Microbiological Engineering and Industrial Biotechnology Group, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, China.
China and Scientific Research Base of Bacterial Nanofiber Manufacturing and Composite Technology, China Textile Engineering Society, Shanghai 201620, China.
ACS Biomater Sci Eng. 2021 Aug 9;7(8):3933-3946. doi: 10.1021/acsbiomaterials.1c00444. Epub 2021 Jul 23.
High moisture permeability, excellent mechanical properties in a wet state, high water-holding capability, and high exudate absorption make bacterial nanocellulose (BNC) a favorable candidate for biomedical device production, especially wound dressings. The lack of antibacterial activity and healing-promoting ability are the main drawbacks that limit its wide application. Pullulan (Pul) is a nontoxic polymer that can promote wound healing. Zinc oxide nanoparticles (ZnO-NPs) are well-known as a safe antibacterial agent. In this study, aminoalkylsilane was chemically grafted on a BNC membrane (A--BNC) and used as a bridge to combine BNC with Pul-ZnO-NPs hybrid electrospun nanofibers. FTIR results confirmed the successful production of A--BNC/Pul-ZnO. The obtained dressing demonstrated blood clotting performance better than that of BNC. The dressing showed an ability to release ZnO, and its antibacterial activity was up to 5 log values higher than that of BNC. The cytotoxicity of the dressing toward L929 fibroblast cells clearly showed safety due to the proliferation of fibroblast cells. The animal test in a rat model indicated faster healing and re-epithelialization, small blood vessel formation, and collagen synthesis in the wounds covered by A--BNC/Pul-ZnO. The new functional dressing, fabricated with a cost-effective and easy method, not only showed excellent antibacterial activity but could also accelerate wound healing.
高水分透过性、湿态下优异的机械性能、高持水能力和高渗出液吸收能力使细菌纳米纤维素(BNC)成为生物医学装置生产的理想候选材料,特别是伤口敷料。缺乏抗菌活性和促进愈合能力是限制其广泛应用的主要缺点。普鲁兰(Pul)是一种无毒聚合物,可促进伤口愈合。氧化锌纳米粒子(ZnO-NPs)是众所周知的安全抗菌剂。在本研究中,氨烷基硅烷通过化学接枝到 BNC 膜(A--BNC)上,并用作桥联将 BNC 与 Pul-ZnO-NPs 杂化电纺纳米纤维结合。FTIR 结果证实成功制备了 A--BNC/Pul-ZnO。所得到的敷料表现出比 BNC 更好的凝血性能。该敷料具有释放 ZnO 的能力,其抗菌活性高达 5 个对数值,高于 BNC。敷料对 L929 成纤维细胞的细胞毒性明显显示出安全性,因为成纤维细胞增殖。在大鼠模型中的动物试验表明,用 A--BNC/Pul-ZnO 覆盖的伤口愈合更快,再上皮化更快,小血管形成更快,胶原蛋白合成更快。这种新的功能性敷料采用经济高效且简单的方法制备,不仅具有优异的抗菌活性,而且还可以加速伤口愈合。