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Clotting Mimicry from Robust Hemostatic Bandages Based on Self-Assembling Peptides

机译:基于自组装肽的坚固止血绷带的凝血模拟。

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摘要

Uncontrolled bleeding from traumatic wounds is a major factor in deaths resulting from military conflict, accidents, disasters and crime. Self-assembling peptide nanofibers have shown superior hemostatic activity, and herein, we elucidate their mechanism by visualizing the formation of nanofiber-based clots that aggregate blood components with a similar morphology to fibrin-based clots. Furthermore, to enhance its direct application to a wound, we developed layer-by-layer assembled thin film coatings onto common materials used for wound dressings—gauze and gelatin sponges. We find these nanofibers elute upon hydration under physiological conditions and generate nanofiber-based clots with blood. After exposure to a range of harsh temperature conditions (−80 to 60 °C) for a week and even 5 months at 60 °C, these hemostatic bandages remain capable of releasing active nanofibers. In addition, the application of these nanofiber-based films from gauze bandages was found to accelerate hemostasis in porcine skin wounds as compared to plain gauze. The thermal robustness, in combination with the self-assembling peptide’s potent hemostatic activity, biocompatibility, biodegradability, and low cost of production, makes this a promising approach for a cheap yet effective hemostatic bandage.
机译:创伤造成的失控流血是造成军事冲突,事故,灾难和犯罪而导致死亡的主要因素。自组装肽纳米纤维已显示出卓越的止血活性,在此,我们通过可视化基于纳米纤维的血凝块的形成来阐明它们的机制,该凝块聚集了血液成分,其形态与基于纤维蛋白的血凝块相似。此外,为了增强其直接应用于伤口的能力,我们在用于伤口敷料的常用材料(纱布和明胶海绵)上开发了逐层组装的薄膜涂层。我们发现这些纳米纤维在生理条件下水合作用时会洗脱下来,并产生基于纳米纤维的血凝块。在60°C下暴露于一系列恶劣温度条件(-80至60°C)一周甚至5个月后,这些止血绷带仍然能够释放活性纳米纤维。此外,与纯纱布相比,发现从纱布绷带上使用这些基于纳米纤维的薄膜可加速猪皮肤伤口的止血。耐热性强,再加上自组装肽的有效止血活性,生物相容性,生物降解性和较低的生产成本,使其成为一种廉价而有效的止血绷带的有前途的方法。

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