Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustr. 3, 14195, Berlin, Germany.
Department of Pharmaceutics, School of Pharmacy, Lorestan University of Medical Sciences, 68151-44311, Khorramabad, Iran.
Adv Healthc Mater. 2024 Oct;13(27):e2401289. doi: 10.1002/adhm.202401289. Epub 2024 Jul 8.
Infectious wounds occur when harmful microorganisms such as bacteria or viruses invade a wound site. Its problems associated include delayed healing, increased pain, swelling, and the potential for systemic infections. Therefore, developing new wound dressing materials with antibacterial effects is crucial for improving the healing process. Here a redox-degradable hydrogel loaded with an antibacterial peptide (vancomycin) in a straightforward gram-scale synthesis, is developed. The hydrogel structure consists of a disulfide bond-containing hyperbranched polyglycerol (SS-hPG) that is cross-linked by 4-arm polyethylene glycol-thiol (4-arm PEG-SH). The polymerization mechanism and full characterization of SS-hPG are described as this synthesis is reported for the first time. Rheology is used to ascertain the hydrogel's mechanical characteristics, such as stiffness, and self-healing, determining these properties for different ratios and concentrations of both gel components. The incorporation of disulfide bonds in the hydrogel is proved by conducting degradation experiments in reductive environments. Fluorescein isothiocyanate-albumin (FITC-BSA) and vancomycin both are loaded into the gel, and the guest release kinetics is assessed for both slow and on-demand releases. Finally, the in vitro and in vivo experiments prove that the vancomycin-loaded hydrogel acts as an antibacterial barrier for wound dressing and accelerates the healing of infectious wounds in a mouse model.
当有害微生物(如细菌或病毒)侵入伤口部位时,就会发生感染性伤口。其相关问题包括愈合延迟、疼痛加剧、肿胀以及潜在的全身感染。因此,开发具有抗菌作用的新型伤口敷料材料对于改善愈合过程至关重要。本研究采用简单的克级合成方法,开发了一种载有抗菌肽(万古霉素)的氧化还原降解水凝胶。水凝胶结构由含二硫键的超支化聚甘油(SS-hPG)组成,通过 4 臂聚乙二醇-巯基(4-ARM PEG-SH)交联。该合成方法首次报道了 SS-hPG 的聚合机制和全谱表征。流变学用于确定水凝胶的机械特性,如硬度和自修复能力,并确定不同比例和浓度的凝胶成分的这些特性。通过在还原环境中进行降解实验,证明了水凝胶中二硫键的存在。荧光素异硫氰酸酯-白蛋白(FITC-BSA)和万古霉素都被载入凝胶中,并评估了两种药物的缓慢和按需释放动力学。最后,体外和体内实验证明,载万古霉素水凝胶作为一种抗菌屏障用于伤口敷料,并加速了小鼠模型中感染性伤口的愈合。