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具有巨核母细胞特征的人白血病细胞系对白细胞介素-3的选择性生长反应。

Selective growth response to IL-3 of a human leukaemic cell line with megakaryoblastic features.

作者信息

Avanzi G C, Lista P, Giovinazzo B, Miniero R, Saglio G, Benetton G, Coda R, Cattoretti G, Pegoraro L

机构信息

Istituto di Medicina Interna, Università de Torino, Italy.

出版信息

Br J Haematol. 1988 Jul;69(3):359-66. doi: 10.1111/j.1365-2141.1988.tb02374.x.

Abstract

A new human leukaemic cell line (M-O7) with the phenotypic characteristics of CFU-mega is described. Its cells are positive for T200 leucocyte common antigen (LCA) and negative with MAbs recognizing T and B cells and mature myelomonocytic antigens. In contrast, they react with MAbs recognizing antigenic determinants common to multi-lineage (CD13, CD33, CD34) and to bipotent erythromegakaryoblastic (CD36, H25) haemopoietic precursors, and with MAbs specific for platelet glycoproteins (CD41w, CD42w). A small proportion (10%) of the cells were large and multinucleated, and on electron-microscopy examination showed peripheral splitting of platelet-like cytoplasm particles. When transferred to a serum-free Iscove modified Dulbecco's medium supplemented with human insulin and transferrin, M-O7 cells stop proliferating. Of the haemopoietic growth factors tested for their ability to restore the proliferative activity of this quiescent population, only rH IL-3 proved effective. Moreover, it also increased the cloning efficiency in methylcellulose more than any other CSFs. The M-O7 cell line may provide a valuable tool for the biological assay of IL-3, and a model for biochemical studies of the megakaryocytic lineage.

摘要

本文描述了一种具有巨核细胞集落形成单位(CFU-mega)表型特征的新型人类白血病细胞系(M-O7)。其细胞对T200白细胞共同抗原(LCA)呈阳性,而对识别T细胞、B细胞和成熟骨髓单核细胞抗原的单克隆抗体呈阴性。相反,它们与识别多谱系(CD13、CD33、CD34)以及双能红系巨核系祖细胞(CD36、H25)共同抗原决定簇的单克隆抗体发生反应,并与血小板糖蛋白特异性单克隆抗体(CD41w、CD42w)发生反应。一小部分(10%)细胞体积较大且多核,电子显微镜检查显示其血小板样细胞质颗粒有周边分裂现象。当将M-O7细胞转移至添加人胰岛素和转铁蛋白的无血清Iscove改良杜氏培养基中时,细胞停止增殖。在所测试的造血生长因子中,只有重组人白细胞介素-3(rH IL-3)能够恢复该静止细胞群的增殖活性,此外,它还比其他任何集落刺激因子(CSF)更能提高甲基纤维素中的克隆效率。M-O7细胞系可能为白细胞介素-3的生物学检测提供有价值的工具,并为巨核细胞系的生化研究提供模型。

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