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髓系白血病细胞正常分化的体内诱导

In vivo induction of normal differentiation in myeloid leukemia cells.

作者信息

Lotem J, Sachs L

出版信息

Proc Natl Acad Sci U S A. 1978 Aug;75(8):3781-5. doi: 10.1073/pnas.75.8.3781.

Abstract

MGI(+)D(+), MGI(+)D(-), and MGI(-)D(-) mouse myeloid leukemic cells, which genetically differ in their competence to be induced to undergo normal cell differentiation in vitro by the normal macrophage- and granulocyte-inducing protein MGI, were analyzed for their ability to undergo cell differentiation in diffusion chambers in vivo. As after induction by MGI in vitro, MGI(+)D(+) clones were induced for Fc and C3 rosettes, lysozyme, and mature macrophages and granulocytes in normal syngeneic or allogeneic mice. MGI(+)D(-) clones were also induced in these mice for all these properties, although in vitro they were not induced by MGI for mature cells. The MGI(-)D(-) clones were induced in vivo for C3 and Fc rosettes, lysozyme, and intermediate stages but not for mature cells, whereas none of these properties were induced in these clones by MGI in vitro. Thus, certain types of myeloid leukemic cells differentiate better in vivo, possibly due to the presence of higher effective concentrations of MGI and/or other inducing factors, and MGI(+)D(+) and MGI(+)D(-) cells can completely differentiate in vivo to mature cells. In vivo differentiation was inhibited in mice treated with cyclophosphamide. It was also inhibited in various strains of nude mice, except for one MGI(+)D(+) clone, where it was inhibited in C57BL/6 but not in ICR nude mice. This MGI(+)D(+) clone was also the only clone that was induced to differentiate normally in vitro by a 23,000 molecular weight form of purified MGI. The results suggest that different clones respond to different molecular forms of MGI, which may be present in different proportions in some animals, that in vivo differentiation by MGI possibly with other factors may be regulated by cells involved in the immune response, and that this differentiation can be genetically controlled. Differentiation in vivo was enhanced by injection of conditioned medium containing MGI and by inoculation of MGI-producing cells, including normal granulocytes. This indicates that the induction of normal differentiation of myeloid leukemic cells in vivo can be enhanced by these treatments.

摘要

MGI(+)D(+)、MGI(+)D(-)和MGI(-)D(-)小鼠髓系白血病细胞在体外被正常巨噬细胞和粒细胞诱导蛋白MGI诱导进行正常细胞分化的能力在基因上存在差异,对它们在体内扩散小室中进行细胞分化的能力进行了分析。如同在体外被MGI诱导后一样,MGI(+)D(+)克隆在正常同基因或异基因小鼠中被诱导产生Fc和C3玫瑰花结、溶菌酶以及成熟的巨噬细胞和粒细胞。MGI(+)D(-)克隆在这些小鼠中也被诱导产生所有这些特性,尽管在体外它们未被MGI诱导产生成熟细胞。MGI(-)D(-)克隆在体内被诱导产生C3和Fc玫瑰花结、溶菌酶以及中间阶段,但未被诱导产生成熟细胞,而在体外这些克隆未被MGI诱导产生这些特性中的任何一种。因此,某些类型的髓系白血病细胞在体内分化得更好,可能是由于存在更高有效浓度的MGI和/或其他诱导因子,并且MGI(+)D(+)和MGI(+)D(-)细胞在体内可以完全分化为成熟细胞。用环磷酰胺处理的小鼠体内分化受到抑制。在各种裸鼠品系中也受到抑制,除了一个MGI(+)D(+)克隆,在C57BL/6裸鼠中它受到抑制,但在ICR裸鼠中未受抑制。这个MGI(+)D(+)克隆也是唯一能被23,000分子量形式的纯化MGI在体外诱导正常分化的克隆。结果表明不同克隆对MGI的不同分子形式有反应,在某些动物中这些分子形式可能以不同比例存在,MGI可能与其他因子一起在体内的分化可能受参与免疫反应的细胞调控,并且这种分化可以受到基因控制。通过注射含有MGI的条件培养基以及接种产生MGI的细胞(包括正常粒细胞),体内分化得到增强。这表明这些处理可以增强髓系白血病细胞在体内正常分化的诱导。

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