Yan Wan-Ting, Wang Jing-Song, Fan Peng-Zhou, Roberts Sally, Wright Karina, Zhang Zheng-Zheng
Department of Sports Medicine, Sun Yat-Sen Memorial Hospital, Sun Yat-Sen University, Guangzhou, China.
Xingyi People's Hospital, Xingyi, Guizhou, China.
J Cartil Jt Preserv. 2024 Dec;4(4):None. doi: 10.1016/j.jcjp.2024.100166.
The meniscus is an important cushioning structure of the knee joint, with the maintenance of its normal structure and function playing a crucial role in protecting the joint from early degeneration. Stem/progenitor cells could be the key to help researchers to have a deeper understanding of the biological process of meniscal injury repair and may be important in the meniscus tissue regeneration processes. To the best of our knowledge, there is currently a lack of comprehensive reviews on existing research about the meniscus progenitor cells (MPCs).
By reviewing the existing MPC literature, we aim to provide insights for future research on meniscus regeneration.
The isolation methods, biological characteristics and the translational application of MPCs were summarized.
MPCs could be isolated according to their colony-forming ability, marker expression, migration ability, and differential adhesion to fibronectin. Most existing studies on surface markers of MPCs have largely followed the paradigm of mesenchymal stromal/stem cell research. Based on the information provided by their surface markers and expression profile, researchers located MPCs in the peripheral surface area of the meniscus. Few researches have investigated the translation and application of MPCs, with most studies being limited to MPCs extraction and subsequent reimplantation in vivo.
MPCs are a group of meniscus-resident cells, which exhibit certain stem/progenitor cell characteristics, such as the ability to undergo multilineage differentiation in in vitro culture.
半月板是膝关节重要的缓冲结构,其正常结构和功能的维持对于保护关节免于早期退变起着关键作用。干/祖细胞可能是帮助研究人员更深入了解半月板损伤修复生物学过程的关键,并且在半月板组织再生过程中可能具有重要意义。据我们所知,目前缺乏关于半月板祖细胞(MPCs)现有研究的全面综述。
通过回顾MPCs的现有文献,我们旨在为半月板再生的未来研究提供见解。
总结了MPCs的分离方法、生物学特性及转化应用。
MPCs可根据其集落形成能力、标志物表达、迁移能力以及对纤连蛋白的差异黏附性进行分离。大多数关于MPCs表面标志物的现有研究在很大程度上遵循了间充质基质/干细胞研究的模式。基于其表面标志物和表达谱提供的信息,研究人员将MPCs定位在半月板的外周表面区域。很少有研究探讨MPCs的转化和应用,大多数研究仅限于MPCs的提取及随后在体内的重新植入。
MPCs是一群驻留在半月板的细胞,其表现出某些干/祖细胞特征,如在体外培养中进行多向分化的能力。