自愈水凝胶
止血剂
生物医学工程
纤维蛋白
止血
明胶
伤口愈合
材料科学
失血
止血剂
纤维蛋白原
严重创伤
肝组织
医学
外科
组织工程
机械强度
粘附
大鼠模型
临床治疗
明胶海绵
凝结
作者
Yihang Ding,Z. G. Liu,Xizhuo Jing,Ruifen Yang,Zhiliang Huang,Lisha Yu,Zhengwei Mao
摘要
Effective hemorrhage control remains an important unmet need in trauma care and emergency medicine. Therefore, it is essential to achieve rapid and effective hemostasis. Bioadhesives offer an attractive approach to wound sealing, achieving simultaneous leakage prevention, mechanical support, and hemostasis. However, available bioadhesives are limited in clinical applications by weak mechanical strength, insufficient biocompatibility, and strict storage condition. In this study, a thrombin-independent fibrinogen-based hydrogel was developed, featuring rapid gelation, robust mechanical strength, strong tissue adhesion, and excellent shelf stability. This hydrogel is prepared from knob-peptide-grafted gelatin methacryloyl (GMK) and fibrinogen methacryloyl (FM). GMK/FM hydrogel can quickly form the knob-hole crosslinking and then be reinforced through photo-crosslinking. Compared with clinical standard-of-care fibrin glue, GMK/FM hydrogel demonstrates comparably rapid gelation (< 2 s), alongside enhanced mechanical strength, tissue adhesion and storage stability (4 weeks at room temperature). In rat severe hemorrhage models of liver and abdominal aorta, GMK/FM hydrogel decreased hemostatic time and blood loss remarkably. It demonstrates exceptional hemostatic performance, outstanding biocompatibility, and storage stability, holding significant promise for clinical applications and emergency uses.
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