Department of Surgery, Faculty of Veterinary medicine, Alexandria University, Alexandria, Egypt.
Department of Basic Sciences, The American University of Antigua-College of Medicine, University Park, Coolidge, Antigua and Barbuda.
J Biomater Appl. 2020 Aug;35(2):287-298. doi: 10.1177/0885328220927317. Epub 2020 May 22.
In this study, we aimed to determine the regenerative and antimicrobial impact of the electrospun nanofiber mats, with/without silver nanoparticles (AgNPs), on full-thickness skin wounds in rabbits.
Polyvinyl alcohol was combined with gelatin to provide biocompatible electrospun binary nanofiber mats. AgNPs were added to the polyvinyl alcohol/gelatin mixture to obtain ternary nanofiber-AgNPs mats. Binary and ternary nanofiber mats were characterized by scanning electron microscopy before being applied as wound dressings in vivo. Subsequently, wound healing was evaluated.
Both nanofiber/nanofiber-AgNPs mats improved the microscopic quality of the healed skin, albeit without obvious acceleration of the healing rate. As well, both types of nanofiber mats were able to combat microbial invasion into the wound bed.
Both binary polyvinyl alcohol/gelatin and ternary polyvinyl alcohol/gelatin/AgNPs nanofiber mats developed in the present study depicted similar regenerative and antimicrobial potential when applied as full-thickness wound dressing. However, in comparison to the binary nanofiber mats, no obvious synergistic effect was observed after loading nanofibers with AgNPs.
本研究旨在通过观察电纺纳米纤维垫(含/不含银纳米颗粒(AgNPs))对兔全层皮肤创面的再生和抗菌作用,来确定其影响。
将聚乙烯醇与明胶结合,提供具有生物相容性的电纺双组分纳米纤维垫。将 AgNPs 添加到聚乙烯醇/明胶混合物中,以获得三元纳米纤维-AgNPs 垫。在体内用作伤口敷料之前,通过扫描电子显微镜对二元和三元纳米纤维垫进行表征。随后,评估了伤口愈合情况。
两种纳米纤维/纳米纤维-AgNPs 垫均改善了愈合皮肤的微观质量,但并未明显加速愈合速度。此外,两种类型的纳米纤维垫均能够抵抗微生物侵入伤口床。
本研究中制备的二元聚乙烯醇/明胶和三元聚乙烯醇/明胶/AgNPs 纳米纤维垫在用作全层伤口敷料时,表现出相似的再生和抗菌潜力。然而,与二元纳米纤维垫相比,负载 AgNPs 后并未观察到明显的协同效应。