Zhang Wanli, Mao Junqin, Yang Aiping, Shen Tao, Zeng Qiuyu, Tang You, Du Yan, Lv Guoyu, Zheng Heng, Li Hong
College of Physics, Sichuan University, Chengdu 610065, China.
College of Information Engineering and Automation, Kunming University of Science and Technology, Kunming 650032, China.
Int J Mol Sci. 2025 May 14;26(10):4688. doi: 10.3390/ijms26104688.
Effective prehospital hemostasis is pivotal for improving survival outcomes in arterial hemorrhage. Existing hemostatic materials have limitations in terms of both efficiency and portability, particularly under complex wound conditions. This study engineered a kaolin-reinforced biomimetic adhesive composite powder (DTG-K), which achieved dual hemostatic mechanisms: mechanical occlusion via strong interfacial adhesion (lap-shear strength of 58.3 kPa) and biochemical activation of the intrinsic coagulation pathway through factor XII. In vitro evaluations confirmed its exceptional hemocompatibility, with a 0.93% hemolysis rate. When applied to femoral artery hemorrhage models in Bama swine, DTG-K demonstrated complete hemostasis within 30 s through synergistic physical sealing and biochemical coagulation. These findings demonstrate the potential of DTG-K as an innovative strategy for managing life-threatening arterial hemorrhage in prehospital emergency scenarios.
有效的院前止血对于改善动脉出血的生存结局至关重要。现有的止血材料在效率和便携性方面都存在局限性,尤其是在复杂伤口条件下。本研究设计了一种高岭土增强的仿生粘合剂复合粉末(DTG-K),其实现了双重止血机制:通过强界面粘附实现机械阻塞(搭接剪切强度为58.3 kPa)以及通过因子XII对内在凝血途径进行生化激活。体外评估证实了其优异的血液相容性,溶血率为0.93%。当应用于巴马猪的股动脉出血模型时,DTG-K通过协同的物理封闭和生化凝血在30秒内实现了完全止血。这些发现证明了DTG-K作为院前紧急情况下管理危及生命的动脉出血的创新策略的潜力。