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碱性和酸性成纤维细胞生长因子(bFGF和aFGF)对急性髓性白血病中白血病原始祖细胞生长的影响。

The effect of basic and acidic fibroblast growth factors (bFGF and aFGF) on the growth of leukemic blast progenitors in acute myelogenous leukemia.

作者信息

Nara N, Kurokawa H, Tohda S, Tomiyama J, Nagata K, Tanikawa S

机构信息

Department of Laboratory Medicine, Faculty of Medicine, Tokyo Medical and Dental University, Japan.

出版信息

Exp Hematol. 1995 Aug;23(9):1030-4.

PMID:7543415
Abstract

The effect of basic and acidic fibroblast growth factors on leukemic blast progenitors was studied in 14 patients with acute myelogenous leukemia and in one patient with chronic myelocytic leukemia in myeloid crisis. bFGF and aFGF stimulated blast-colony formation by leukemic blast progenitors cultured in methylcellulose in two patients. In the other 13 patients, no significant effect of either FGF on blast-colony formation was noted. The combination of bFGF or a FGF and G-CSF, GM-CSF, interleukin-3, or stem cell factor (SCF) had a synergistic effect on blast-colony formation in three patients. In the other patients, however, synergism between FGF and CSF was not detected. In fact, bFGF was found to suppress the stimulation of blast-colony formation due to GM-CSF in one of 10 patients and that due to SCF in four of eight patients. aFGF suppressed the stimulation of blast-colony formation due to GM-CSF in two of 11 patients and that due to SCF in four of eight patients. The results show that bFGF and aFGF do not directly play a major role in leukemic hematopoiesis but that they may modulate the cytokine network affecting leukemic cell growth.

摘要

在14例急性髓性白血病患者和1例处于髓系危象的慢性粒细胞白血病患者中,研究了碱性成纤维细胞生长因子(bFGF)和酸性成纤维细胞生长因子(aFGF)对白血病原始祖细胞的作用。在两名患者中,bFGF和aFGF刺激了在甲基纤维素中培养的白血病原始祖细胞的集落形成。在其他13例患者中,未观察到任何一种FGF对集落形成有显著影响。bFGF或aFGF与粒细胞集落刺激因子(G-CSF)、粒细胞-巨噬细胞集落刺激因子(GM-CSF)、白细胞介素-3或干细胞因子(SCF)联合使用,对三名患者的集落形成有协同作用。然而,在其他患者中,未检测到FGF与集落刺激因子之间的协同作用。事实上,在10例患者中的1例中,发现bFGF抑制了GM-CSF对集落形成的刺激作用,在8例患者中的4例中,抑制了SCF对集落形成的刺激作用。在11例患者中的2例中,aFGF抑制了GM-CSF对集落形成的刺激作用,在8例患者中的4例中,抑制了SCF对集落形成的刺激作用。结果表明,bFGF和aFGF在白血病造血过程中并不直接起主要作用,但它们可能调节影响白血病细胞生长的细胞因子网络。

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