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Designing and fabrication of curcumin loaded PCL/PVA multi-layer nanofibrous electrospun structures as active wound dressing

机译:姜黄素负载的PCL / PVA多层纳米纤维电纺结构作为活性伤口敷料的设计与制造

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摘要

Active wound dressings play a significant role in burn and chronic wound treatment. In this study, electrospinning process is used to fabricate a novel three-layer active wound dressing based on ε-polycaprolactone (PCL), polyvinylalcohol (PVA), and curcumin (CU) as a biologically active compound. The main purpose for developing such a system is to control wound exudates, which remains a challenge, as well as enjoying the anti-bacterial property. Electrospinning process parameters are optimized by response surface methodology to achieve appropriate nanofibrous electrospun mats, and then, a three-layer dressing has been designed in view of water absorbability, anti-bacterial, and biocompatibility characteristics of the final dressing. The results illustrate that a three-layer dressing based on PCL/curcumin containing PVA as a middle layer with optimized thickness which is placed over the incision, absorbs three times exudates in comparison with pristine dressing. Anti-bacterial tests reveal that the dressing containing 16% curcumin exhibits anti-bacterial activity without sacrificing the acceptable level of cell viability.
机译:活性伤口敷料在烧伤和慢性伤口治疗中起重要作用。在这项研究中,静电纺丝工艺被用于制造一种新型的三层活性伤口敷料,该敷料基于ε-聚己内酯(PCL),聚乙烯醇(PVA)和姜黄素(CU)作为生物活性化合物。开发这种系统的主要目的是控制伤口渗出液,这仍然是一个挑战,同时还具有抗菌性能。通过响应表面方法优化静电纺丝工艺参数,以获得合适的纳米纤维电纺垫,然后,考虑到最终敷料的吸水性,抗菌性和生物相容性,设计了三层敷料。结果表明,基于PCL /姜黄素的三层敷料(以PVA为中间层,厚度最优化)置于切口上方,与原始敷料相比,吸收了三倍的渗出液。抗菌测试表明,含有16%姜黄素的敷料表现出抗菌活性,而不会牺牲可接受的细胞活力水平。

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