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在集落刺激因子-1反应性克隆中刺激中性粒细胞生成。

Stimulation of neutrophil production in CSF-1-responsive clones.

作者信息

Rothstein G, Rhondeau S M, Peters C A, Christensen R D, Lynch D, Gillis S

机构信息

Division of Human Development and Aging, University of Utah School of Medicine, Salt Lake City 84132.

出版信息

Blood. 1988 Sep;72(3):898-902.

PMID:3046685
Abstract

The hematopoietic growth factor CSF-1 has been considered relatively lineage specific for the production of macrophages, whereas GM-CSF elicits a predominance of neutrophils. It is likely that in vivo, individual clones are stimulated by the two CSFs, although the effect of dual stimulation on progenitors and their progeny has not been completely explored. We found that in cultures initiated with low concentrations of CSF-1 or GM-CSF, alone or in combination, production of macrophages predominated. Maximally stimulatory concentrations of CSF-1 elicited a predominance of macrophages, whereas maximal GM-CSF elicited many more neutrophil/macrophage colonies and pure neutrophil colonies. A combination of maximal CSF-1 and GM-CSF elicited the same differentiation as GM-CSF alone. Delayed addition of GM-CSF to cultures initiated with CSF-1 elicited colonies indistinguishable from GM-CSF alone, suggesting that neutrophil production had been switched on by GM-CSF. In mapping studies, colonies initiated by CSF-1 increased or switched on neutrophil production when GM-CSF was added as a second stimulus. These studies show that individual clones are responsive to both CSFs, and that the differentiating influence of GM-CSF predominates over that of CSF-1. In cultures to which only CSF-1 was added, a population of progenitors was sustained that produced neutrophils only after a GM-CSF stimulus. Thus, CSF-1 may participate in maintaining a reserve of progenitors for neutrophils during periods of increased neutrophil demand.

摘要

造血生长因子CSF-1一直被认为对巨噬细胞的产生具有相对谱系特异性,而GM-CSF则主要诱导中性粒细胞生成。在体内,单个克隆很可能受到这两种CSF的刺激,尽管双重刺激对祖细胞及其后代的影响尚未得到充分研究。我们发现,在以低浓度CSF-1或GM-CSF单独或联合启动的培养物中,巨噬细胞的产生占主导。CSF-1的最大刺激浓度诱导巨噬细胞占优势,而最大GM-CSF诱导更多的中性粒细胞/巨噬细胞集落和纯中性粒细胞集落。最大浓度的CSF-1和GM-CSF联合使用诱导的分化与单独使用GM-CSF相同。在以CSF-1启动的培养物中延迟添加GM-CSF诱导的集落与单独使用GM-CSF时无法区分,这表明GM-CSF开启了中性粒细胞的生成。在图谱研究中,当添加GM-CSF作为第二种刺激时,由CSF-1启动的集落增加或开启了中性粒细胞的生成。这些研究表明,单个克隆对两种CSF都有反应,并且GM-CSF的分化影响超过了CSF-1。在仅添加CSF-1的培养物中,维持了一群祖细胞,这些祖细胞仅在GM-CSF刺激后才产生中性粒细胞。因此,在中性粒细胞需求增加的时期,CSF-1可能参与维持中性粒细胞祖细胞的储备。

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