Key Laboratory of Space Bioscience and Biotechnology, School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, China.
Key Laboratory of Space Bioscience and Biotechnology, School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, China.
Int J Biol Macromol. 2023 Mar 31;232:123271. doi: 10.1016/j.ijbiomac.2023.123271. Epub 2023 Jan 14.
The most important function of skin is to prevent biological dehydration and protect internal structures from the environment. When a wound becomes infected, the bacteria cause a sustained inflammatory response at the infected site, further delaying the healing process. Therefore, the search for better antibacterial strategies has become a topic of great concern. Therefore, the development of multifunctional hydrogels with antibacterial properties, ROS removal, and hemostasis is urgently required for promoting wound healing process. Chitosan is the only cationic natural polysaccharide with good biocompatibility, antibacterial and hemostatic ability. It is a candidate material to prepare hydrogel wound dressing. Hyaluronic acid (HA) is a natural biological macromolecule that belongs to a group of heteropolysaccharides known as non-sulfated glycosaminoglycans. It is a major component of the skin extracellular matrix (ECM) and is involved in inflammation, angiogenesis, and tissue regeneration. Here, the hydrogel was designed with the natural macromolecular of the gallic acid-grafted quaternized chitosan (GA-QCS) and oxidized hyaluronic acid (OHA) via Schiff base and/or Michael addition reaction. It was found that the GA-QCS/OHA hydrogel exhibited multifunctional capabilities with injectable, hemostasis, degradation, and release of medicines. In addiation, GA-QCS/OHA hydrogels exhibited remarkable antioxidant and migration promoting effects in vitro. And the mupirocin-loaded GA-QCS/OHA hydrogels had inhibitory effects on E. coli (Gram-negative bacterium) and S. aureus (Gram-positive bacterium) in vitro. A full-thickness skin of S. aureus infection mouse wound model was used to test the bioactive effect of the hydrogels and the accelerated wound healing was obtained due to the inhibiting the proinflammatory factor TNF-α and upregulating the vascularization factor CD31. This study proposed an effective strategy based on antioxidant, antibacterial, self-healing multifunctional hydrogel for wound healing under various infectious complications. This natural macromolecular hydrogel could act as an effective reactive oxygen species scavenger to promote the wound healing in the future.
皮肤最重要的功能是防止生物脱水和保护内部结构免受环境影响。当伤口感染时,细菌会在感染部位引起持续的炎症反应,进一步延迟愈合过程。因此,寻找更好的抗菌策略已成为一个备受关注的话题。因此,迫切需要开发具有抗菌、清除 ROS 和止血功能的多功能水凝胶来促进伤口愈合过程。壳聚糖是唯一具有良好生物相容性、抗菌和止血能力的阳离子天然多糖,是制备水凝胶伤口敷料的候选材料。透明质酸(HA)是一种天然生物大分子,属于非硫酸化糖胺聚糖组的一组异多糖。它是皮肤细胞外基质(ECM)的主要成分,参与炎症、血管生成和组织再生。在这里,通过席夫碱和/或迈克尔加成反应,使用天然大分子没食子酸接枝季铵化壳聚糖(GA-QCS)和氧化透明质酸(OHA)设计了水凝胶。结果发现,GA-QCS/OHA 水凝胶具有可注射、止血、降解和药物释放的多功能特性。此外,GA-QCS/OHA 水凝胶在体外表现出显著的抗氧化和促进迁移作用。并且载米诺环素的 GA-QCS/OHA 水凝胶对体外的 E. coli(革兰氏阴性菌)和 S. aureus(革兰氏阳性菌)具有抑制作用。使用金黄色葡萄球菌感染的全层皮肤小鼠伤口模型测试了水凝胶的生物活性作用,并由于抑制促炎因子 TNF-α和上调血管生成因子 CD31 而获得了加速的伤口愈合。本研究提出了一种基于抗氧化、抗菌、自修复多功能水凝胶的有效策略,用于各种感染并发症下的伤口愈合。这种天然大分子水凝胶可以作为一种有效的活性氧清除剂,以促进未来的伤口愈合。