Lin Xuran, Zhang Xinge, Wang Yuechen, Chen Weiyu, Zhu Zhikang, Wang Shoujie
Department of Plastic Surgery, the Fourth Affiliated Hospital of School of Medicine, and International School of Medicine, Zhejiang University, Yiwu 322000, China.
Department of Respiratory and Critical Care Medicine, Center for Oncology Medicine, the Fourth Affiliated Hospital of School of Medicine, and International School of Medicine, International Institutes of Medicine, Zhejiang University, Yiwu 322000, China.
Int J Biol Macromol. 2025 Jan;285:138098. doi: 10.1016/j.ijbiomac.2024.138098. Epub 2024 Nov 26.
Refractory wounds represent a significant health concern that presents considerable challenges within clinical practice. The healing process of refractory wounds, which involves various cell types and biologically active molecules, is dynamically influenced by multiple factors, including diabetes, infections, and inflammation. Owing to their hydrophilicity, biocompatibility, and capacity for drug loading, hydrogels have emerged as promising and innovative biomaterials for enhancing wound healing. In recent decades, hydrogels with inherent therapeutic properties have been identified. Moreover, advanced hydrogel-based drug delivery systems have been developed to facilitate the sustained and controlled release of therapeutic agents at the site of refractory wounds. This review aims to summarize recent advancements and applications of hydrogels, including those with intrinsic therapeutic properties and hydrogel-based drug delivery systems, in the treatment of refractory wounds. Additionally, we discuss the limitations associated with hydrogel applications and propose future perspectives, which will lead to ongoing efforts to optimize hydrogels as ideal biomaterials for refractory wound healing.
难愈合伤口是一个重大的健康问题,在临床实践中带来了相当大的挑战。难愈合伤口的愈合过程涉及多种细胞类型和生物活性分子,受到多种因素的动态影响,包括糖尿病、感染和炎症。由于其亲水性、生物相容性和药物负载能力,水凝胶已成为用于促进伤口愈合的有前景且创新的生物材料。近几十年来,已发现具有固有治疗特性的水凝胶。此外,还开发了先进的基于水凝胶的药物递送系统,以促进治疗剂在难愈合伤口部位的持续和控释。本综述旨在总结水凝胶在难愈合伤口治疗中的最新进展和应用,包括具有固有治疗特性的水凝胶和基于水凝胶的药物递送系统。此外,我们讨论了水凝胶应用相关的局限性并提出未来展望,这将促使人们不断努力优化水凝胶,使其成为用于难愈合伤口愈合的理想生物材料。