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释放可注射水凝胶在软骨修复方面的潜力。

Unlocking the potential of injectable hydrogels for cartilage repair.

作者信息

Atwal Arjan, Mahnavi Ali, Davoodi Pooya

机构信息

School of Allied Health Professions and Pharmacy, Keele University, Staffordshire, UK.

Guy Hilton Research Centre, School of Allied Health Professions and Pharmacy, Keele University, Staffordshire, UK.

出版信息

Regen Med. 2025 May;20(5):193-202. doi: 10.1080/17460751.2025.2520708. Epub 2025 Jun 18.

Abstract

Osteoarthritis (OA), a prevalent degenerative joint disease, poses significant global health implications and is characterized by progressive degradation of articular cartilage, resulting in debilitating pain and disability. Current treatments often provide only symptomatic relief or require multiple invasive open-joint procedures that are both costly and surgically complex. This review intends to evaluate key design considerations, drawing inspiration from clinically approved therapeutics and recent advances in the field that can truly unlock the potential of injectable hydrogels in cartilage tissue engineering. These include the choice of cargo, hydrogel architecture, and critical factors that are often overlooked in injectable hydrogels, such as ensuring integration with native tissue and restoring joint lubrication. The manuscript also addresses key barriers to clinical translation, including navigating stringent regulatory pathways and optimizing hydrogel performance to meet the mechanical and biological demands of the joint environment. Finally, the review outlines future research directions with emphasis on acellular off-the-shelf strategies, and personalized medicine approaches informed by advances in -omics and high-throughput screening data to accelerate the clinical translation of next-generation injectable hydrogels for effective cartilage repair.

摘要

骨关节炎(OA)是一种常见的退行性关节疾病,对全球健康具有重大影响,其特征是关节软骨进行性退化,导致使人衰弱的疼痛和残疾。目前的治疗方法通常只能缓解症状,或者需要多次侵入性的开放性关节手术,这些手术成本高昂且手术复杂。本综述旨在评估关键的设计考量因素,从临床批准的治疗方法和该领域的最新进展中汲取灵感,这些进展能够真正释放可注射水凝胶在软骨组织工程中的潜力。这些因素包括载药的选择、水凝胶结构,以及可注射水凝胶中经常被忽视的关键因素,如确保与天然组织整合和恢复关节润滑。该手稿还讨论了临床转化的关键障碍,包括应对严格的监管途径,以及优化水凝胶性能以满足关节环境的机械和生物学需求。最后,本综述概述了未来的研究方向,重点是无细胞现货策略,以及借助组学和高通量筛选数据的进展实现个性化医疗方法,以加速下一代可注射水凝胶用于有效软骨修复的临床转化。

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