IL-4对造血祖细胞体外分化和增殖的直接影响。

Biotechnology therapeutics Pub Date : 1989-01-01
A R Migliaccio, G Migliaccio, Y Shimada, J W Adamson
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引用次数: 0

摘要

本研究旨在分析重组人白细胞介素4 (IL-4)对人粒细胞/巨噬细胞(GM)和红系祖细胞体外分化和增殖的影响。将IL-4添加到补充胎牛血清(FBS)或不加FBS的未分离人骨髓细胞或缺乏贴壁细胞和/或T细胞的骨髓细胞培养物中。在这些实验中发现了与小鼠系统相似的矛盾效应。在补充了fbs的培养中,IL-4对红细胞的生长或爆发细胞没有影响;与Epo和植物血凝素刺激的白细胞条件培养基(PHA-LCM)相比,单独存在Epo时检测到的BFU-E减少了46%。相比之下,在fbs缺失的培养中,单独含有Epo或含有Epo、IL-3和GM-CSF的培养中,IL-4的红细胞爆发数量增加了30-700%。在fbs剥夺条件下,IL-4对红细胞爆发生长的刺激作用在移除贴壁细胞时尤为明显。在所研究的条件下,IL-4对转基因菌落的生长影响不大。在无fbs的非粘附、t细胞缺失的骨髓细胞的悬浮培养中,IL-4维持BFU-E和CFU-GM的数量至少8天。在这些培养中,IL-4拮抗IL-3增加BFU-E数量的能力,但IL-4和IL-3共同作用以维持CFU-GM的数量。为了确定IL-4是否直接或间接起作用,我们分析了其对小鼠祖细胞系32D因子依赖亚克隆生长的影响。研究了三个亚克隆:原il -3依赖性克隆32D cl;3、epo依赖性红系克隆32D Epo-1和g - csf依赖性髓系克隆32D G-1。单独IL-4不能诱导这些细胞系的集落生长。而IL-4对32D细胞形成的菌落数量有25%的抑制作用。在有IL-3存在的情况下,32D Epo-1和32D G-1形成的菌落数量分别增加25%和25-50%。这些结果表明,人IL-4和小鼠IL-4一样,是一种多系生长因子,具有矛盾的作用,这种作用是由IL-4直接作用于祖细胞介导的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct effects of IL-4 on the in vitro differentiation and proliferation of hematopoietic progenitor cells.

The purpose of this study was to analyze the effects of recombinant human interleukin 4 (IL-4) on the differentiation and proliferation in vitro of human granulocyte/macrophage (GM) and erythroid progenitors. IL-4 was added to either fetal bovine serum (FBS)-supplemented or to FBS-deprived cultures of unfractionated human marrow cells or marrow cells depleted of adherent and/or T cells. Paradoxical effects similar to those reported in the murine system were detected in these experiments. In FBS-supplemented cultures, IL-4, which had no effect on the growth or erythroid bursts (from burst-forming cells; BFU-E) detected in the presence of Epo alone, decreased by 46% the number of erythroid bursts detected in the presence of Epo and phytohemagglutinin-stimulated leukocyte-conditioned medium (PHA-LCM). In contrast, in FBS-deprived cultures, IL-4 increased by 30-700% the number of erythroid bursts in cultures containing Epo alone or containing Epo, IL-3, and GM-CSF. The stimulatory effect of IL-4 on erythroid burst growth under FBS-deprived conditions was particularly evident when adherent cells were removed. Under the conditions investigated, IL-4 had little effect on the growth of GM colonies. In FBS-deprived suspension cultures of nonadherent, T-cell-depleted marrow cells, IL-4 maintained both the number of BFU-E and CFU-GM for at least 8 days. In these cultures, IL-4 antagonized the capacity of IL-3 to increase the number of BFU-E but IL-4 and IL-3 acted together to maintain the number of CFU-GM. To determine if IL-4 acted directly or indirectly, its effects on the growth of factor-dependent subclones of the murine progenitor cell line 32D were analyzed. Three subclones were studied: the original IL-3-dependent clone 32D cl.3, the Epo-dependent erythroid clone 32D Epo-1, and the G-CSF-dependent myeloid clone 32D G-1. IL-4 alone failed to induce colony growth from these cell lines. However, IL-4 inhibited by 25% the number of colonies formed by 32D cl.3 in the presence of IL-3 while increasing by 25% and 25-50% the number of colonies formed by 32D Epo-1 and 32D G-1 in the presence of Epo or G-CSF, respectively. These results indicate that human IL-4, as its murine counterpart, is a multilineage growth factor with paradoxical effects which are mediated by the direct action of IL-4 on progenitor cells.

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