materials for first aid treatment of the wounded in critical situations.
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