[ISOLATION, CULTURE AND IDENTIFICATION OF CARTILAGE DERIVED STEM CELLS FROM THREE SUBTYPES OF CARTILAGES].

软骨 软骨发生 生物 软骨细胞 间充质干细胞 干细胞 化学 病理 移植 解剖 细胞 细胞生物学 II型胶原 细胞培养 阿格里坎 内斯汀 分离(微生物学)
作者
Ke Xue,Xiaodie Zhang,Kai Liu
出处
期刊:Chinese Journal of Reparative and Reconstructive Surgery 卷期号:29 (4): 483-489
标识
摘要

Objective To isolate and culture cartilage derived stem cells from different subtypes of cartilages, and to identify their characteristics. Methods Cartilage derived stem cells were isolated from different subtypes of cartilages (auricle cartilage, articular cartilage, and intervertebral cartilage) by using adhesive method of fibronectin. The expressions of positive surface markers (CD29 and CD90) and negative surface markers (CD34 and CD45) in cartilage derived stem cells were detected via flow cytometry. The single cell colony-forming efficiency of cartilage derived stem cells was determined by clonal formation unit test; the multipotent differentiation capacity was identified by chondrogensis, osteogenesis, and adipogenesis induction. RT-PCR was used to test the expression of osteogenic, chondrogenic, and adipogenic genes; and bone marrow mesenchymal stem cells (BMSCs) served as control. Results Three cell populations were successfully isolated from different subtypes of cartilages, which could express CD29 and CD 90 highly, but did not express CD34 and CD45. After 2 weeks of culture, single cartilage derived stem cell could form single cell colony. In addition, cartilage derived stem cells had high chondrogenesis, osteogenesis, and adipogenesis potentials. After osteogenic induction, the expressions of collagen type I and collagen type X in articular and intervertebral cartilage stem cells were significantly higher than those in BMSCs (P 0.05). The expressions of Aggrecan and collagen type II in cartilage derived stem cells after chondrogenic induction were significantly higher than those in BMSCs (P 0.05). Conclusion Cartilage derived stem cells in different subtypes of cartilages possess typical characteristics of stem cells.

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