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用于开放性伤口愈合和监测的透明且机械坚固的 Janus 纳米纤维膜。

Transparent and Mechanically Robust Janus Nanofiber Membranes for Open Wound Healing and Monitoring.

机构信息

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.

Ionic Liquids Research Laboratory, Department of Chemistry, Sardar Vallabhbhai National Institute of Technology, Surat 395007, Gujarat, India.

出版信息

ACS Appl Mater Interfaces. 2024 Nov 20;16(46):63389-63403. doi: 10.1021/acsami.4c16217. Epub 2024 Nov 7.

Abstract

The electrospun nanofiber membrane has demonstrated great potential for wound management due to its porous structure, large surface area, mechanical strength, and barrier properties. However, there is a need to develop transparent bioactive nanofibers with strong mechanical properties to facilitate the monitoring of the healing process. In this study, we present an electrospinning-based method for creating transparent (∼80-90%), strong (∼11-13 MPa), and Janus nanofiber membranes. The innovative square pattern architecture of the membrane includes a thin hydrophobic polycaprolactone layer on top of a layer of hydrophilic ethylene-vinyl alcohol nanofiber, which enables the absorption of excess biofluid from the wound and exhibits Janus wettability for water. Furthermore, incorporating 5% chitosan into the composition of the nanofibers accelerates the healing process through its antioxidant properties and antimicrobial activity against various bacteria, including drug-resistant strains. The developed membrane also demonstrates skin-repairing function, quick blood clotting (around 145 ± 12 s), and biocompatibility with keratinocyte (≥90%), as well as quick cell migration (∼24 h). With a tensile strength of 11-13 MPa, the membrane effectively adheres to the knee joint even after running 4 km. These optimal properties of the electrospun nanofiber membrane make it suitable for effective wound management and inspection of the healing process, without the need for frequent dressing changes.

摘要

静电纺丝纳米纤维膜因其多孔结构、大比表面积、机械强度和阻隔性能,在伤口管理方面具有巨大的应用潜力。然而,需要开发具有强机械性能的透明生物活性纳米纤维,以方便对愈合过程进行监测。在本研究中,我们提出了一种基于静电纺丝的方法,用于制造透明(约 80-90%)、高强度(约 11-13 MPa)和 Janus 纳米纤维膜。该膜的创新正方形图案结构包括顶部的一层疏水性聚己内酯层和一层亲水性乙烯-乙烯醇纳米纤维层,可从伤口吸收多余的生物液,并表现出 Janus 润湿性,可用于水。此外,将 5%壳聚糖纳入纳米纤维的组成中,通过其抗氧化特性和对各种细菌(包括耐药菌株)的抗菌活性,加速愈合过程。开发的膜还具有皮肤修复功能,快速凝血(约 145±12 秒),对角质形成细胞的生物相容性(≥90%),以及快速细胞迁移(约 24 小时)。该膜的拉伸强度为 11-13 MPa,即使在跑步 4 公里后,也能有效地贴合膝关节。静电纺丝纳米纤维膜具有这些最佳性能,非常适合有效管理伤口并检查愈合过程,无需频繁更换敷料。

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