Shimakura Y, Kawada H, Ando K, Sato T, Nakamura Y, Tsuji T, Kato S, Hotta T
Department of Internal Medicine, Tokai University School of Medicine, Kanagawa, Japan.
Stem Cells. 2000;18(3):183-9. doi: 10.1634/stemcells.18-3-183.
Human bone marrow (BM) or mobilized peripheral blood (mPB) CD34(+) cells have been shown to loose their stem cell quality during culture period more easily than those from cord blood (CB). We previously reported that human umbilical CB stem cells could effectively be expanded in the presence of human recombinant cytokines and a newly established murine bone marrow stromal cell line HESS-5. In this study we assessed the efficacy of this xenogeneic coculture system using human BM and mPB CD34(+) cells as materials. We measured the generation of CD34(+)CD38(-) cells and colony-forming units, and assessed severe-combined immunodeficient mouse-repopulating cell (SRC) activity using cells five days after serum-free cytokine-containing culture in the presence or the absence of a direct contact with HESS-5 cells. As compared with the stroma-free culture, the xenogeneic coculture was significantly superior on expansion of CD34(+)CD38(-) cells and colony-forming cells and on maintenance of SRC activity. The PKH26 study demonstrated that cell division was promoted faster in cells cocultured with HESS-5 cells than in cells cultured without HESS-5 cells. These results indicate that HESS-5 supports rapid generation of primitive progenitor cells (PPC) and maintains reconstituting ability of newly generated stem cells during ex vivo culture irrespective of the source of samples. This xenogeneic coculture system will be useful for ex vivo manipulation such as gene transduction to promote cell division and the generation of PPC and to prevent loss of stem cell quality.
与脐带血(CB)来源的细胞相比,人骨髓(BM)或动员的外周血(mPB)中的CD34(+)细胞在培养期间更容易丧失其干细胞特性。我们先前报道过人脐CB干细胞在人重组细胞因子和新建立的小鼠骨髓基质细胞系HESS-5存在的情况下能够有效地扩增。在本研究中,我们使用人BM和mPB CD34(+)细胞作为材料评估了这种异种共培养系统的功效。我们测量了CD34(+)CD38(-)细胞的生成和集落形成单位,并在有无与HESS-5细胞直接接触的情况下,使用含细胞因子无血清培养五天后的细胞评估了重症联合免疫缺陷小鼠再植细胞(SRC)活性。与无基质培养相比,异种共培养在CD34(+)CD38(-)细胞和集落形成细胞的扩增以及SRC活性的维持方面显著更优。PKH26研究表明,与未与HESS-5细胞共培养的细胞相比,与HESS-5细胞共培养的细胞分裂促进得更快。这些结果表明,HESS-5支持原始祖细胞(PPC)的快速生成,并在体外培养期间维持新生成干细胞的重建能力,而与样本来源无关。这种异种共培养系统将有助于体外操作,如基因转导以促进细胞分裂和PPC的生成,并防止干细胞特性的丧失。