Fujian Provincial Key Laboratory of Polymer Materials, College of Materials Science and Engineering, Fujian Normal University, Fujian 350007, China.
College of Life Science, Fujian Normal University, Fujian 350007, China.
Mater Sci Eng C Mater Biol Appl. 2018 Apr 1;85:27-36. doi: 10.1016/j.msec.2017.12.015. Epub 2017 Dec 17.
Quick hemostats for non-lethal massive traumatic bleeding in battlefield and civilian accidents are important for reducing mortality and medical costs. Chitosan (CS) has been widely used as a clinic hemostat. To enhance its hemostatic efficiency, Zn in the form of zinc alginate (ZnAlg) was introduced to CS to make porous CS@ZnAlg microspheres with ZnAlg component on the surface. Such microspheres were prepared by successive steps of micro-emulsion, polyelectrolyte adhesion, and thermally induced phase separation. Their structure and hemostatic performance were analyzed by SEM, FT-IR, XPS and a series of in vitro hemostatic experiments including thromboelastography analysis. The composite microspheres had an outer and internal interconnected porous structure. Their size, surface area, and water absorption ratio were ca. 70μm, 48m/g, and 1850%, respectively. Compared to the neat chitosan microspheres, the CS@ZnAlg microspheres showed shorter onset of clot formation, much faster in vitro and in vivo whole blood clotting, bigger clot, less blood loss, and shorter hemostatic time in the rat liver laceration and tail amputation models. The synergetic hemostatic effects from (1) the electrostatic attraction between chitosan component and red blood cells, (2) the activation of coagulation factor XII by Zn of zinc alginate component, and (3) physical blocking by microsphere matrix, contributed to the enhanced hemostatic performance of CS@ZnAlg microspheres.
用于战场和民用事故中非致命性大量创伤性出血的快速止血剂对于降低死亡率和医疗成本非常重要。壳聚糖 (CS) 已被广泛用作临床止血剂。为了提高其止血效率,以海藻酸钠 (ZnAlg) 的形式引入锌来制备具有 ZnAlg 成分的多孔 CS@ZnAlg 微球。通过微乳液、聚电解质附着和热致相分离的连续步骤制备了这些微球。通过 SEM、FT-IR、XPS 和一系列体外止血实验(包括血栓弹性图分析)分析了它们的结构和止血性能。复合微球具有外和内连通的多孔结构。它们的尺寸、表面积和吸水率分别约为 70μm、48m/g 和 1850%。与纯壳聚糖微球相比,CS@ZnAlg 微球表现出更短的凝血形成起始时间、更快的体外和体内全血凝固、更大的凝块、更少的出血和更短的大鼠肝撕裂和尾巴切断模型的止血时间。壳聚糖成分与红细胞之间的静电吸引、海藻酸钠成分的锌对凝血因子 XII 的激活以及微球基质的物理阻塞的协同止血作用有助于提高 CS@ZnAlg 微球的止血性能。