Zhang Chuyue, Wang Yifan, Xue Yuan, Cheng Junyao, Chi Pengfei, Wang Zhaohan, Li Bo, Yan Taoxu, Wu Bing, Wang Zheng
Department of Orthopedics, Chinese PLA General Hospital, Beijing 100853, China.
Chinese PLA Medical School, Beijing 100853, China.
Gels. 2024 Jan 24;10(2):88. doi: 10.3390/gels10020088.
Managing severe bleeding, particularly in soft tissues and visceral injuries, remains a significant challenge in trauma and surgical care. Traditional hemostatic methods often fall short in wet and dynamic environments. This study addresses the critical issue of severe bleeding in soft tissues, proposing an innovative solution using a polyethylene glycol (PEG)-based hydrogel combined with zinc oxide (ZnO). The developed hydrogel forms a dual-network structure through amide bonds and metal ion chelation, resulting in enhanced mechanical properties and adhesion strength. The hydrogel, exhibiting excellent biocompatibility, is designed to release zinc ions, promoting coagulation and accelerating hemostasis. Comprehensive characterization, including gelation time, rheological properties, microstructure analysis, and swelling behavior, demonstrates the superior performance of the PEG/ZnO hydrogel compared to traditional PEG hydrogels. Mechanical tests confirm increased compression strength and adhesive properties, which are crucial for withstanding tissue dynamics. In vitro assessments reveal excellent biocompatibility and enhanced procoagulant ability attributed to ZnO. Moreover, in vivo experiments using rat liver and tail bleeding models demonstrate the remarkable hemostatic performance of the PEG/ZnO hydrogel, showcasing its potential for acute bleeding treatment in both visceral and peripheral scenarios.
在创伤和外科护理中,处理严重出血,尤其是软组织和内脏损伤导致的出血,仍然是一项重大挑战。传统的止血方法在潮湿和动态环境中往往效果不佳。本研究针对软组织严重出血这一关键问题,提出了一种创新解决方案,即使用基于聚乙二醇(PEG)的水凝胶与氧化锌(ZnO)相结合。所开发的水凝胶通过酰胺键和金属离子螯合形成双网络结构,从而提高了机械性能和粘附强度。该水凝胶具有优异的生物相容性,旨在释放锌离子,促进凝血并加速止血。包括凝胶化时间、流变学性质、微观结构分析和溶胀行为在内的综合表征表明,与传统PEG水凝胶相比,PEG/ZnO水凝胶具有卓越的性能。力学测试证实其抗压强度和粘附性能有所提高,这对于承受组织动态变化至关重要。体外评估显示其具有优异的生物相容性以及归因于ZnO的增强的促凝血能力。此外,使用大鼠肝脏和尾部出血模型进行的体内实验证明了PEG/ZnO水凝胶具有显著的止血性能,展示了其在内脏和外周急性出血治疗中的潜力。