Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, and Joint International Research Lab of Lignocellulosic Functional Materials, Nanjing Forestry University, Nanjing 210037, China.
Department of Chemical Engineering, University of New Brunswick, Fredericton, New Brunswick E3B 5A3, Canada.
Biomacromolecules. 2021 Apr 12;22(4):1654-1663. doi: 10.1021/acs.biomac.1c00086. Epub 2021 Mar 3.
Hydrogels as a wound dressing, integrated with ultrastretchability, rapid self-healing, and excellent antimicrobial activity, are in high demand, particularly for joint skin wound healing. Herein, a multifunctional and ductile composite hydrogel was developed using poly(vinyl alcohol) (PVA)-borax gel as a matrix that was synergized or dual-reinforced with dopamine-grafted oxidized carboxymethyl cellulose (OCMC-DA) and cellulose nanofibers (CNF). Moreover, neomycin (NEO), an aminoglycoside antibiotic with multifunctional groups, was incorporated into the hydrogel network as both an antibacterial agent and a cross-linker. The dynamic reversible borate ester linkages and hydrogen bonds between OCMC-DA, PVA, and CNF, along with dynamic cross-linking imine linkages between NEO and OCMC-DA, endowed the hydrogel with excellent self-healing ability and stretchability (3300%). The as-reinforced networks enhanced the mechanical properties of hydrogels significantly. More remarkably, the composite hydrogel with improved biodegradability and biocompatibility is pH-responsive and effective against a broad spectrum of bacteria, which is attributed to the controllable release of NEO for steady availability of the antibiotic on the wound location. Overall, the antimicrobial hydrogel with rapid self-healing and reliable mechanical properties holds significant promise as dressing material for wound healing.
水凝胶作为一种伤口敷料,具有超拉伸性、快速自修复和优异的抗菌活性,需求量很大,特别是用于关节皮肤伤口愈合。本文采用聚乙烯醇(PVA)-硼砂凝胶作为基质,协同或双重增强多巴胺接枝氧化羧甲基纤维素(OCMC-DA)和纤维素纳米纤维(CNF),开发了一种多功能、柔韧的复合水凝胶。此外,将具有多功能基团的氨基糖苷类抗生素新霉素(NEO)作为抗菌剂和交联剂掺入水凝胶网络中。OCMC-DA、PVA 和 CNF 之间的动态可逆硼酸酯键和氢键,以及 NEO 和 OCMC-DA 之间的动态交联亚胺键,赋予水凝胶优异的自修复能力和拉伸性(3300%)。增强网络显著提高了水凝胶的机械性能。更值得注意的是,具有改善的生物降解性和生物相容性的复合水凝胶呈 pH 响应性,对广谱细菌有效,这归因于 NEO 的可控释放,使抗生素在伤口部位稳定存在。总的来说,具有快速自修复和可靠机械性能的抗菌水凝胶有望成为伤口愈合的敷料材料。