Abrigo Martina, McArthur Sally L, Kingshott Peter
Faculty of Engineering and Industrial Science, Industrial Research Institute Swinburne (IRIS), Swinburne University of Technology, Hawthorn, VIC 3122, Australia.
Macromol Biosci. 2014 Jun;14(6):772-92. doi: 10.1002/mabi.201300561. Epub 2014 Mar 28.
Chronic non-healing wounds show delayed and incomplete healing processes and in turn expose patients to a high risk of infection. Treatment currently focuses on dressings that prevent microbial infiltration and keep a balanced moisture and gas exchange environment. Antibacterial delivery from dressings has existed for some time, with responsive systems now aiming to trigger release only if infection occurs. Simultaneously, approaches that stimulate cell proliferation in the wound and encourage healing have been developed. Interestingly, few dressings appear capable of simultaneously impairing or treating infection and encouraging cell proliferation/wound healing. Electrospinning is a simple, cost-effective, and reproducible process that can utilize both synthetic and natural polymers to address these specific wound challenges. Electrospun meshes provide high-surface area, micro-porosity, and the ability to load drugs or other biomolecules into the fibers. Electrospun materials have been used as scaffolds for tissue engineering for a number of years, but there is surprisingly little literature on the interactions of fibers with bacteria and co-cultures of cells and bacteria. This Review examines the literature and data available on electrospun wound dressings and the research that is required to develop smart multifunctional wound dressings capable of treating infection and healing chronic wounds.
慢性难愈合伤口表现出愈合过程延迟且不完全,进而使患者面临高感染风险。目前的治疗重点是防止微生物侵入并保持水分和气体交换环境平衡的敷料。从敷料中递送抗菌剂已经存在了一段时间,现在的响应系统旨在仅在感染发生时触发释放。同时,已经开发出刺激伤口中细胞增殖并促进愈合的方法。有趣的是,很少有敷料似乎能够同时抑制或治疗感染并促进细胞增殖/伤口愈合。静电纺丝是一种简单、经济高效且可重复的过程,它可以利用合成聚合物和天然聚合物来应对这些特定的伤口挑战。静电纺丝网具有高表面积、微孔性以及将药物或其他生物分子负载到纤维中的能力。静电纺丝材料作为组织工程支架已经使用了多年,但令人惊讶的是,关于纤维与细菌以及细胞与细菌共培养物相互作用的文献很少。本综述研究了关于静电纺丝伤口敷料的现有文献和数据,以及开发能够治疗感染和愈合慢性伤口的智能多功能伤口敷料所需的研究。