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Preparation and evaluation of Bletilla striata polysaccharide/graphene oxide composite hemostatic sponge

机译:Bletilla Striata多糖/石墨烯氧化物复合止血海绵的制备及评价

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Uncontrolled bleeding is an important cause of military and civilian casualties. GO has received more attention in the field of hemostasis. However, pure GO has various limitation in application due to its potential thrombosis, hemolytic and cytotoxicity. Herein, we present a simple, rapid and low-cost method to combine GO and natural polysaccharides by hydrogen bonding to prepare a new material Bletilla striata polysaccharide/graphene oxide composite sponge (BGCS). The BGCS was successfully synthesized and characterized by SEM, IR, RAMAN, XRD and Zeta potential analyzer analysis. The BGCS exhibited favorable biocompatibility. Besides, the porosity of BGCS was higher than 90% and showed good water absorption capacity. The results of whole blood coagulation evaluation showed that the BGCS can promote blood coagulation within 30 s without anticoagulant, showing excellent hemostatic effect. Further coagulation mechanism studies indicated that the surface of the BGCS possessed a high charge (-27.3 +/- 0.9 mV) and showed strong platelet stimulation, the BGCS can also induce red blood cell aggregation, accelerate fibrin formation and accelerate blood coagulation. Therefore, the BGCS can stop bleeding within 50 s in rat-tail amputation models. The BGCS provides a new perspective for the safe application of GO in the field of trauma hemostasis. (C) 2019 Elsevier B.V. All rights reserved.
机译:不受控制的出血是军事和民用伤亡的重要原因。 Go在止血领域得到了更多的注意。然而,由于其潜在的血栓形成,溶血和细胞毒性,纯粹的Go在应用中具有各种限制。在此,我们提出了一种简单,快速和低成本的方法来通过氢键结合Go和天然多糖,制备新的材料叶片施特拉多糖/石墨烯复合海绵(BGC)。通过SEM,IR,拉曼,XRD和Zeta电位分析仪分析,成功合成并表征了BGCS。 BGCS表现出良好的生物相容性。此外,BGCS的孔隙率高于90%,并显示出良好的吸水能力。全血凝固评价的结果表明,BGCs可以在没有抗凝血剂的情况下促进30秒内的血液凝固,显示出优异的止血效果。进一步的凝血机制研究表明,BGCS的表面具有高电荷(-27.3 +/- 0.9mV)并显示出强血小板刺激,BGC也可以诱导红细胞聚集,加速纤维蛋白形成并加速血液凝固。因此,BGC可以在大鼠尾部截肢模型中停止在50秒内出血。 BGCS提供了一种新的视角,以安全地应用于创伤止血领域。 (c)2019 Elsevier B.v.保留所有权利。

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