首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Oncostatin m regulates mesenchymal cell differentiation and enhances hematopoietic supportive activity of bone marrow stromal cell lines.
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Oncostatin m regulates mesenchymal cell differentiation and enhances hematopoietic supportive activity of bone marrow stromal cell lines.

机译:抑瘤素m调节间充质细胞分化并增强骨髓基质细胞系的造血支持活性。

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Bone marrow stromal cell lines (TBR cell lines) established from temperature-sensitive Simian Virus 40 T-antigen gene transgenic mice exhibited myogenic, osteogenic, and adipogenic differentiation. The effect of oncostatin M (OSM) on such mesenchymal cell differentiation of marrow stromal cell lines was examined. One of those stromal cell lines, TBRB, differentiated into skeletal muscle, and its differentiation was stimulated by OSM, whereas differentiation of TBR10-1 into smooth muscle was inhibited by OSM. TBR31-2 is a bipotent progenitor for adipocytes and osteoblasts, and OSM stimulated osteogenic differentiation while inhibiting adipogenic differentiation. On the other hand, TBR cell lines exhibited various potentials for supporting hematopoiesis in culture. When hematopoietic progenitor cells were cocultured with OSM-stimulated stromal cell lines, TBR10-1 and TBR31-2 exhibited enhanced hematopoietic supportive activity. As responsible molecules for stromal cell dependent hematopoiesis, expression of stem cell factor (SCF) (a ligand of c-Kit), vascular cell adhesion molecule (VCAM-1) (a ligand of VLA-4), and secretion of interleukin (IL)-6 were increased by OSM. OSM affected mesenchymal cell differentiation and promoted the hematopoietic supportive activity of marrow stromal cell lines. As OSM production is induced by cytokines from hematopoietic cells, OSM may be a key factor in mutual regulation between hematopoietic cells and stromal cells in the bone marrow. OSM may play a role as a regulator in maintaining the hematopoietic microenvironment in marrow by coordinating mesenchymal differentiation.
机译:从温度敏感的猿猴病毒40 T-抗原基因转基因小鼠建立的骨髓基质细胞系(TBR细胞系)表现出成肌,成骨和成脂分化。检查了抑癌素M(OSM)对这种骨髓基质细胞系间充质细胞分化的影响。这些基质细胞系之一TBRB分化为骨骼肌,而OSM刺激其分化,而OSM抑制TBR10-1向平滑肌的分化。 TBR31-2是脂肪细胞和成骨细胞的双能祖细胞,OSM刺激成骨细胞分化,同时抑制成脂细胞分化。另一方面,TBR细胞系在培养中表现出各种支持造血的潜能。当造血祖细胞与OSM刺激的基质细胞系共培养时,TBR10-1和TBR31-2表现出增强的造血支持活性。干细胞因子(SCF)(c-Kit的配体),血管细胞粘附分子(VCAM-1)(VLA-4的配体)和白介素(IL)的分泌是基质细胞依赖性造血的负责分子OSM增加了)-6。 OSM影响间充质细胞分化并促进骨髓基质细胞系的造血支持活性。由于OSM的产生是由造血细胞的细胞因子诱导的,因此OSM可能是骨髓中造血细胞与基质细胞之间相互调节的关键因素。 OSM可能通过协调间充质分化而在维持骨髓造血微环境中起调节作用。

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