丝胶
止血
凝结
血小板
血小板活化
材料科学
肝素
抗菌活性
伤口愈合
化学
医学
生物化学
外科
细菌
复合材料
免疫学
生物
精神科
丝绸
遗传学
作者
Yuanyuan Zhu,Huan Liu,Sumei Qin,Chengfeng Yang,Qiying Lv,Zheng Wang,Lin Wang
标识
DOI:10.1002/adhm.202102717
摘要
Abstract Cryogels, with high water/blood absorption, have great potential for rapid hemostasis. In this study, a hemostatic and antibacterial sericin‐methacryloyl/Ag cryogel (SMC@Ag) based on freeze polymerization of methacryloyl‐modified sericin and in situ reduction of silver ions is developed. The combination of interconnected micropores and Ag NPs endows the cryogel with high water/blood absorption, and outstanding hemostatic and antibacterial performance. SMC@Ag shows much better hemostatic performance than the commercial gelatin sponge in rat liver injury, tail amputation, and femoral artery injury models. Furthermore, the excellent hemostatic activity of SMC@Ag is due to facilitating the coagulation pathway activation and enhancing the platelets adhesion during coagulation process. Overall, SMC@Ag cryogel with excellent hemostatic and antibacterial performance is a suitable candidate for traumatic hemorrhage and wound healing.
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