Zhang Qiyao, Feng Pei, Pei Zihan, Cao Yinsheng, Jiang Kun, Cai Xiong, Wu Ping
Science and Technology Innovation Center, Hunan University of Chinese Medicine, Changsha 410208, Hunan, China.
School of Traditional Chinese Medicine, Hunan University of Chinese Medicine, Changsha 410208, Hunan, China.
Sheng Wu Gong Cheng Xue Bao. 2025 Aug 25;41(8):3049-3063. doi: 10.13345/j.cjb.250056.
In recent years, the rapid development of transportation and sports industries, coupled with the accelerated population aging in China, has led to a steady increase in the incidence of articular cartilage injuries, wear, and degenerative changes. Currently, the clinical treatment options for cartilage defects primarily include conservative therapies and surgical interventions, both of which have certain limitations. Cartilage tissue engineering (CTE), as a novel technology, provides an infinite prospect for cartilage regeneration and repair. Because of the abilities of scaffolds to mimic the natural cartilage structure, exhibit excellent biocompatibility and biomimetic mechanical properties, and promote cell adhesion and proliferation, scaffolds are considered effective delivery systems for growth factors, genes, and drugs. This review summarizes the clinical treatments for cartilage defects and their limitations, discusses the materials and preparation techniques of scaffolds used in CTE, with a particular focus on drug-loaded scaffold delivery systems in cartilage repair and regeneration, and offers a perspective on the future application of drug-loaded CTE. The aim is to provide theoretical guidance and new approaches for the repair of cartilage defects.
近年来,交通和体育产业的快速发展,再加上中国人口老龄化加速,导致关节软骨损伤、磨损和退行性变的发病率稳步上升。目前,软骨缺损的临床治疗选择主要包括保守治疗和手术干预,两者都有一定的局限性。软骨组织工程(CTE)作为一项新技术,为软骨再生和修复提供了无限前景。由于支架能够模拟天然软骨结构,具有优异的生物相容性和仿生力学性能,并能促进细胞黏附和增殖,因此支架被认为是生长因子、基因和药物的有效递送系统。本文综述了软骨缺损的临床治疗方法及其局限性,讨论了CTE中使用的支架材料和制备技术,特别关注载药支架递送系统在软骨修复和再生中的应用,并对载药CTE的未来应用进行了展望。目的是为软骨缺损的修复提供理论指导和新方法。