Banu N, Deng B, Lyman S D, Avraham H
Division of Experimental Medicine, Beth Israel Deaconess Medical Center, Boston, MA 02115, USA.
Cytokine. 1999 Sep;11(9):679-88. doi: 10.1006/cyto.1998.0477.
The Flt-3 receptor is expressed in primitive haematopoietic cells and its ligand exerts proliferative effects on these cells in vitro in synergy with other cytokines. To increase our knowledge of the functional properties of the human Flt-3 ligand (FL) as relating to in vitro expansion of haematopoietic stem cells, the effects on murine haematopoiesis of FL alone or in combination with other growth factors were studied. Analysis of Flk-2/Flt-3 mRNA expression indicated that Flk-2/Flt-3 was preferentially expressed in primitive haematopoietic cell populations. To examine the expression of the Flk-2/Flt-3 receptor on megakaryocyte progenitors (CFU-Meg), Flk-2/Flt-3 positive and negative CD34(+)populations were separated from human bone marrow and cultured in a plasma clot culture system. CFU-Meg colonies were found in the Flk-2/Flt-3 negative fraction. Myeloid (CFU-GM) derived colonies appeared in the presence of FL alone. Neither FL+IL-3 nor FL+IL-3+IL-6 had any effect on the generation of megakaryocyte colonies (CFU-MK), due to the lack of FL receptor expression on megakaryocyte progenitors. Bone marrow cells remaining after 5-fluorouracil (5-FU) treatment of mice represent a very primitive population of progenitors enriched for reconstituting stem cells. This cell population expressed FL receptors, as revealed by RT-PCR analysis. Addition of FL alone did not enhance the replication of such cells in liquid cultures as compared to controls. However, a significantly greater generation of myeloid progenitors (CFU-GM) in clonogenic assays was observed in the presence of FL+IL-3, FL+GM-CSF or FL+CSF-1. In addition, the effects of FL on in vitro expansion of murine haematopoietic stem cells were studied using lineage-negative (lin(-)) Sca-1 positive (Sca-1(+)) c-kit positive (c-kit(+)) marrow cells from 5-FU treated mice. FL enhanced the survival of primitive murine lin(-)Sca-1(+)c-kit(+)cells. FL and IL-6 were able to significantly expand murine progenitor stem cells in vitro and promote their survival. These studies strongly suggest that FL significantly and selectively enhanced the generation of myeloid progenitors in vitro and increased myeloid progenitor responsiveness to later acting growth factors. In addition, FL synergized with IL-6 to support in vitro expansion of haematopoietic progenitors and promoted the survival of lin(-)Sca-1(+)c-kit(+)cells.
Flt-3受体在原始造血细胞中表达,其配体在体外与其他细胞因子协同作用,对这些细胞发挥增殖作用。为了增进我们对人类Flt-3配体(FL)与造血干细胞体外扩增相关功能特性的了解,研究了FL单独或与其他生长因子联合对小鼠造血的影响。对Flk-2/Flt-3 mRNA表达的分析表明,Flk-2/Flt-3在原始造血细胞群体中优先表达。为了检测巨核细胞祖细胞(CFU-Meg)上Flk-2/Flt-3受体的表达,从人骨髓中分离出Flk-2/Flt-3阳性和阴性的CD34(+)群体,并在血浆凝块培养系统中培养。在Flk-2/Flt-3阴性部分发现了CFU-Meg集落。单独存在FL时出现了髓系(CFU-GM)来源的集落。由于巨核细胞祖细胞上缺乏FL受体表达,FL+IL-3和FL+IL-3+IL-6对巨核细胞集落(CFU-MK)的生成均无影响。经5-氟尿嘧啶(5-FU)处理的小鼠骨髓细胞代表了一个非常原始的祖细胞群体,富含用于重建的干细胞。RT-PCR分析显示,该细胞群体表达FL受体。与对照组相比,单独添加FL并未增强此类细胞在液体培养中的增殖。然而,在存在FL+IL-3、FL+GM-CSF或FL+CSF-1的情况下,克隆形成试验中观察到髓系祖细胞(CFU-GM)的生成显著增加。此外,使用来自5-FU处理小鼠的谱系阴性(lin(-))Sca-1阳性(Sca-1(+))c-kit阳性(c-kit(+))骨髓细胞研究了FL对小鼠造血干细胞体外扩增的影响。FL提高了原始小鼠lin(-)Sca-1(+)c-kit(+)细胞的存活率。FL和IL-6能够在体外显著扩增小鼠祖干细胞并促进其存活。这些研究强烈表明,FL在体外显著且选择性地增强了髓系祖细胞的生成,并增加了髓系祖细胞对后期作用生长因子的反应性。此外,FL与IL-6协同支持造血祖细胞的体外扩增,并促进lin(-)Sca-1(+)c-kit(+)细胞的存活。