Wang Jian, Chen Xiao, Li Ruiyang, Wang Sicheng, Geng Zhen, Shi Zhongmin, Jing Yingying, Xu Ke, Wei Yan, Wang Guangchao, He Chongru, Dong Shiwu, Liu Guohui, Hou Zhiyong, Xia Zhidao, Wang Xinglong, Ye Zhou, Zhou Fengjin, Bai Long, Tan Hongbo, Su Jiacan
Department of Orthopedics, Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200092, China.
Trauma Orthopedics Center, Xinhua Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai 200092, China.
Theranostics. 2025 Jan 1;15(2):682-706. doi: 10.7150/thno.105840. eCollection 2025.
Organoids, self-organized structures derived from stem cells cultured in a specific three-dimensional (3D) microenvironment, have emerged as innovative platforms that closely mimic cellular behavior, tissue architecture, and organ function. Bone organoids, a frontier in organoid research, can replicate the complex structures and functional characteristics of bone tissue. Recent advancements have led to the successful development of bone organoids, including models of callus, woven bone, cartilage, trabecular bone, and bone marrow. These organoids are widely utilized in establishing bone-related disease models, bone injury repair, and drug screening. However, significant discrepancies remain between current bone organoids and human skeletal tissues in terms of morphology and functionality, limiting their ability to accurately model human bone physiology and pathology. To address these challenges and promote standardization in the construction, evaluation, and application of bone organoids, we have convened experts and research teams with substantial expertise in the field. By integrating existing research findings, this consortium aims to establish a consensus to guide future research and application of bone organoids.
类器官是在特定三维(3D)微环境中培养的干细胞衍生的自组织结构,已成为紧密模拟细胞行为、组织结构和器官功能的创新平台。骨类器官作为类器官研究的前沿领域,能够复制骨组织的复杂结构和功能特征。最近的进展已成功开发出骨类器官,包括骨痂、编织骨、软骨、小梁骨和骨髓模型。这些类器官广泛应用于建立骨相关疾病模型、骨损伤修复和药物筛选。然而,目前的骨类器官与人类骨骼组织在形态和功能方面仍存在显著差异,限制了它们准确模拟人类骨生理学和病理学的能力。为应对这些挑战并促进骨类器官构建、评估和应用的标准化,我们召集了该领域具有丰富专业知识的专家和研究团队。通过整合现有研究结果,该联盟旨在达成共识,以指导骨类器官未来的研究和应用。