Center for Molecular Metabolism, Nanjing University of Science & Technology, Nanjing, 210094, China; Key laboratory of Metabolic Engineering and Biosynthesis Technology, Ministry of Industry and Information Technology, 210094, China.
Center for Molecular Metabolism, Nanjing University of Science & Technology, Nanjing, 210094, China; Key laboratory of Metabolic Engineering and Biosynthesis Technology, Ministry of Industry and Information Technology, 210094, China.
Int J Biol Macromol. 2024 Nov;279(Pt 1):135097. doi: 10.1016/j.ijbiomac.2024.135097. Epub 2024 Aug 27.
Hemoadhican (HD) is an exopolysaccharide with a branched structure that has been reported for its high hemostatic ability. In this study, a HD-based hemostatic sponge was prepared through ultrasonic dissolution and freeze-drying without using any cross-linking agent. The sponge could spontaneously cross-link using hydrogen bonds to form adhesive mud within 3 s upon contact with blood. This sponge-mud mixture adhered tightly to the wound tissue, forming a pressure-resistant physical barrier that captures and locks in blood cells and platelets. Simultaneously, the hydrophobic methyl groups of HD sponges repel blood inwardly, effectively sealing the wound. The brush-like structure of HD molecules was suspected to penetrate wet tissues through topological entanglement, thereby enhancing wet adhesion. Compared with gauze and gelatin sponges, HD sponges achieved more effective hemostasis in animal models using rat and rabbit femoral arteries. In particular, HD sponges showed excellent hemostasis in heparin-induced hemorrhage models in mice and pigs. The in vivo experiment demonstrated the excellent biosafety of the HD sponge. Conclusively, the HD sponge is a safe and efficient rapid hemostatic material that is expected to become an alternative material for clinical hemostatic procedures.
血晶(HD)是一种具有支链结构的胞外多糖,已被报道具有很高的止血能力。在本研究中,通过超声溶解和冷冻干燥制备了一种不使用任何交联剂的基于 HD 的止血海绵。该海绵可以通过氢键自发交联,在与血液接触 3 秒内形成粘性泥。这种海绵-泥混合物紧密地粘附在伤口组织上,形成一个耐压力的物理屏障,捕获并锁定血细胞和血小板。同时,HD 海绵的疏水性甲基向内排斥血液,有效地封闭伤口。HD 分子的刷状结构被怀疑通过拓扑缠结穿透湿组织,从而增强湿粘附。与纱布和明胶海绵相比,HD 海绵在大鼠和兔股动脉动物模型中实现了更有效的止血效果。特别是,HD 海绵在肝素诱导的小鼠和猪出血模型中表现出优异的止血效果。体内实验证明了 HD 海绵具有优异的生物安全性。综上所述,HD 海绵是一种安全有效的快速止血材料,有望成为临床止血手术的替代材料。