间充质干细胞
CD90型
单元格排序
细胞生物学
滑液
软骨
化学
组织工程
干细胞
生物
免疫学
流式细胞术
病理
解剖
医学
川地34
遗传学
替代医学
骨关节炎
作者
Zhaofeng Jia,Yujie Liang,Xiao Xu,Xingfu Li,Qisong Liu,Yangkan Ou,Li Duan,Weimin Zhu,Wei Lü,Jianyi Xiong,Daping Wang
摘要
Mesenchymal stem cells (MSCs) are the primary source of cells used for cell-based therapy in tissue engineering. MSCs are found in synovial fluid, a source that could be conveniently used for cartilage tissue engineering. However, the purification and characterization of SF-MSCs has been poorly documented in the literature. Here, we outline an easy-to-perform approach for the isolation and culture of MSCs derived from human synovial fluid (hSF-MSCs). We have successfully purified hSF-MSCs using magnetic-activated cell sorting (MACS) using the MSC surface marker, CD90. Purified SF-MSCs demonstrate significant renewal capacity following several passages in culture. Furthermore, we demonstrated that MACS-sorted CD90+ cells could differentiated into osteoblasts, adipocytes, and chondrocytes in vitro. In addition, we show that these cells can generate cartilage tissue in micromass culture as well. This study demonstrates that MACS is a useful tool that can be used for the purification of hSF-MSCs from synovial fluid. The proliferation properties and ability to differentiate into chondrocytes make these hSF-MSCs a promising source of stem cells for applications in cartilage repair.
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