Cell and Molecular School of Biology, College of Science, University of Tehran, Tehran, Iran.
Department of Animal Sciences and Marine Biology, Faculty of Life Sciences and Biotechnology, Shahid Beheshti University, Tehran, Iran.
Stem Cell Res Ther. 2024 Jun 21;15(1):183. doi: 10.1186/s13287-024-03790-5.
In the realm of studying joint-related diseases, there is a continuous quest for more accurate and representative models. Recently, regenerative medicine and tissue engineering have seen a growing interest in utilizing organoids as powerful tools for studying complex biological systems in vitro. Organoids, three-dimensional structures replicating the architecture and function of organs, provide a unique platform for investigating disease mechanisms, drug responses, and tissue regeneration. The surge in organoid research is fueled by the need for physiologically relevant models to bridge the gap between traditional cell cultures and in vivo studies. Osteochondral organoids have emerged as a promising avenue in this pursuit, offering a better platform to mimic the intricate biological interactions within bone and cartilage. This review explores the significance of osteochondral organoids and the need for their development in advancing our understanding and treatment of bone and cartilage-related diseases. It summarizes osteochondral organoids' insights and research progress, focusing on their composition, materials, cell sources, and cultivation methods, as well as the concept of organoids on chips and application scenarios. Additionally, we address the limitations and challenges these organoids face, emphasizing the necessity for further research to overcome these obstacles and facilitate orthopedic regeneration.
在研究关节相关疾病的领域,人们一直在寻求更准确和更具代表性的模型。最近,再生医学和组织工程越来越关注利用类器官作为在体外研究复杂生物系统的有力工具。类器官是复制器官结构和功能的三维结构,为研究疾病机制、药物反应和组织再生提供了独特的平台。类器官研究的兴起是由于需要生理相关的模型来弥合传统细胞培养和体内研究之间的差距。骨软骨类器官的出现是这一探索中的一个有前途的途径,为模拟骨和软骨内复杂的生物学相互作用提供了更好的平台。本综述探讨了骨软骨类器官的重要性以及其在推进我们对骨和软骨相关疾病的理解和治疗方面的发展需求。它总结了骨软骨类器官的见解和研究进展,重点介绍了它们的组成、材料、细胞来源和培养方法,以及类器官芯片的概念和应用场景。此外,我们还讨论了这些类器官面临的局限性和挑战,强调需要进一步研究来克服这些障碍,促进骨科再生。