Department of Mechanical Engineering, University of Texas-Pan American, Edinburg, TX 78539, USA.
Department of Biology, University of Texas-Pan American, Edinburg, TX 78539, USA; Department of Clinical Laboratory Sciences, University of Texas-Pan American, Edinburg, TX 78539, USA.
Carbohydr Polym. 2015 Jan 22;115:16-24. doi: 10.1016/j.carbpol.2014.08.081. Epub 2014 Sep 2.
This study presents the successful development of biocompatible tannic acid (TA)/chitosan (CS)/pullulan (PL) composite nanofibers (NFs) with synergistic antibacterial activity against the Gram-negative bacteria Escherichia coli. The NFs were developed utilizing the forcespinning(®) (FS) technique from CS-CA aqueous solutions to avoid the usage of toxic organic solvents. The ternary nanofibrous membranes were crosslinked to become water stable for potential applications as wound dressing. The morphology, structure, water solubility, water absorption capability and thermal properties of the NFs were characterized. The ternary composite membrane exhibits good water absorption ability with rapid uptake rate. This novel membrane favors fibroblast cell attachment and growth by providing a 3D environment which mimics the extracellular matrix (ECM) in skin and allows cells to move through the fibrous structure resulting in interlayer growth throughout the membrane, thus favoring potential for deep and intricate wound healing.
本研究成功开发了具有协同抗菌活性的生物相容性单宁酸(TA)/壳聚糖(CS)/普鲁兰(PL)复合纳米纤维(NFs),可有效抑制革兰氏阴性菌大肠杆菌。NFs 是利用 forcespinning(®)(FS)技术从 CS-CA 水溶液中开发的,以避免使用有毒有机溶剂。将三元纳米纤维膜交联以成为水稳定的,可作为伤口敷料的潜在应用。对 NFs 的形态、结构、水溶性、吸水性和热性能进行了表征。三元复合膜具有良好的吸水性和快速吸水速率。这种新型膜通过提供类似于皮肤细胞外基质(ECM)的 3D 环境有利于成纤维细胞的附着和生长,允许细胞通过纤维结构移动,从而导致整个膜的层间生长,有利于深层和复杂伤口的愈合。