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基于一氧化氮释放色氨酸的聚酯脲电纺复合纳米纤维垫具有抗菌和抗生物膜活性,可用于感染性伤口愈合。

Nitric Oxide-Releasing Tryptophan-Based Poly(ester urea)s Electrospun Composite Nanofiber Mats with Antibacterial and Antibiofilm Activities for Infected Wound Healing.

机构信息

Key Laboratory of Textile Science and Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, China.

Innovation Center for Textile Science and Technology, Donghua University, Shanghai 201620, China.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 13;14(14):15911-15926. doi: 10.1021/acsami.1c24131. Epub 2022 Apr 4.

Abstract

Bacterial biofilms on wounds can lead to ongoing inflammation and delayed reepithelialization, which brings a heavy burden to the medical systems. Nitric oxide based treatment has attracted attention because it is a promising strategy to eliminate biofilms and heal infected wounds. Herein, a series of tryptophan-based poly(ester urea)s with good biodegradation and biocompatibility were developed for the preparation of composite mats by electrospinning. Furthermore, the mats were grafted with a nitric oxide donor (nitrosoglutathione, GSNO) to provide one type of NO loading cargo. The mats were found to have a prolonged NO release profile for 408 h with a maximum release of 1.0 μmol/L, which had a significant effect on killing bacteria and destructing biofilms. The designed mats were demonstrated to promote the growth of cells, regulate inflammatory factors, and significantly improve collagen deposition in the wound, eventually accelerating wound-size reduction. Thus, the studies presented herein provide insights into the production of NO-releasing wound dressings and support the application of full-thickness wound healing.

摘要

伤口细菌生物膜可导致持续炎症和上皮延迟再形成,这给医疗系统带来了沉重负担。基于一氧化氮的治疗方法引起了人们的关注,因为它是消除生物膜和治疗感染性伤口的一种很有前途的策略。在此,开发了一系列具有良好生物降解性和生物相容性的色氨酸基聚酯脲,通过静电纺丝制备复合垫。此外,将这些垫接枝上一氧化氮供体(亚硝基谷胱甘肽,GSNO),提供一种类型的 NO 负载载体。研究发现,垫子具有长达 408 小时的持续 NO 释放曲线,最大释放量为 1.0 μmol/L,这对杀菌和破坏生物膜有显著效果。设计的垫子被证明可以促进细胞生长、调节炎症因子,并显著增加伤口内胶原蛋白沉积,最终加速伤口缩小。因此,本文的研究为生产释放一氧化氮的伤口敷料提供了思路,并支持全层伤口愈合的应用。

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