ZRM Center for Regenerative Medicine, University of Tübingen, Tübingen, Germany.
Stem Cells Dev. 2011 Apr;20(4):635-46. doi: 10.1089/scd.2010.0308. Epub 2011 Jan 27.
Mesenchymal stromal cells (MSC) can be isolated from different tissues. They are capable of differentiating in vitro, for example, to osteoblasts, chondrocytes, or adipocytes. In contrast to CD34 for hematopoietic stem cells, a distinct MSC-defining antibody is not available. Further, for hematopoietic cells lineage-defining antigens such as CD3 or CD20 are known. In contrast, for MSC-derived cells lineage-associated cell surface markers are far from being established. We therefore investigated expression of cell surface antigens on human term placenta-derived MSC (pMSC) in more detail and correlated expression pattern to the osteogenic differentiation capacity of the MSC. We report that pMSC expressed the typical cell surface antigens at levels comparable to bone marrow-derived MSC (bmMSC), including CD73, CD90, and CD105, but did not express CD11b, CD34, and CD45. Further, CD164, TNAP, and the W5C5 antigens were detected on pMSC, whereas CD349 was not observed. Some pMSC expressed CD146 at low or moderate levels, and their osteogenic differentiation potential was weak. In contrast, bmMSC expressed CD146 at high levels, expression of alkaline phosphatase was significantly higher, and they presented a pronounced osteogenic differentiation potential. We conclude that MSC from different sources differ in their expression of distinct markers, and that this may correlate in part with their lineage determination. Thus, a higher percentage of bmMSC expressed CD146 at prominent levels and such cells may be better suited for bone repair. In contrast, many pMSC expressed CD146 at low or moderate levels. They, therefore, may be suitable for applications in which osteogenic differentiation is undesirable.
间充质基质细胞(MSC)可从不同组织中分离出来。它们能够在体外分化,例如分化为成骨细胞、软骨细胞或脂肪细胞。与造血干细胞的 CD34 不同,目前尚无明确的 MSC 定义抗体。此外,对于造血细胞谱系定义抗原,如 CD3 或 CD20,人们已经有所了解。相比之下,对于 MSC 衍生细胞谱系相关的细胞表面标记,目前还远未确定。因此,我们更详细地研究了人足月胎盘来源的 MSC(pMSC)表面抗原的表达,并将表达模式与 MSC 的成骨分化能力相关联。我们报告称,pMSC 表达典型的细胞表面抗原,其水平与骨髓来源的 MSC(bmMSC)相当,包括 CD73、CD90 和 CD105,但不表达 CD11b、CD34 和 CD45。此外,还在 pMSC 上检测到 CD164、TNAP 和 W5C5 抗原,但未观察到 CD349。一些 pMSC 低水平或中等水平表达 CD146,其成骨分化潜能较弱。相比之下,bmMSC 高水平表达 CD146,碱性磷酸酶的表达显著更高,且具有明显的成骨分化潜能。我们得出结论,不同来源的 MSC 在其特定标志物的表达上存在差异,这可能部分与其谱系决定有关。因此,bmMSC 中有更高比例的细胞以显著水平表达 CD146,这些细胞可能更适合用于骨修复。相比之下,许多 pMSC 以低水平或中等水平表达 CD146。因此,它们可能更适合于不希望发生成骨分化的应用。