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Design and Preclinical Evaluation of Chitosan/Kaolin Nanocomposites with Enhanced Hemostatic Efficiency

机译:壳聚糖/高岭土纳米复合材料具有增强止血效率的设计与临床前评价

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摘要

In the current study, hemostatic compositions including a combination of chitosan and kaolin have been developed. Chitosan is a marine polysaccharide derived from chitins, a structural component in the shells of crustaceans. Both chitosan and kaolin have the ability to mediate a quick and efficient hemostatic effect following immediate application to injury sites, and thus they have been widely exploited in manufacturing of hemostatic composites. By combining more than one hemostatic agent (i.e., chitosan and kaolin) that act via more than one mechanism, and by utilizing different nanotechnology-based approaches to enhance the surface areas, the capability of the dressing to control bleeding was improved, in terms of amount of blood loss and time to hemostasis. The nanotechnology-based approaches utilized to enhance the effective surface area of the hemostatic agents included the use of Pluronic nanoparticles, and deposition of chitosan micro- and nano-fibers onto the carrier. The developed composites effectively controlled bleeding and significantly improved hemostasis and survival rates in two animal models, rats and rabbits, compared to conventional dressings and QuikClot® Combat Gauze. The composites were well-tolerated as demonstrated by their in vivo biocompatibility and absence of clinical and biochemical changes in the laboratory animals after application of the dressings.
机译:在目前的研究中,已经开发出包括壳聚糖和高岭土组合的止血组合物。壳聚糖是衍生自幼巢的海洋多糖,甲壳类动物壳中的结构组分。壳聚糖和高岭土的能力在立即施用损伤部位后介绍快速有效的止血效果,因此它们已广泛利用止血复合材料的制造。通过组合多于一种通过多种机制起作用的止血剂(即壳聚糖和高岭土),并且通过利用不同的基于纳米技术的方法来增强表面积,敷料控制出血的能力得到改善止血的失血量和时间。用于增强止血剂的有效表面积的基于纳米技术的方法包括使用Pluronic纳米颗粒,并将壳聚糖微纤维和纳米纤维沉积到载体上。与常规敷料和QuikClot®作战纱布相比,开发复合材料有效地控制了两种动物模型,大鼠和兔子中的止血和生存率。通过其体内生物相容性和在施用敷料后,通过体内生物相容性和实验室动物的临床和生物化学变化的临床和生化变化进行了良好耐受。

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