Zhou Xingyu, Ma Wendi, Jiang Junhui, Dang Junbo, Lv Ruifu, Wang Hongbo, Ma Minna, Sun Dahui, Zhang Mei
National and Local Joint Engineering Laboratory for Synthetic Technology of High Performance Polymer, College of Chemistry, Jilin University, Changchun 130012, China.
Chongqing Polycomp International Co., Ltd, Chongqing 400082, China.
Biomater Adv. 2025 Apr;169:214157. doi: 10.1016/j.bioadv.2024.214157. Epub 2024 Dec 17.
On account of the existence of antibiotic resistance, the wound healing of pathogenic infection is still a challenge in modern society. A desirable wound dressing should own the abilities of adhesiveness, hemostasis and good mechanical property, meanwhile the property of eliminating bacteria without side effects is also highly needed. In this work, we established a kind of hydrogel based on carboxymethyl cellulose-graft-tyramine (CMC-Ty) and MXene (TiCT) through employing HO/HRP (horseradish peroxidase) as the initiator, then the as-prepared hydrogel (named CMC-Ty/MXene) was immersed in tannic acid (TA) solution, and this TA-treated hydrogel was called CMC-Ty/MXene+TA. By employing TA as the multi-functional H-bond provider, the adhesiveness, hemostatic ability, mechanical property and bactericidal performance of the hydrogel was enhanced. And MXene in this system exerted benign photothermal antimicrobial performance, it was able to transform near-infrared (NIR) light into heat, then the bacteria would be physically damaged (thermal destruction) due to the hyperthermy, hence the antibacterial effect of which will not be restricted by antibiotic resistance. The temperature of the hydrogel in the experimental group can be increased by 25 °C after irradiation by 808 nm NIR light for 10 min, and the bactericidal efficiency against both E. coli and S. aureus reached >99 %. In vivo tests demonstrated that with the assistance of NIR irradiation, the hydrogel can distinctly accelerate the S. aureus infected wound closure. We envisage that this non-antibiotic dependent multifunctional photothermal hydrogel can provide a promise for bacteria-invaded wound healing.
由于抗生素耐药性的存在,致病性感染的伤口愈合在现代社会中仍然是一个挑战。理想的伤口敷料应具有粘附性、止血性和良好的机械性能,同时还非常需要具有无副作用的抗菌性能。在这项工作中,我们以羧甲基纤维素接枝酪胺(CMC-Ty)和MXene(TiCT)为基础,通过使用HO/HRP(辣根过氧化物酶)作为引发剂制备了一种水凝胶,然后将制备好的水凝胶(命名为CMC-Ty/MXene)浸泡在单宁酸(TA)溶液中,这种经TA处理的水凝胶称为CMC-Ty/MXene+TA。通过使用TA作为多功能氢键提供者,增强了水凝胶的粘附性、止血能力、机械性能和杀菌性能。并且该体系中的MXene具有良好的光热抗菌性能,可以将近红外(NIR)光转化为热量,细菌会因高温而受到物理损伤(热破坏),因此其抗菌效果不受抗生素耐药性的限制。实验组的水凝胶在808nm近红外光照射10分钟后温度可升高25℃,对大肠杆菌和金黄色葡萄球菌的杀菌效率均达到>99%。体内试验表明,在近红外照射的辅助下,水凝胶可以显著加速金黄色葡萄球菌感染伤口的愈合。我们设想这种非抗生素依赖性多功能光热水凝胶可为细菌入侵伤口的愈合提供希望。