Fu Liwei, Wu Jiang, Zhang Zhichao, Zhang Zhixing, Zheng Yazhe, Pinxue Li, Long Chuanyang, Sui Xiang, Liu Shuyun, Guo Quanyi
School of Medicine, Nankai University, Tianjin 300071, People's Republic of China.
Institute of Orthopedics, Chinese PLA General Hospital; Beijing Key Laboratory of Regenerative Medicine in Orthopedics; Key Laboratory of Musculoskeletal Trauma & War Injuries PLA, No. 28 Fuxing Road, Haidian District, Beijing 100853, People's Republic of China.
Biofabrication. 2025 Jul 17;17(3). doi: 10.1088/1758-5090/ade740.
Osteochondral tissue is a functional complex with crosstalk shown to occur between cartilage and subchondral bone, playing a pivotal role in joint function and mobility. Osteochondral tissue repair has long been an enormous challenge in regenerative medicine and tissue engineering. With the development of biofabrication and biomaterials innovations, organoid technology, which can mimic the biological architecture and characteristics of organs through the construction of 3D tissue structures, provides novel insight into osteochondral (OC) tissue regeneration. This review explores the significance of OC organoid biofabrication and the related biological structures and functions of the joint OC unit. Furthermore, we summarize novel biofabrication technologies used for OC organoids, such as 3D printing and microfluidics, and propose construction strategies for OC organoids. Finally, the application directions and challenges of OC organoids are outlined, emphasizing their potential for OC disease treatment.
骨软骨组织是一种功能复合体,已证明软骨与软骨下骨之间存在相互作用,在关节功能和活动中起关键作用。长期以来,骨软骨组织修复一直是再生医学和组织工程领域的巨大挑战。随着生物制造和生物材料创新的发展,类器官技术通过构建三维组织结构来模拟器官的生物学结构和特征,为骨软骨(OC)组织再生提供了新的见解。本文综述探讨了OC类器官生物制造的意义以及关节OC单元的相关生物学结构和功能。此外,我们总结了用于OC类器官的新型生物制造技术,如3D打印和微流体技术,并提出了OC类器官的构建策略。最后,概述了OC类器官的应用方向和挑战,强调了它们在OC疾病治疗中的潜力。