D'Alesandro M M, Gruber D F, O'Halloran K P, MacVittie T J
Armed Forces Radiobiology Research Institute, Experimental Hematology Department, Bethesda, Maryland 20814.
Biotherapy. 1991;3(3):233-9. doi: 10.1007/BF02171686.
Granulocyte-macrophage colony stimulating factor (GMCSF) promotes the growth of granulocytes and macrophages from undifferentiated bone marrow cells and modulates the oxidative responses of polymorphonuclear leukocytes (PMN) to endogenous chemoattractants. We found that, in vitro, naturally occurring glycolsylated human GMCSF does not disturb the resting canine PMN membrane potential, may attentuate PMN oxidative responses to PMA, and is, to a small degree, chemotaxigenic. GMCSF, however, inhibits PMN chemotaxis to zymosan-activated plasma (ZAP). Compared to temperature controls, GMCSF (1-100 U/ml) produced up to 1.5-fold increases in H2O2 production after 15 minutes, while phorbol myristate acetate (PMA) treated cells increased H2O2 production 8-12-fold after 15 minutes. Preincubation of cells with GMCSF (1-100 U/ml) prior to PMA stimulation significantly reduced the H2O2 levels induced by PMA. H2O2 production was inhibited up to 15% after 15 minutes of GMCSF preincubation and up to 40% after 60 minutes of preincubation. As a chemotaxigenic agent, GMCSF (10-1000 U/ml) was able to elicit 49%-102% increases in quantitative cellular migration, compared to random migration. Total cellular chemotaxis to GMCSF was less than 30% of the response to ZAP. Preincubation of PMNs with GMCSF for 15 minutes significantly inhibited ZAP-induced cellular migration. Human GMCSF does not appear to activate canine PMN in vitro and may actually down-regulate PMN inflammatory responses.
粒细胞-巨噬细胞集落刺激因子(GMCSF)可促进未分化骨髓细胞生成粒细胞和巨噬细胞,并调节多形核白细胞(PMN)对内源性趋化因子的氧化反应。我们发现,在体外,天然存在的糖基化人GMCSF不会干扰静息犬PMN膜电位,可能会减弱PMN对佛波酯(PMA)的氧化反应,并且在一定程度上具有趋化作用。然而,GMCSF会抑制PMN对酵母聚糖激活血浆(ZAP)的趋化作用。与温度对照相比,GMCSF(1-100 U/ml)在15分钟后可使过氧化氢生成量增加至1.5倍,而经佛波醇肉豆蔻酸酯乙酸酯(PMA)处理的细胞在15分钟后可使过氧化氢生成量增加8-12倍。在PMA刺激前用GMCSF(1-100 U/ml)预孵育细胞可显著降低PMA诱导的过氧化氢水平。GMCSF预孵育15分钟后,过氧化氢生成量最多可被抑制15%,预孵育60分钟后最多可被抑制40%。作为一种趋化剂,与随机迁移相比,GMCSF(10-1000 U/ml)能够使细胞定量迁移增加49%-102%。对GMCSF的总细胞趋化作用不到对ZAP反应的30%。PMN与GMCSF预孵育15分钟可显著抑制ZAP诱导的细胞迁移。人GMCSF在体外似乎不会激活犬PMN,实际上可能会下调PMN的炎症反应。