Jin Pan, Liu Lei, Chen Xichi, Cheng Lin, Zhang Weining, Zhong Gang
Health Science Center, Yangtze University, Jingzhou, China.
Collaborative Innovation Centre of Regenerative Medicine and Medical BioResource Development and Application Co-constructed by the Province and Ministry, Guangxi Medical University, Nanning, China.
Front Bioeng Biotechnol. 2022 Dec 8;10:1082499. doi: 10.3389/fbioe.2022.1082499. eCollection 2022.
The meniscus is a kind of fibrous cartilage structure that serves as a cushion in the knee joint to alleviate the mechanical load. It is commonly injured, but it cannot heal spontaneously. Traditional meniscectomy is not currently recommended as this treatment tends to cause osteoarthritis. Due to their good biocompatibility and versatile regulation, hydrogels are emerging biomaterials in tissue engineering. Hydrogels are excellent candidates in meniscus rehabilitation and regeneration because they are fine-tunable, easily modified, and capable of delivering exogenous drugs, cells, proteins, and cytokines. Various hydrogels have been reported to work well in meniscus-damaged animals, but few hydrogels are effective in the clinic, indicating that hydrogels possess many overlooked problems. In this review, we summarize the applications and problems of hydrogels in extrinsic substance delivery, meniscus rehabilitation, and meniscus regeneration. This study will provide theoretical guidance for new therapeutic strategies for meniscus repair.
半月板是一种纤维软骨结构,在膝关节中起缓冲作用,以减轻机械负荷。它常受损伤,但无法自发愈合。目前不推荐传统的半月板切除术,因为这种治疗方法往往会导致骨关节炎。由于水凝胶具有良好的生物相容性和多功能调节性,它们正在成为组织工程领域新兴的生物材料。水凝胶是半月板修复和再生的理想候选材料,因为它们可精细调节、易于修饰,并且能够递送外源性药物、细胞、蛋白质和细胞因子。据报道,各种水凝胶在半月板损伤动物模型中效果良好,但在临床上有效的水凝胶却很少,这表明水凝胶存在许多被忽视的问题。在这篇综述中,我们总结了水凝胶在外源性物质递送、半月板修复和半月板再生中的应用及问题。本研究将为半月板修复的新治疗策略提供理论指导。