Shi Youjing, Wang Lijie, Wei Wei, Ding Sheng, Zhang Wen, Li Fan, Li Zhaoming, Meng Xin
Key Laboratory of Industrial Microbiology, Ministry of Education, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China.
Systems Engineering Institute, Academy of Military Sciences, People's Liberation Army, Tianjin 300161, China.
Int J Biol Macromol. 2025 Jun;317(Pt 1):144838. doi: 10.1016/j.ijbiomac.2025.144838. Epub 2025 May 31.
Rapid and effective hemostasis can immediately control blood loss and prevent fatal complications. Chitosan sponge loaded with carbon nanospheres PC-800 for rapid hemostasis was first reported here. Preparation process is simple, green and low-cost. Specifically, microporous carbon nanospheres (PC-800) were synthesized by hydrothermal method and followed by calcination in high yield. Afterwards, PC-800 was homogeneously dispersed in the chitosan solution and lyophilized to obtain the composite sponge. The aim of this study is to explore the synergistic hemostatic effect of chitosan and PC-800 and validate its feasibility in trauma therapy. The composite sponges exhibited porous structure, suitable mechanical properties, strong water absorption capacity (49.2 ± 0.8 g/g), good hemocompatibility (hemolysis rate<5 %) and low cytotoxicity. However, cytotoxicity occurs with excessive PC-800 loads. The blood coagulation index of CS-1.0 with 9.5 % was significantly lower than the commercially available Celox Rapid. Upon application to a wound, CS-1.0 sponge rapidly forms a wound seal, achieving effective hemostasis through the synergistic action of chitosan and PC-800. Compared to Celox Rapid, tail hemorrhage and hepatic hemorrhage time in rats decreased to 73 s and 34 s, respectively. The composite sponges were expected to be a safe and fast hemostatic dressing for uncontrolled bleeding during emergencies.
快速有效的止血能够立即控制失血并预防致命并发症。本文首次报道了负载碳纳米球PC - 800用于快速止血的壳聚糖海绵。其制备过程简单、绿色且成本低。具体而言,通过水热法合成微孔碳纳米球(PC - 800),然后通过煅烧高产率制备得到。之后,将PC - 800均匀分散在壳聚糖溶液中并冻干以获得复合海绵。本研究的目的是探索壳聚糖与PC - 800的协同止血效果并验证其在创伤治疗中的可行性。复合海绵呈现出多孔结构、合适的力学性能、较强的吸水能力(49.2 ± 0.8 g/g)、良好的血液相容性(溶血率<5%)以及低细胞毒性。然而,过高的PC - 800负载量会产生细胞毒性。含9.5%的CS - 1.0的凝血指数显著低于市售的Celox Rapid。应用于伤口时,CS - 1.0海绵能迅速形成伤口封闭,通过壳聚糖和PC - 800的协同作用实现有效止血。与Celox Rapid相比,大鼠尾部出血和肝脏出血时间分别降至73秒和34秒。复合海绵有望成为紧急情况下用于控制出血的安全快速的止血敷料。