Antimicrobial Biohybrid Nanofibrous Wound Dressings

S. Homaeigohar, A. Boccaccini
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Abstract

Globally, chronic wounds impose a notable burden to patients and healthcare systems. Such non-healing wounds are readily subjected to bacteria that provoke inflammation and hence challenge the healing process. Furthermore, bacteria induce infection impeding re-epithelialization and collagen synthesis, thereby increasing hospital stay and costs. Appropriate wound dressing materials alleviate the infection incidence and accelerate the healing process. In this regard, biopolymeric nanofibers show promising potential for prevention of infection and promotion of the healing rate. They are biocompatible and mostly biodegradable and biomimic the extracellular matrix structure. Also, they provide a high surface area, surface nanoporosity, and the ability to deliver drugs and antibiotics locally into the wound milieu. Drug delivery by nanofibers has proved efficient in the control of infection. Yet, due to emergence of antibiotic resistant bacteria, there is an urgent need to replacing the antibiotic delivery systems with other reliable options such as bionanohybrids containing antimicrobial nanoparticles/ions, nature-derived compounds and biofunctional agents. Here, the most recent (since 2015) developments of antimicrobial biopolymeric nanofibrous wound dressings, particularly those based on bionanohybrids, are reviewed and evaluated in terms of antimicrobial efficiency. Lastly, the prospects and challenges are discussed to draw a roadmap for further progresses in this area.
抗菌生物复合纳米纤维伤口敷料
在全球范围内,慢性伤口给患者和卫生保健系统带来了显著负担。这种无法愈合的伤口很容易受到引起炎症的细菌的影响,从而挑战愈合过程。此外,细菌诱导感染阻碍再上皮化和胶原合成,从而增加住院时间和费用。合适的创面敷料可减轻感染发生率,加快愈合进程。在这方面,生物聚合物纳米纤维在预防感染和促进愈合方面显示出良好的潜力。它们具有生物相容性和可生物降解性,具有细胞外基质结构。此外,它们提供了高表面积,表面纳米孔,以及将药物和抗生素局部输送到伤口环境的能力。纳米纤维给药在控制感染方面已被证明是有效的。然而,由于抗生素耐药细菌的出现,迫切需要用其他可靠的选择替代抗生素递送系统,如含有抗菌纳米颗粒/离子的生物纳米混合物、天然衍生化合物和生物功能剂。在这里,从抗菌效率的角度回顾和评估了抗菌生物聚合物纳米纤维伤口敷料的最新发展(自2015年以来),特别是那些基于生物纳米杂交体的。最后,讨论了该领域的前景和挑战,并为该领域的进一步发展绘制了路线图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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