Cellulose and paper Department, National Research Centre, Dokki, Cairo 12622, Egypt.
Clothing & Knitting Industrial Research Department, Textile Research Division, National Research Centre (NRC), Egypt.
Int J Biol Macromol. 2022 Feb 1;197:121-130. doi: 10.1016/j.ijbiomac.2021.12.106. Epub 2021 Dec 25.
In this present work, a new design for antimicrobial wound bandages is presented. The wound dressings were prepared using cotton fibers reinforced with elastic compression straps and secured with a polyester fabric of tight mesh size. The cotton pads were doped with a wound healing biocomposite, composed of chitosan, glycogen, and ZnO nanoparticles (CG@ZnONPs) previously formulated through a green process. The size of ZnONPs in the prepared CG@ZnONPs was 30-80 nm. The cotton pads impregnated with the CG@ZnONPs nanocomposite were characterized using FTIR, SEM, EDX, TGA, and DTGA methods. Moreover, the prepared dressings were tested on a number of intentionally injured rats. In this experiment, the % contraction of the treated wounds was monitored and compared to that of a control group of wounded rats, to which only sterile gauzes were applied. The results showed a much faster and an almost complete healing of rats treated with the synthesized dressings and the results were further confirmed by histopathological examination. The dressings were also found to exert a significant antimicrobial activity against a number of pathogenic microorganisms, generally encountered in common wounds, and could therefore be recommended to be a novel biomedical application for a fast, successful, and flawless wounds healing process.
在本工作中,提出了一种新的抗菌伤口绷带设计。使用弹性压缩带增强的棉纤维和具有紧密网眼尺寸的聚酯织物制备伤口敷料。棉垫用通过绿色工艺预先配制的壳聚糖、糖原和 ZnO 纳米粒子(CG@ZnONPs)的伤口愈合生物复合材料掺杂。在制备的 CG@ZnONPs 中,ZnONPs 的尺寸为 30-80nm。使用 FTIR、SEM、EDX、TGA 和 DTGA 方法对浸渍 CG@ZnONPs 纳米复合材料的棉垫进行了表征。此外,还在一些故意受伤的大鼠上测试了制备的敷料。在该实验中,监测了处理过的伤口的%收缩,并与仅应用无菌纱布的受伤大鼠的对照组进行了比较。结果表明,用合成敷料治疗的大鼠的愈合速度更快,几乎完全愈合,组织病理学检查进一步证实了这一结果。这些敷料还对常见伤口中通常遇到的多种致病微生物表现出显著的抗菌活性,因此可推荐用于快速、成功、无瑕疵的伤口愈合过程的新型生物医学应用。