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重组肥大细胞生长因子对纯化的小鼠造血干细胞的作用。

The effect of recombinant mast cell growth factor on purified murine hematopoietic stem cells.

作者信息

de Vries P, Brasel K A, Eisenman J R, Alpert A R, Williams D E

机构信息

Department of Experimental Hematology, Immunex Corporation, Seattle, Washington 98101.

出版信息

J Exp Med. 1991 May 1;173(5):1205-11. doi: 10.1084/jem.173.5.1205.

Abstract

Pluripotent hematopoietic stem cells (PHSC) are very rare cells whose functional capabilities can only be analyzed indirectly. For a better understanding and possible manipulation of mechanisms that regulate self-renewal and commitment to differentiation of PHSC, it is necessary to purify these cells and to develop assays for their growth in vitro. In the present study, a rapid and simple, widely applicable procedure to highly purify day 14 spleen colony-forming cells (day 14 CFU-S) is described. Low density bone marrow cells (rho less than or equal to 1.078 g/cm3) were enriched by two successive light-activated cell sorting procedures. In the first sort, cells within a predetermined light scatter (blast cell) window that are wheat germ agglutinin/Texas Red (WGA/TxR) positive and mAb 15-1.4.1/fluorescein isothiocyanate negative (granulocyte-monocyte marker) were selected. In the second sort, cells were selected on the basis of retention of the supravital dye rhodamine 123 (Rh123). Cells that take up little Rh123 (Rh123 dull cells) and those that take up more Rh123 (Rh123 bright cells) were 237-fold and 132-fold enriched, respectively, for day 14 CFU-S. Both Rh123 fractions were cultured for various time periods in vitro in the presence of mast cell growth factor (MGF), with or without interleukin 3 (IL-3) or IL-1 alpha. Both Rh123 fractions proliferated in response to MGF alone as determined by a [3H]TdR assay or by counting nucleated cells present in the cultures over time. MGF also acted synergistically with both IL-3 and IL-1 alpha to promote stem cell proliferation. Stimulation of both Rh123 fractions with MGF alone did not result in a net increase of day 14 CFU-S. Stimulation with MGF + IL-3 or MGF + IL-alpha resulted in a 4.4- or 2.6-fold increase of day 14 CFU-S in the Rh123 dull fraction, and an 11.6-fold or 2.6-fold increase of day 14 CFU-S in the Rh123 bright fraction, respectively. The data presented in this paper indicate that in vitro MGF acts on primitive hematopoietic stem cells by itself and also is a potent synergistic factor in combination with IL-3 or IL-1 alpha.

摘要

多能造血干细胞(PHSC)是非常罕见的细胞,其功能只能间接分析。为了更好地理解和可能操控调节PHSC自我更新和分化定向的机制,有必要纯化这些细胞并开发其体外生长的检测方法。在本研究中,描述了一种快速、简单且广泛适用的高度纯化第14天脾集落形成细胞(第14天CFU-S)的方法。低密度骨髓细胞(ρ≤1.078 g/cm³)通过两次连续的光激活细胞分选程序进行富集。在第一次分选中,选择在预定光散射(原始细胞)窗口内、麦胚凝集素/德克萨斯红(WGA/TxR)阳性且单克隆抗体15-1.4.1/异硫氰酸荧光素阴性(粒细胞-单核细胞标志物)的细胞。在第二次分选中,根据对超活染料罗丹明123(Rh123)的保留情况选择细胞。摄取少量Rh123的细胞(Rh123暗淡细胞)和摄取较多Rh123的细胞(Rh123明亮细胞)中第14天CFU-S分别富集了237倍和132倍。将两个Rh123组分在体外存在肥大细胞生长因子(MGF)的情况下培养不同时间段,添加或不添加白细胞介素3(IL-3)或白细胞介素1α(IL-1α)。通过[³H]TdR检测或随着时间推移对培养物中存在的有核细胞进行计数确定,两个Rh123组分均单独对MGF作出增殖反应。MGF还与IL-3和IL-1α协同作用以促进干细胞增殖。仅用MGF刺激两个Rh123组分不会导致第14天CFU-S的净增加。用MGF + IL-3或MGF + IL-α刺激导致Rh123暗淡组分中第14天CFU-S分别增加4.4倍或2.6倍,Rh123明亮组分中第14天CFU-S分别增加11.6倍或2.6倍。本文呈现的数据表明,体外MGF自身作用于原始造血干细胞,并且与IL-3或IL-1α联合时也是一种有效的协同因子。

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