Kong Yajie, Yang Yujia, Hou Yu, Wang Yuzhong, Li Wenjing, Song Yongzhou
Department of Orthopedics, The Second Hospital of Hebei Medical University, Shijiazhuang, Hebei, China.
Hebei Medical University-National University of Ireland Galway Stem Cell Research Center, Hebei Medical University, Shijiazhuang, Hebei, China.
Front Cell Dev Biol. 2024 Sep 3;12:1459891. doi: 10.3389/fcell.2024.1459891. eCollection 2024.
Bone diseases such as osteoporosis and osteoarthritis have become important human health problems, requiring a deeper understanding of the pathogenesis of related diseases and the development of more effective treatments. Bone organoids are three-dimensional tissue masses that are useful for drug screening, regenerative medicine, and disease modeling because they may mimic the structure and physiological activities of organs. Here, we describe various potential methods for culturing bone-related organoids from different stem cells, detailing the construction processes and highlighting the main applications of these bone organoid models. The application of bone organoids in different skeletal diseases is highlighted, and current and promising bone organoids for drug screening and regenerative medicine as well as the latest technological advancements in bone organoids are discussed, while the future development of bone organoids is discussed. Looking forward, it will provide a reference for constructing bone organoids with more complete structures and functions and applying them to biomedical research.
骨质疏松症和骨关节炎等骨骼疾病已成为重要的人类健康问题,需要更深入地了解相关疾病的发病机制并开发更有效的治疗方法。骨类器官是三维组织团块,因其可以模拟器官的结构和生理活动,所以在药物筛选、再生医学和疾病建模方面很有用。在这里,我们描述了从不同干细胞培养骨相关类器官的各种潜在方法,详细介绍了构建过程,并突出了这些骨类器官模型的主要应用。重点介绍了骨类器官在不同骨骼疾病中的应用,讨论了当前用于药物筛选和再生医学的以及有前景的骨类器官,以及骨类器官的最新技术进展,同时也探讨了骨类器官的未来发展。展望未来,它将为构建具有更完整结构和功能的骨类器官并将其应用于生物医学研究提供参考。