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Application of smart hydrogel materials in cartilage injury repair: A systematic review and meta-analysis

自愈水凝胶 系统回顾 背景(考古学) 软骨损伤 软骨 荟萃分析 计算机科学 生物医学工程 关节软骨 材料科学 医学 梅德林 病理 骨关节炎 化学 生物 替代医学 高分子化学 古生物学 解剖 生物化学
作者
Juncheng Guo,Yijun Yang,Yang Xiang,Shufang Zhang,Xueyi Guo
出处
期刊:Journal of Biomaterials Applications [SAGE Publishing]
卷期号:39 (2): 96-116 被引量:2
标识
DOI:10.1177/08853282241248779
摘要

Objective: Cartilage injury is a common clinical condition, and treatment approaches have evolved over time from traditional conservative and surgical methods to regenerative repair. In this context, hydrogels, as widely used biomaterials in the field of cartilage repair, have garnered significant attention. Particularly, responsive hydrogels (also known as “smart hydrogels”) have shown immense potential due to their ability to respond to various physicochemical properties and environmental changes. This paper aims to review the latest research developments of hydrogels in cartilage repair, utilizing a more systematic and comprehensive meta-analysis approach to evaluate the research status and application value of responsive hydrogels. The goal is to determine whether these materials demonstrate favorable therapeutic effects for subsequent clinical applications, thereby offering improved treatment methods for patients with cartilage injuries. Method: This study employed a systematic literature search method to summarize the research progress of responsive hydrogels by retrieving literature on the subject and review studies. The search terms included “hydrogel” and “cartilage,” covering data from database inception up to October 2023. The quality of the literature was independently evaluated using Review Manager v5.4 software. Quantifiable data was statistically analyzed using the R language. Results: A total of 7 articles were retrieved for further meta-analysis. In the quality assessment, the studies demonstrated reliability and accuracy. The results of the meta-analysis indicated that responsive hydrogels exhibit unique advantages and effective therapeutic outcomes in the field of cartilage repair. Subgroup analysis revealed potential influences of factors such as different types of hydrogels and animal models on treatment effects. Conclusion: Responsive hydrogels show significant therapeutic effects and substantial application potential in the field of cartilage repair. This study provides strong scientific evidence for their further clinical applications and research, with the hope of promoting advancements in the treatment of cartilage injuries.
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