Department of Polymer & Materials Chemistry, Faculty of Chemistry & Petroleum Sciences, Shahid Beheshti University, G.C, 1983969411 Tehran, Iran.
Dental Research Center, Dentistry Research Institute, Tehran University of Medical Sciences, Iran; Nanotechnology Research Centre, Faculty of Pharmacy, Tehran University of Medical Sciences, Tehran 1417614315, Iran.
Carbohydr Polym. 2024 May 1;331:121856. doi: 10.1016/j.carbpol.2024.121856. Epub 2024 Feb 1.
Our study aimed to introduce a novel double-cross-linked and thermoresponsive hydrogel with remarkable potential for accelerating third-degree burn wound healing. Burn injuries are recognized as challenging, critical wounds. Especially in third-degree burns, treatment is demanding due to extended wounds, irregular shapes, significant exudation, and intense pain during dressing changes. In this work, hydrogels made of zwitterionic chitosan and dialdehyde starch (ZCS and ZDAS) were created to deliver silymarine (SM) and levofloxacin (LEV). The hydrogels were effortlessly produced using dynamic Schiff base linkages and ionic interactions between ZCS and ZDAS at appropriate times. The pore uniformity, gel fraction, and commendable swelling properties can imply a suitable degree of Schiff base cross-link. The hydrogel demonstrated outstanding shape retention, and significant self-healing and flexibility abilities, enabling it to uphold its form even during bodily movements. After injecting biocompatible hydrogel on the wound, a notable acceleration in wound closure was observed on day 21 (98.1 ± 1.10 %) compared to the control group (75.1 ± 6.13 %), and histopathological analysis revealed a reduction of inflammation that can be linked to remarkable antioxidant and antibiotic properties. The results demonstrate the hydrogel's efficacy in promoting burn wound healing, making it a promising candidate for medical applications.
我们的研究旨在介绍一种新型的双重交联和温敏水凝胶,它具有加速三度烧伤伤口愈合的巨大潜力。烧伤被认为是具有挑战性的、严重的创伤。特别是三度烧伤,由于伤口延长、形状不规则、大量渗出物以及更换敷料时的剧烈疼痛,治疗难度很大。在这项工作中,我们制备了两性离子壳聚糖和双醛淀粉(ZCS 和 ZDAS)水凝胶,以递送水飞蓟素(SM)和左氧氟沙星(LEV)。水凝胶是通过动态席夫碱键和 ZCS 与 ZDAS 之间的离子相互作用在适当的时间轻松制备的。均匀的孔径、凝胶分数和令人称道的溶胀性能意味着合适的席夫碱交联程度。该水凝胶表现出出色的形状保持性、显著的自修复和柔韧性能力,即使在身体运动时也能保持其形状。在伤口上注射生物相容性水凝胶后,第 21 天(98.1±1.10%)的伤口闭合速度明显加快,与对照组(75.1±6.13%)相比,并且组织病理学分析显示炎症减轻,这与显著的抗氧化和抗生素特性有关。结果表明,该水凝胶在促进烧伤伤口愈合方面具有疗效,有望成为医学应用的候选材料。