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粒细胞集落刺激因子和干细胞因子是由小鼠基质细胞系支持的人类原始造血细胞长期培养中的关键因子。

Granulocyte-colony stimulating factor and stem cell factor are the crucial factors in long-term culture of human primitive hematopoietic cells supported by a murine stromal cell line.

作者信息

Nishi N, Ishikawa R, Inoue H, Nishikawa M, Kakeda M, Yoneya T, Tsumura H, Ohashi H, Yamaguchi Y, Motoki K, Sudo T, Mori K J

机构信息

Pharmaceutical Research Laboratory of Kirin Brewery Co., Ltd., Gunma, Japan.

出版信息

Exp Hematol. 1996 Sep;24(11):1312-21.

PMID:8862442
Abstract

The findings that murine marrow stromal cell line MS-5 supported the proliferation of human lineage-negative (Lin-) CD34+CD38- bone marrow cells in long-term culture have been reported. In this study, we analyzed this proliferating activity of MS-5-conditioned medium (CM) on human primitive hematopoietic cells. When Lin-CD34+CD38- cells of normal human cord blood cells were co-cultured with MS-5, colony forming cells (CFCs) were maintained over 7 weeks in vitro. Prevention of contact between MS-5 and Lin-CD34+CD38- cells by using membrane filter (0.45 micron) was negligible for this activity. This indicated that the activity of MS-5 on human primitive hematopoietic cells is a soluble factor(s) secreted from MS-5, which is not induced by the contact between MS-5 and Lin-CD34+CD38- cells. We tried to purify this soluble activity. An active material with a molecular weight of about 150 kDa, determined by gel filtration chromatography, solely supported the growth of Lin-CD34+CD38- cells and Mo7e, a human megakaryocytic cell line. This activity not only reacted with anti-mouse stem cell factor (mSCF) antibody on Western blots, but it was also neutralized in the presence of anti-mSCF antibody. Another active material with a molecular weight of about 20-30 kDa synergized with mSCF to stimulate the growth of Lin-CD34+CD38- cells but failed to do so alone, although this synergy was inhibited in the presence of soluble mouse granulocyte-colony stimulating factor (mG-CSF) receptor, which is a chimeric protein consisting of the extracellular domain of mG-CSF receptor and the Fe region of human IgG1. In addition, the latter molecule supported the growth of the G-CSF dependent cell line FD/GR3, which is a murine myeloid leukemia cell line, FDC-P2, transfected with mG-CSF receptor cDNA. Adding of anti-mSCF antibody and soluble mG-CSF receptor to the culture completely abrogated the activity of MS-5-CM. Recombinant (r) mSCF and rmG-CSF had synergistic activity on the growth of Lin-CD34+CD38- cells. These results indicated that the activity on Lin-CD34+CD38- cells included in MS-5-CM is based upon the synergistic effects of mSCF and mG-CSF.

摘要

有报道称,鼠骨髓基质细胞系MS-5在长期培养中可支持人谱系阴性(Lin-)CD34+CD38-骨髓细胞的增殖。在本研究中,我们分析了MS-5条件培养基(CM)对人原始造血细胞的这种增殖活性。当正常人脐血细胞的Lin-CD34+CD38-细胞与MS-5共培养时,集落形成细胞(CFC)可在体外维持7周以上。使用膜滤器(0.45微米)阻止MS-5与Lin-CD34+CD38-细胞接触,对该活性的影响可忽略不计。这表明MS-5对人原始造血细胞的活性是由MS-5分泌的一种可溶性因子,而不是由MS-5与Lin-CD34+CD38-细胞之间的接触诱导产生的。我们试图纯化这种可溶性活性物质。通过凝胶过滤色谱法测定,一种分子量约为150 kDa的活性物质单独支持Lin-CD34+CD38-细胞和人巨核细胞系Mo7e的生长。这种活性不仅在蛋白质免疫印迹上与抗小鼠干细胞因子(mSCF)抗体发生反应,而且在抗mSCF抗体存在的情况下被中和。另一种分子量约为20-30 kDa的活性物质与mSCF协同刺激Lin-CD34+CD38-细胞的生长,但单独作用时则无效,尽管这种协同作用在可溶性小鼠粒细胞集落刺激因子(mG-CSF)受体存在时受到抑制,该受体是一种嵌合蛋白,由mG-CSF受体的细胞外结构域和人IgG1的Fc区域组成。此外,后一种分子支持G-CSF依赖性细胞系FD/GR3的生长,该细胞系是转染了mG-CSF受体cDNA的鼠髓样白血病细胞系FDC-P2。向培养物中添加抗mSCF抗体和可溶性mG-CSF受体可完全消除MS-5-CM的活性。重组(r)mSCF和rmG-CSF对Lin-CD34+CD38-细胞的生长具有协同活性。这些结果表明,MS-5-CM中所含的对Lin-CD34+CD38-细胞的活性是基于mSCF和mG-CSF的协同作用。

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