Benayahu D, Horowitz M, Zipori D, Wientroub S
Department of Histology and Cell Biology, Sackler Faculty of Medicine, Tel-Aviv University, Ramat-Aviv, Israel.
Calcif Tissue Int. 1992 Sep;51(3):195-201. doi: 10.1007/BF00334547.
Osteoblasts, members of the marrow stromal cellular network, may play an active role in the hemopoietic microenvironment as well as in bone remodeling. In this study, we examined the extent to which marrow-derived osteogenic cells (MBA-15) possess various stromal functions. This marrow stromal-derived cell line was shown by us to exhibit osteoblastic characteristics in culture and to form bone in vivo. These cells are shown here to constitutively produce and secrete cytokines identified as M-CSF, GM-CSF, and IL-6. MBA-15 cells modulate growth of normal and malignant myeloid and lymphoid cells as well as leukemia cell lines in vitro. Cell-cell interactions were studied in co-cultures with adherent MBA-15 cells and the target hemopoietic cells. Growth inhibition effects, observed under various experimental conditions, can be attributed to the presence of different soluble and membrane-bound inhibitory activities produced by MBA-15 cells. Thus, MBA-15 cells spontaneously produce both stimulators and inhibitors that can affect myeloid and lymphoid cell growth. Marrow osteogenic cells may therefore participate in the stromal regulation of hemopoiesis.
成骨细胞是骨髓基质细胞网络的成员,可能在造血微环境以及骨重塑中发挥积极作用。在本研究中,我们检测了骨髓来源的成骨细胞(MBA-15)具有各种基质功能的程度。我们发现这种骨髓基质来源的细胞系在培养中表现出成骨细胞特征,并在体内形成骨。此处显示这些细胞组成性地产生和分泌鉴定为M-CSF、GM-CSF和IL-6的细胞因子。MBA-15细胞在体外调节正常和恶性髓系及淋巴系细胞以及白血病细胞系的生长。在与贴壁的MBA-15细胞和靶造血细胞的共培养中研究了细胞间相互作用。在各种实验条件下观察到的生长抑制作用可归因于MBA-15细胞产生的不同可溶性和膜结合抑制活性的存在。因此,MBA-15细胞自发产生可影响髓系和淋巴系细胞生长的刺激物和抑制剂。骨髓成骨细胞因此可能参与造血的基质调节。