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外周血来源间充质干细胞接种脱钙松质骨支架的成软骨潜力。

Chondrogenic Potential of Peripheral Blood Derived Mesenchymal Stem Cells Seeded on Demineralized Cancellous Bone Scaffolds.

机构信息

Institute of Sports Medicine, Beijing Key Laboratory of Sports Injuries, Peking University Third Hospital, Beijing 100191, China.

Department of Joint Surgery, Zhongshan Hospital of Xiamen University, Xiamen, China.

出版信息

Sci Rep. 2016 Nov 8;6:36400. doi: 10.1038/srep36400.

Abstract

As a cell source with large quantity and easy access, peripheral blood mesenchymal stem cells (PBMSCs) were isolated and seeded in porcine demineralized cancellous bone (DCB) scaffolds, cultured in chondrogenic medium and evaluated for in vitro chondrogenesis. Bone marrow MSCs (BMMSCs) and articular cartilage chondrocytes (ACCs) underwent the same process as controls. The morphology, viability and proliferation of PBMSCs in DCB scaffolds were similar to those of BMMSCs and ACCs. PBMSCs and BMMSCs showed similar chondrogenesis potential with consistent production of COL 2 and SOX 9 protein and increased COL 2 and AGC mRNA expressions at week 3 but the COL 2 protein production was still less than that of ACCs. Minimal increase of hypertrophic markers was found in all groups. Relatively higher ALP and lower COL 10 mRNA expressions were found in both MSCs groups at week 3 than that in ACCs, whereas no significant difference of COL 1 and SOX 9 mRNA and MMP 13 protein was found among all groups. To conclude, PBMSCs shared similar proliferation and chondrogenic potential with BMMSCs in DCB scaffolds and could be an alternative to BMMSCs for cartilage tissue engineering. Further optimization of chondrogenesis system is needed regardless of the promising results.

摘要

作为一种具有大量和易于获取的细胞来源,外周血间充质干细胞(PBMSCs)被分离并接种到猪去矿化松质骨(DCB)支架中,在软骨形成培养基中培养,并评估其体外软骨形成能力。骨髓间充质干细胞(BMMSCs)和关节软骨细胞(ACCs)作为对照进行了相同的处理。PBMSCs 在 DCB 支架中的形态、活力和增殖与 BMMSCs 和 ACCs 相似。PBMSCs 和 BMMSCs 具有相似的软骨形成潜力,在第 3 周时均一致地产生 COL 2 和 SOX 9 蛋白,并增加 COL 2 和 AGC mRNA 的表达,但 COL 2 蛋白的产生仍低于 ACCs。所有组的肥大标志物均有少量增加。在第 3 周时,两组间充质干细胞的碱性磷酸酶(ALP)相对较高,COL 10 mRNA 表达较低,而 COL 1、SOX 9 mRNA 和基质金属蛋白酶 13(MMP 13)蛋白在所有组之间均无显著差异。总之,PBMSCs 在 DCB 支架中与 BMMSCs 具有相似的增殖和软骨形成潜力,可作为软骨组织工程中 BMMSCs 的替代物。无论结果如何,都需要进一步优化软骨形成系统。

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