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鼠间质干细胞在体内外均可支持人造血:神经细胞黏附分子的关键作用。

Mouse mesenchymal stem cells can support human hematopoiesis both in vitro and in vivo: the crucial role of neural cell adhesion molecule.

机构信息

1st Dept of Pathology, Kansai Medical University, Moriguchi City, Osaka 570-8506, Japan.

出版信息

Haematologica. 2010 Jun;95(6):884-91. doi: 10.3324/haematol.2009.013151. Epub 2009 Dec 16.

Abstract

BACKGROUND

We previously established a mesenchymal stem cell line (FMS/PA6-P) from the bone marrow adherent cells of fetal mice. The cell line expresses a higher level of neural cell adhesion molecule and shows greater hematopoiesis-supporting capacity in mice than other murine stromal cell lines.

DESIGN AND METHODS

Since there is 94% homology between human and murine neural cell adhesion molecule, we examined whether FMS/PA6-P cells support human hematopoiesis and whether neural cell adhesion molecules expressed on FMS/PA6-P cells contribute greatly to the human hematopoiesis-supporting ability of the cell line.

RESULTS

When lineage-negative cord blood mononuclear cells were co-cultured on the FMS/PA6-P cells, a significantly greater hematopoietic stem cell-enriched population (CD34(+)CD38(-) cells) was obtained than in the culture without the FMS/PA6-P cells. Moreover, when lineage-negative cord blood mononuclear cells were cultured on FMS/PA6-P cells and transplanted into SCID mice, a significantly larger proportion of human CD45(+) cells and CD34(+)CD38(-) cells were detected in the bone marrow of SCID mice than in the bone marrow of SCID mice that had received lineage-negative cord blood mononuclear cells cultured without FMS/PA6-P cells. Furthermore, we found that direct cell-to-cell contact between the lineage-negative cord blood mononuclear cells and the FMS/PA6-P cells was essential for the maximum expansion of the mononuclear cells. The addition of anti-mouse neural cell adhesion molecule antibody to the culture significantly inhibited their contact and the proliferation of lineage-negative cord blood mononuclear cells.

CONCLUSIONS

These findings suggest that neural cell adhesion molecules expressed on FMS/PA6-P cells play a crucial role in the human hematopoiesis-supporting ability of the cell line.

摘要

背景

我们之前从胎鼠骨髓贴壁细胞中建立了间充质干细胞系(FMS/PA6-P)。该细胞系表达更高水平的神经细胞黏附分子,在支持造血方面比其他鼠基质细胞系更强。

设计与方法

由于人类和鼠类神经细胞黏附分子之间有 94%的同源性,我们检测了 FMS/PA6-P 细胞是否支持人类造血,以及 FMS/PA6-P 细胞表面表达的神经细胞黏附分子是否对该细胞系的支持人类造血能力有重要贡献。

结果

当谱系阴性脐带血单个核细胞与 FMS/PA6-P 细胞共培养时,获得的富含造血干细胞的群体(CD34+CD38-细胞)显著多于无 FMS/PA6-P 细胞的培养。此外,当谱系阴性脐带血单个核细胞在 FMS/PA6-P 细胞上培养并移植到 SCID 小鼠中时,与未用 FMS/PA6-P 细胞培养的谱系阴性脐带血单个核细胞移植的 SCID 小鼠相比,SCID 小鼠骨髓中检测到的人 CD45+细胞和 CD34+CD38-细胞比例显著更高。此外,我们发现谱系阴性脐带血单个核细胞与 FMS/PA6-P 细胞之间的直接细胞间接触对于单核细胞的最大扩增是必不可少的。向培养物中添加抗鼠神经细胞黏附分子抗体可显著抑制其接触和谱系阴性脐带血单个核细胞的增殖。

结论

这些发现表明 FMS/PA6-P 细胞表面表达的神经细胞黏附分子在该细胞系支持人类造血的能力中发挥关键作用。

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本文引用的文献

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Stem Cells. 2006 Mar;24(3):482-93. doi: 10.1634/stemcells.2005-0219. Epub 2005 Sep 22.
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Neural cell adhesion molecule contributes to hemopoiesis-supporting capacity of stromal cell lines.
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