Cai Yiting, Liu Tianshu, Fang Fang, Xiong Chengliang, Shen Shiliang
Family Planning Research Institute, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.
Department of Thoracic Surgery, Renmin Hospital of Wuhan University, Wuhan 430060, China.
Stem Cells Int. 2015;2015:708906. doi: 10.1155/2015/708906. Epub 2015 Mar 3.
The purification of mouse bone marrow mesenchymal stem cells (BMSCs) by using the standard method of whole bone marrow adherence to plastic still remains ineffective. An increasing number of studies have indicated compact bone as an alternative source of BMSCs. We isolated BMSCs from cultured compact bone fragments and investigated the proliferative capacity, surface immunophenotypes, and osteogenic and adipogenic differentiations of the cells after the first trypsinization. The fragment culture was based on the fact that BMSCs were assembled in compact bones. Thus, the procedure included flushing bone marrow out of bone cavity and culturing the fragments without any collagenase digestion. The cell yield from cultured fragments was slightly less than that from cultured bone marrow using the same bone quantity. However, the trypsinized cells from cultured fragments exhibited significantly higher proliferation and were accompanied with more CD90 and CD44 expressions and less CD45 expression. The osteogenic and adipogenic differentiation capacity of cells from cultured fragments were better than those of cells from bone marrow. The directly adherent culture of compact bone is suitable for mouse BMSC isolation, and more BMSCs with potentially improved proliferation capacity can be obtained in the primary culture.
采用全骨髓贴壁于塑料培养板的标准方法纯化小鼠骨髓间充质干细胞(BMSCs)仍然效果不佳。越来越多的研究表明,密质骨可作为BMSCs的替代来源。我们从培养的密质骨碎片中分离出BMSCs,并研究了首次胰蛋白酶消化后细胞的增殖能力、表面免疫表型以及成骨和成脂分化情况。碎片培养基于BMSCs聚集在密质骨中的事实。因此,该过程包括从骨髓腔中冲洗出骨髓,并在不进行任何胶原酶消化的情况下培养碎片。使用相同数量的骨头,培养碎片获得的细胞产量略低于培养骨髓获得的细胞产量。然而,来自培养碎片的胰蛋白酶消化后的细胞表现出显著更高的增殖能力,并且伴随着更多的CD90和CD44表达以及更少的CD45表达。来自培养碎片的细胞的成骨和成脂分化能力优于来自骨髓的细胞。密质骨的直接贴壁培养适用于小鼠BMSC的分离,并且在原代培养中可以获得更多具有潜在增殖能力改善的BMSCs。