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Effects of plastic-adherent dermal multipotent cells on peripheral blood leukocytes and CFU-GM in rats.

机译:粘附塑料的真皮多能细胞对大鼠外周血白细胞和CFU-GM的影响。

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Multipotent cells were isolated from the dermis of newborn rats by their adherence to plastic culture dishes. Morphological observations showed that most of these elements were fibroblast-like cells described as cultured dermal multipotent cells (DMCs). These cells express CD90, CD44, CD59, intercellular adhesion molecule-1 (ICAM-1), and vascular cell adhesion molecule-1 (VCAM-1). They display the capacity to differentiate into cells with the phenotypic properties of osteocytes, adipocytes, chondrocytes, or neurons depending upon the specific inducing media. The confluent dermal multipotent cell layer supported and promoted the in vitro growth of colony-forming unit of granulocyte/macrophage progenitors (CFU-GM) as well as hematopoietic progenitor colonies. Transplantation of dermal multipotent cells into sublethally irradiated rats led to a significant increase of peripheral blood white cells nucleated cells, and CFU-GM colonies in the bone marrow. Fluorescence in situ hybridization analysis using a Y-chromosome-specific probe showed that dermal multipotent cells could engraft into bone marrow. However, they failed to differentiate into CD45-positive hematopoietic cells and to repopulate the hematopoietic system of lethally irradiated rats. These results suggest that plastic-adherent DMCs may at least represent an alternative source of mesenchymal stem cells to restore the marrow microenvironment and promote the survival, engraftment, and proliferation of hematopoietic cells.
机译:通过粘附到塑料培养皿上,从新生大鼠的真皮中分离出多能细胞。形态学观察表明,这些元素大多数是成纤维细胞样细胞,称为培养的真皮多能细胞(DMC)。这些细胞表达CD90,CD44,CD59,细胞间粘附分子1(ICAM-1)和血管细胞粘附分子1(VCAM-1)。它们显示出分化成具有骨细胞,脂肪细胞,软骨细胞或神经元表型特性的细胞的能力,具体取决于特定的诱导培养基。汇合的真皮多能细胞层支持并促进了粒细胞/巨噬细胞祖细胞(CFU-GM)和造血祖细胞集落形成单位的体外生长。真皮多能细胞移植到亚致死剂量辐照的大鼠中导致外周血白细胞有核细胞和骨髓中CFU-GM集落的显着增加。使用Y染色体特异性探针的荧光原位杂交分析表明,真皮多能细胞可以移植到骨髓中。但是,它们不能分化为CD45阳性的造血细胞,也无法重新植入致死性照射的大鼠的造血系统。这些结果表明,粘附塑料的DMC至少可以代表间充质干细胞的一种替代来源,以恢复骨髓的微环境并促进造血细胞的存活,植入和增殖。

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