Anti-Infectives Research Group, Singapore Eye Research Institute, The Academia, 20 College Road, Discovery Tower, Singapore, 169856, Singapore; Ophthalmology and Visual Sciences Academic Clinical Program, Duke-NUS Graduate Medical School, Singapore, 169857, Singapore.
Anti-Infectives Research Group, Singapore Eye Research Institute, The Academia, 20 College Road, Discovery Tower, Singapore, 169856, Singapore.
Biomaterials. 2017 Sep;138:153-168. doi: 10.1016/j.biomaterials.2017.05.043. Epub 2017 May 26.
There is a growing demand for durable advanced wound dressings for the management of persistent infections after deep burn injuries. Herein, we demonstrated the preparation of durable antimicrobial nanofiber mats, by taking advantage of strong interfacial interactions between polyhydroxy antibiotics (with varying number of OH groups) and gelatin and their in-situ crosslinking with polydopamine (pDA) using ammonium carbonate diffusion method. Polydopamine crosslinking did not interfere with the antimicrobial efficacy of the loaded antibiotics. Interestingly, incorporation of antibiotics containing more number of alcoholic OH groups (N ≥ 5) delayed the release kinetics with complete retention of antimicrobial activity for an extended period of time (20 days). The antimicrobials-loaded mats displayed superior mechanical and thermal properties than gelatin or pDA-crosslinked gelatin mats. Mats containing polyhydroxy antifungals showed enhanced aqueous stability and retained nanofibrous morphology under aqueous environment for more than 4 weeks. This approach can be expanded to produce mats with broad spectrum antimicrobial properties by incorporating the combination of antibacterial and antifungal drugs. Direct electrospinning of vancomycin-loaded electrospun nanofibers onto a bandage gauze and subsequent crosslinking produced non-adherent durable advanced wound dressings that could be easily applied to the injured sites and readily detached after treatment. In a partial thickness burn injury model in piglets, the drug-loaded mats displayed comparable wound closure to commercially available silver-based dressings. This prototype wound dressing designed for easy handling and with long-lasting antimicrobial properties represents an effective option for treating life-threatening microbial infections due to thermal injuries.
对于深度烧伤后持续感染的治疗,人们对耐用的高级伤口敷料的需求日益增长。在此,我们展示了通过利用聚羟抗生素(具有不同数量的 OH 基团)与明胶之间的强界面相互作用,以及利用碳酸铵扩散法使聚多巴胺(pDA)原位交联,来制备耐用的抗菌纳米纤维垫。聚多巴胺交联不会干扰负载抗生素的抗菌效果。有趣的是,掺入含有更多醇 OH 基团(N≥5)的抗生素会延迟释放动力学,使抗菌活性在较长时间内(20 天)完全保留。载药垫表现出优于明胶或 pDA 交联明胶垫的机械和热性能。含有聚羟抗真菌剂的垫在水介质中表现出增强的水稳定性,并保留纳米纤维形态超过 4 周。通过将抗菌和抗真菌药物结合,可以扩展这种方法来制备具有广谱抗菌性能的垫。将载万古霉素的静电纺纳米纤维直接静电纺到绷带纱布上,然后进行交联,可产生非粘连的耐用高级伤口敷料,可轻松应用于受伤部位,并在治疗后容易去除。在小猪的部分厚度烧伤模型中,载药垫的伤口闭合效果与市售的银基敷料相当。这种设计用于方便处理且具有持久抗菌性能的原型伤口敷料,为治疗因热损伤导致的危及生命的微生物感染提供了一种有效选择。