用于有效预防和治疗急诊伤口感染的超稳定原位纳米银敷料

Q1 Medicine Engineered regeneration Pub Date : 2024-01-14 DOI:10.1016/j.engreg.2024.01.001
Wei Wang , Ziwei Hu , Wanying Mo , Min Ouyang , Shihao Lin , Xiang Li , Chengxinqiao Wang , Feng Yu , Yupeng Wang , Dongfang Zhou
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引用次数: 0

摘要

在紧急情况下,使用抗菌敷料对预防和治疗伤口感染至关重要。然而,敷料的功效会因长期储存或暴露在恶劣条件下而受到影响。本文制备了一种超稳定原位银纳米粒子敷料(AgSNP@CD),用于在紧急情况下有效预防和治疗伤口感染。AgSNP@CD的制备工艺简单,适合大规模生产。由于原位合成的 AgNPs 与棉织物之间具有很强的相互作用,因此 AgSNP@CD 具有显著的稳定性,即使在长期储存(长达 2 年)和极端条件(湿热、低温、低氧、水浸、酸碱侵蚀)下仍能保持其抗菌功效。体外和体内实验结果都证明了 AgSNP@CD 的卓越抗菌功效和稳定性,有助于在极端条件下预防感染和伤口愈合。特别是,AgSNP@CD 对严重细菌感染的创面具有卓越的治疗效果,可有效预防败血症的发生。AgSNP@CD 在复杂和极端条件下的卓越稳定性和抗菌功效使其成为一种非常适合用于预防和治疗急诊伤口感染的敷料策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Ultrastable in-situ silver nanoparticle dressing for effective prevention and treatment of wound infection in emergency

The use of antibacterial dressings is crucial in the prevention and treatment of wound infection in emergency situations. However, the efficacy of dressings is compromised by long-term storage or exposure to harsh conditions. Here, an ultrastable in-situ silver nanoparticle dressing (AgSNP@CD) was prepared for effective prevention and treatment of wound infection in emergency. The fabrication process of AgSNP@CD is simple, suitable for large-scale production. Due to the strong interaction between the in-situ synthesized AgNPs and the cotton fabric, AgSNP@CD owned remarkable stability, thus retaining its antimicrobial efficacy even after long-term storage (up to 2 years) and under extreme conditions (damp heat, low temperatures, low-oxygen, water immersion, acid-alkali erosion). Both in vitro and in vivo results demonstrated the extraordinary antibacterial efficacy and stability of AgSNP@CD, facilitating infection prevention and wound healing in extreme conditions. In particular, AgSNP@CD exhibited a superior treatment effect on severe bacteria-infected trauma and can prevent the occurrence of sepsis effectively. The exceptional stability and antibacterial efficacy of AgSNP@CD under complex and extreme conditions make it a well-suited dressing strategy for the prevention and treatment of wound infection in emergency.

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来源期刊
Engineered regeneration
Engineered regeneration Biomaterials, Medicine and Dentistry (General), Biotechnology, Biomedical Engineering
CiteScore
22.90
自引率
0.00%
发文量
0
审稿时长
33 days
期刊最新文献
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