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骨骼系统的类器官培养发展

Organoid Culture Development for Skeletal Systems.

作者信息

Qing Jia, Guo Qian, Lv Longwei, Zhang Xiao, Liu Yunsong, Heng Boon Chin, Li Zheng, Zhang Ping, Zhou Yongsheng

机构信息

Department of Prosthodontics, Peking University School and Hospital of Stomatology & National Center of Stomatology & National Clinical Research Center for Oral Diseases & National Engineering Research Center of Oral Biomaterials and Digital Medical Devices & Beijing Key Laboratory of Digital Stomatology, Haidian District, Beijing, China.

The Central Laboratory, Peking University School and Hospital of Stomatology, Beijing, China.

出版信息

Tissue Eng Part B Rev. 2023 Oct;29(5):545-557. doi: 10.1089/ten.TEB.2023.0022. Epub 2023 Jun 23.

Abstract

Organoids are widely considered to be ideal models that have been widely applied in many fields, including regenerative medicine, disease research and drug screening. It is distinguished from other three-dimensional culture model systems by self-organization and sustainability in long-term culture. The three core components of organoid culture are cells, exogenous factors, and culture matrix. Due to the complexity of bone tissue, and heterogeneity of osteogenic stem/progenitor cells, it is challenging to construct organoids for modeling skeletal systems. In this study, we examine current progress in the development of skeletal system organoid culture systems and analyze the current research status of skeletal stem cells, their microenvironmental factors, and various potential organoid culture matrix candidates to provide cues for future research trajectory in this field. Impact Statement The emergence of organoids has brought new opportunities for the development of many biomedical fields. The bone organoid field still has much room for exploration. This review discusses the characteristics distinguishing organoids from other three-dimensional model systems and examines current progress in the organoid production of skeletal systems. In addition, based on core elements of organoid cultures, three main problems that need to be solved in bone organoid generation are further analyzed. These include the heterogeneity of skeletal stem cells, their microenvironmental factors, and potential organoid culture matrix candidates. This information provides direction for the future research of bone organoids.

摘要

类器官被广泛认为是理想的模型,已在包括再生医学、疾病研究和药物筛选在内的许多领域中得到广泛应用。它通过自我组织和长期培养的可持续性与其他三维培养模型系统相区别。类器官培养的三个核心组成部分是细胞、外源性因子和培养基质。由于骨组织的复杂性和成骨干/祖细胞的异质性,构建用于模拟骨骼系统的类器官具有挑战性。在本研究中,我们考察了骨骼系统类器官培养系统发展的当前进展,并分析了骨骼干细胞、其微环境因素以及各种潜在的类器官培养基质候选物的当前研究状况,以为该领域未来的研究轨迹提供线索。影响声明类器官的出现为许多生物医学领域的发展带来了新机遇。骨类器官领域仍有很大的探索空间。本综述讨论了类器官与其他三维模型系统相区别的特征,并考察了骨骼系统类器官生成的当前进展。此外,基于类器官培养的核心要素,进一步分析了骨类器官生成中需要解决的三个主要问题。这些问题包括骨骼干细胞的异质性、其微环境因素以及潜在的类器官培养基质候选物。这些信息为骨类器官的未来研究提供了方向。

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