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Cellulose fibers-reinforced self-expanding porous composite with multiple hemostatic efficacy and shape adaptability for uncontrollable massive hemorrhage treatment

机译:纤维素纤维 - 增强自膨胀多孔复合材料具有多种止血功效和形状适应性对无法控制的巨大出血处理

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摘要

Uncontrollable hemorrhage leads to high mortality and thus effective bleeding control becomes increasingly important in the military field and civilian trauma arena. However, current hemostats not only present limitation when treating major bleeding, but also have various side effects. Here we report a self-expanding porous composites (CMCP) based on novel carboxymethyl cellulose (CMC) fibers and acetalized polyvinyl alcohol (PVA) for lethal hemorrhage control. The CMC fibers with uniform fibrous structure, high liquid absorption and procoagulant ability, are evenly interspersed inside the composite matrix. The obtained composites possess unique fiber-porous network, excellent absorption capacity, fast liquid-triggered self-expanding ability and robust fatigue resistance, and their physicochemical performance can be fine-tuned through varying the CMC content. In vitro tests show that the porous composite exhibits strong blood clotting ability, high adhesion to blood cells and protein, and the ability to activate platelet and the coagulation system. In vivo hemostatic evaluation further confirms that the CMCP presents high hemostatic efficacy and multiple hemostatic effects in swine femoral artery major hemorrhage model. Additionally, the CMCP will not fall off from the injury site, and is also easy to surgically remove from the wound cavity after the hemostasis. Importantly, results of CT tomography and 3D reconstruction indicate that CMCP can achieve shape adaptation to the surrounding tissues and the wound cavities with different depths and shapes, to accelerate hemostasis while protecting wound tissue and preventing infection.
机译:无法控制的出血导致高死亡率,因此有效的出血控制在军事领域和平民创伤竞技场变得越来越重要。然而,目前的止血率不仅在治疗重大出血时存在限制,而且还具有各种副作用。在这里,我们报告了基于新型羧甲基纤维素(CMC)纤维(CMC)纤维和缩醛化的聚乙烯醇(PVA)的自膨胀多孔复合材料(CMCP),用于致死出血对照。具有均匀纤维结构的CMC纤维,高液体吸收和促进能力,均匀地穿插复合基质内。所获得的复合材料具有独特的纤维多孔网络,优异的吸收能力,快速的液体触发的自扩张能力和稳健的疲劳能力,并且通过改变CMC含量可以微调它们的物理化学性能。体外试验表明,多孔复合材料表现出强烈的血液凝血能力,对血细胞和蛋白质的高粘附性,以及激活血小板和凝血系统的能力。体内止血评估进一步证实CMCP在猪股动脉大出血模型中呈现出高止血效和多种止血作用。此外,CMCP不会从损伤部位脱落,并且在止血后也容易从伤口腔外移除。重要的是,CT断层扫描和3D重建的结果表明CMCP可以通过不同深度和形状的周围组织和伤口空腔实现形状适应,以加速止血,同时保护伤口组织并预防感染。

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