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Identification and Initial Characterization of Small Cells in Adult Cartilage and Bone Marrow

成人軟骨及骨髓中微小細胞之初步檢測

並列摘要


Background and Purpose: Small cells in the range of less than 5 μm have been suspected to lie dormant and to be dispersed throughout the parenchyma of every tissue in the body. In bone marrow, small mesenchymal stem cells with rapidly renewing properties and differentiation potentials have been found. The aim of this study was to isolate and identify small cells from normal and osteoarthritic cartilages and compare their properties with those of small stem cells in bone marrow. Methods: Small cells were isolated from cartilages and bone marrow. Characterization of these small cells was performed by hematoxylin and eosin staining and bromodeoxyuridine labeling. Scanning electron and atomic force microscopy were used for ulatratructural investigation and analysis of the cells. Results: Small cells (≤5 μm) from both cartilages and bone marrow were shown to have mitotic activity on the basis of bromodeoxyuridine labeling, with the same replication time of 18 to 20 hours for population doubling. Ultrastructural and atomic force microscopy revealed these cells had spherical shape and were about 0.2 to 2.2 μm in diameter. Conclusions: This study demonstrated the presence of small cells in adult cartilage and bone marrow, which were about 0.2 to 2.2 μm in diameter and exhibited proliferation potential. These cells were able to be activated and differentiate into chondrocytes, and might have differentiation potential similar to small stem cells in bone marrow and thus play an important role in cartilage regeneration.

並列關鍵字

Bone marrow Cartilage Cell division Cell lineage Stem cells

被引用紀錄


Lin, C. Y. (2010). 利用幹細胞達成唾液腺再生 [doctoral dissertation, National Taiwan University]. Airiti Library. https://doi.org/10.6342/NTU.2010.01208
Chen, R. S. (2009). 不同生醫材料對牙胚細胞增生、礦化及分化的影響 [doctoral dissertation, National Taiwan University]. Airiti Library. https://doi.org/10.6342/NTU.2009.00872
Hsieh, C. H. (2007). 軟骨細胞的分化、細胞表面之超微結構與高磁場環境對軟骨復原的影響之研究 [doctoral dissertation, National Taiwan University]. Airiti Library. https://doi.org/10.6342/NTU.2007.00077

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