Zhou Zhuxing, Wang Jiajie, Jiang Chaoqian, Xu Kaiwang, Xu Tengjing, Yu Xinning, Fang Jinghua, Yang Yanyu, Dai Xuesong
Department of Orthopedic Surgery, the Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310000, China.
Orthopedics Research Institute of Zhejiang University, Hangzhou 310000, China.
Gels. 2024 Feb 1;10(2):114. doi: 10.3390/gels10020114.
Meniscus tissue engineering (MTE) has emerged as a promising strategy for meniscus repair and regeneration. As versatile platforms, hydrogels have gained significant attention in this field, as they possess tunable properties that allow them to mimic native extracellular matrices and provide a suitable microenvironment. Additionally, hydrogels can be minimally invasively injected and can be adjusted to match the shape of the implant site. They can conveniently and effectively deliver bioactive additives and demonstrate good compatibility with other functional materials. These inherent qualities have made hydrogel a promising candidate for therapeutic approaches in meniscus repair and regeneration. This article provides a comprehensive review of the advancements made in the research on hydrogel application for meniscus tissue engineering. Firstly, the biomaterials and crosslinking strategies used in the formation of hydrogels are summarized and analyzed. Subsequently, the role of therapeutic additives, including cells, growth factors, and other active products, in facilitating meniscus repair and regeneration is thoroughly discussed. Furthermore, we summarize the key issues for designing hydrogels used in MTE. Finally, we conclude with the current challenges encountered by hydrogel applications and suggest potential solutions for addressing these challenges in the field of MTE. We hope this review provides a resource for researchers and practitioners interested in this field, thereby facilitating the exploration of new design possibilities.
半月板组织工程(MTE)已成为一种有前景的半月板修复和再生策略。作为多功能平台,水凝胶在该领域受到了广泛关注,因为它们具有可调节的特性,能够模拟天然细胞外基质并提供合适的微环境。此外,水凝胶可以通过微创方式注射,并且可以进行调整以匹配植入部位的形状。它们能够方便有效地递送生物活性添加剂,并与其他功能材料表现出良好的相容性。这些固有特性使水凝胶成为半月板修复和再生治疗方法的一个有前景的候选材料。本文全面综述了水凝胶在半月板组织工程应用研究方面取得的进展。首先,总结并分析了用于形成水凝胶的生物材料和交联策略。随后,深入讨论了治疗性添加剂,包括细胞、生长因子和其他活性产物,在促进半月板修复和再生中的作用。此外,我们总结了设计用于半月板组织工程的水凝胶的关键问题。最后,我们总结了水凝胶应用目前遇到的挑战,并提出了在半月板组织工程领域应对这些挑战的潜在解决方案。我们希望这篇综述为该领域感兴趣的研究人员和从业者提供参考,从而促进新设计可能性的探索。