首页> 外文期刊>Tissue engineering, Part A >Umbilical cord blood stem cells: induction of differentiation into mesenchymal lineages by cell-cell contacts with various mesenchymal cells.
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Umbilical cord blood stem cells: induction of differentiation into mesenchymal lineages by cell-cell contacts with various mesenchymal cells.

机译:脐带血干细胞:通过细胞与各种间充质细胞的接触诱导分化为间充质谱系。

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CD133(+) cells isolated from bone marrow, peripheral blood, or umbilical cord blood (UCB) represent an established source of transplantable hematopoietic progenitors. Further, there is increasing evidence that such CD133(+) cell isolates comprise subpopulations capable of differentiating into several mesenchymal lineages. In this study, we investigated conditions under which mesenchymal differentiation can be induced, particularly the role of cell-cell contacts with mesenchymal cells. A purified, nearly homogeneous CD133(+) population of human UCB cells was expanded by stimulation with platelet-derived growth factor and epidermal growth factor, labeled with the fluorescent marker DiI and cocultivated with rat osteoblasts, C2C12 myoblasts, or rat cardiomyocytes, respectively. In control experiments, the two cell types were separated by microporous membranes to avoid cell-cell contacts. Direct coculture of DiI-labeled UCB cells with the different mesenchymal cell populations resulted in both significant morphological changes and upregulation of lineage-specific markers. Expression of osteocalcin, myosin heavy chain, or alpha-actinin confirmed differentiation of the UCB cells into an osteoblastic, myoblastic, or cardiomyocytic phenotype, respectively. In contrast, coculture of UCB cells with the respective inducer cells under conditions preventing cell-cell contacts yielded minor, if any, evidence for such differentiation. Our data, thus, indicate that UCB cell expansion in vitro and subsequent direct cell-cell contacts with mesenchymal cells can induce their differentiation into mesenchymal lineages specific to the cell type they are in contact with. This finding has important implications for understanding the homing of adult stem cells and the promise of UCB as a cell source for tissue engineering and regenerative medicine.
机译:从骨髓,外周血或脐带血(UCB)中分离出的CD133(+)细胞代表了可移植造血祖细胞的确定来源。此外,越来越多的证据表明这种CD133(+)细胞分离物包含能够分化为几种间充质谱系的亚群。在这项研究中,我们调查了可诱导间充质分化的条件,特别是细胞与间充质细胞接触的作用。通过用血小板衍生的生长因子和表皮生长因子刺激,用荧光标记DiI标记并分别与大鼠成骨细胞,C2C12成肌细胞或大鼠心肌细胞共培养,扩增纯化的,几乎均质的人UCB细胞CD133(+)群体。在对照实验中,两种细胞类型通过微孔膜分开,以避免细胞与细胞的接触。 DiI标记的UCB细胞与不同的间充质细胞群体的直接共培养导致显着的形态变化和谱系特异性标记物的上调。骨钙素,肌球蛋白重链或α-肌动蛋白的表达证实了UCB细胞分别分化为成骨细胞,成肌细胞或心肌细胞表型。相反,在防止细胞与细胞接触的条件下,将UCB细胞与相应的诱导细胞共培养产生的分化证据很少(如果有的话)。因此,我们的数据表明,UCB细胞在体外扩增以及随后的细胞与间充质细胞的直接接触可以诱导其分化为特异于它们所接触细胞类型的间充质谱系。这一发现对于理解成体干细胞的归巢以及将UCB作为组织工程和再生医学的细胞来源的前景具有重要意义。

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