Cui Jiaming, Zhang Siqi, Cheng Songmiao, Shen Hai
Sichuan Provincial Orthopaedic Hospital, Chengdu, Sichuan, China.
Guangzhou Medical University, Guangzhou, Guangdong, China.
Front Bioeng Biotechnol. 2023 Feb 13;11:1077490. doi: 10.3389/fbioe.2023.1077490. eCollection 2023.
Due to recalcitrant microangiopathy and chronic infection, traditional treatments do not easily produce satisfactory results for chronic diabetic ulcers. In recent years, due to the advantages of high biocompatibility and modifiability, an increasing number of hydrogel materials have been applied to the treatment of chronic wounds in diabetic patients. Research on composite hydrogels has received increasing attention since loading different components can greatly increase the ability of composite hydrogels to treat chronic diabetic wounds. This review summarizes and details a variety of newly loaded components currently used in hydrogel composites for the treatment of chronic diabetic ulcers, such as polymer/polysaccharides/organic chemicals, stem cells/exosomes/progenitor cells, chelating agents/metal ions, plant extracts, proteins (cytokines/peptides/enzymes) and nucleoside products, and medicines/drugs, to help researchers understand the characteristics of these components in the treatment of diabetic chronic wounds. This review also discusses a number of components that have not yet been applied but have the potential to be loaded into hydrogels, all of which play roles in the biomedical field and may become important loading components in the future. This review provides a "loading component shelf" for researchers of composite hydrogels and a theoretical basis for the future construction of "all-in-one" hydrogels.
由于顽固性微血管病变和慢性感染,传统治疗方法对于慢性糖尿病溃疡难以轻易产生满意的效果。近年来,由于具有高生物相容性和可改性的优点,越来越多的水凝胶材料已应用于糖尿病患者慢性伤口的治疗。自从负载不同成分能够大大提高复合水凝胶治疗慢性糖尿病伤口的能力以来,对复合水凝胶的研究受到了越来越多的关注。本综述总结并详细介绍了目前用于治疗慢性糖尿病溃疡的水凝胶复合材料中各种新负载的成分,如聚合物/多糖/有机化学品、干细胞/外泌体/祖细胞、螯合剂/金属离子、植物提取物、蛋白质(细胞因子/肽/酶)和核苷产品,以及药物,以帮助研究人员了解这些成分在治疗糖尿病慢性伤口中的特性。本综述还讨论了一些尚未应用但有可能负载到水凝胶中的成分,所有这些成分在生物医学领域都发挥着作用,并且可能在未来成为重要的负载成分。本综述为复合水凝胶研究人员提供了一个“负载成分货架”,并为未来构建“一体化”水凝胶提供了理论基础。