Khosla Sundeep, Eghbali-Fatourechi Guiti Z
Endocrine Research Unit, Mayo Clinic, 200 First Street SW, 5-194 Joseph, Rochester, MN 55905, USA.
Ann N Y Acad Sci. 2006 Apr;1068:489-97. doi: 10.1196/annals.1346.022.
While osteoclast lineage cells are clearly present in the peripheral circulation, whether there is a comparable pool of circulating osteoblast lineage cells has remained controversial. Using assays requiring adherence to plastic (as originally described by Friedenstein and colleagues for bone marrow stromal cells over four decades ago), several studies have shown that plastic adherent cells with osteogenic potential are, indeed, present in the circulation of a number of species, but at extremely low concentrations. Work from a number of independent groups over the past decade has also identified a population of nonadherent bone marrow cells with osteogenic potential. Since these nonadherent cells may be much more likely to access the peripheral circulation than plastic adherent cells, we tested for the presence of circulating osteoblast lineage cells in humans using flow cytometry to identify cells in the peripheral blood expressing bone-related proteins. Our findings indicate that these cells are present in the circulation in significant numbers, are markedly increased in the peripheral blood of adolescent boys going through the growth spurt, and may also increase following fractures. These circulating osteogenic cells express bone-related proteins, can mineralize in vitro, and form bone in vivo. The identification of these osteogenic cells in peripheral blood opens up new questions regarding the possible role of these cells in bone remodeling, in fracture repair, and possibly in vascular calcification.
虽然破骨细胞系细胞明显存在于外周循环中,但循环中的成骨细胞系细胞是否存在类似的细胞群仍存在争议。使用需要贴壁于塑料培养皿的检测方法(正如弗里德斯坦及其同事在四十多年前最初描述骨髓基质细胞时那样),多项研究表明,具有成骨潜能的贴壁于塑料培养皿的细胞确实存在于许多物种的循环中,但浓度极低。在过去十年中,多个独立研究小组的工作还鉴定出了一群具有成骨潜能的非贴壁骨髓细胞。由于这些非贴壁细胞可能比贴壁于塑料培养皿的细胞更有可能进入外周循环,我们使用流式细胞术检测人类外周血中表达骨相关蛋白的细胞,以测试循环中成骨细胞系细胞的存在情况。我们的研究结果表明,这些细胞大量存在于循环中,在经历生长突增的青春期男孩的外周血中显著增加,并且在骨折后也可能增加。这些循环中的成骨细胞表达骨相关蛋白,可在体外矿化,并在体内形成骨组织。在外周血中鉴定出这些成骨细胞,引发了关于这些细胞在骨重塑、骨折修复以及可能在血管钙化中可能发挥的作用的新问题。