Akhmetova Alma, Heinz Andrea
LEO Foundation Center for Cutaneous Drug Delivery, Department of Pharmacy, University of Copenhagen, 2100 Copenhagen, Denmark.
Pharmaceutics. 2020 Dec 22;13(1):4. doi: 10.3390/pharmaceutics13010004.
With the growth of the aging population worldwide, chronic wounds represent an increasing burden to healthcare systems. Wound healing is complex and not only affected by the patient's physiological conditions, but also by bacterial infections and inflammation, which delay wound closure and re-epithelialization. In recent years, there has been a growing interest for electrospun polymeric wound dressings with fiber diameters in the nano- and micrometer range. Such wound dressings display a number of properties, which support and accelerate wound healing. For instance, they provide physical and mechanical protection, exhibit a high surface area, allow gas exchange, are cytocompatible and biodegradable, resemble the structure of the native extracellular matrix, and deliver antibacterial agents locally into the wound. This review paper gives an overview on cytocompatible and biodegradable fibrous wound dressings obtained by electrospinning proteins and peptides of animal and plant origin in recent years. Focus is placed on the requirements for the fabrication of such drug delivery systems by electrospinning as well as their wound healing properties and therapeutic potential. Moreover, the incorporation of antimicrobial agents into the fibers or their attachment onto the fiber surface as well as their antimicrobial activity are discussed.
随着全球老龄化人口的增长,慢性伤口给医疗系统带来了越来越大的负担。伤口愈合过程复杂,不仅受患者生理状况影响,还受细菌感染和炎症影响,这些都会延迟伤口闭合和再上皮化。近年来,人们对纤维直径在纳米和微米范围内的电纺聚合物伤口敷料越来越感兴趣。这类伤口敷料具有多种特性,有助于并加速伤口愈合。例如,它们提供物理和机械保护,具有高表面积,允许气体交换,具有细胞相容性和生物可降解性,类似于天然细胞外基质的结构,并能将抗菌剂局部递送至伤口。本文综述了近年来通过电纺动植物来源的蛋白质和肽获得的具有细胞相容性和生物可降解性的纤维状伤口敷料。重点介绍了通过电纺制备此类药物递送系统的要求及其伤口愈合特性和治疗潜力。此外,还讨论了抗菌剂在纤维中的掺入或其在纤维表面的附着及其抗菌活性。