Irons R D, Stillman W S, Colagiovanni D B, Henry V A
Molecular Toxicology and Environmental Health Sciences, School of Pharmacy, University of Colorado Health Sciences Center, Denver 80262.
Proc Natl Acad Sci U S A. 1992 May 1;89(9):3691-5. doi: 10.1073/pnas.89.9.3691.
The effects of in vitro pretreatment with benzene metabolites on colony-forming response of murine bone marrow cells stimulated with recombinant granulocyte/macrophage colony-stimulating factor (rGM-CSF) were examined. Pretreatment with hydroquinone (HQ) at concentrations ranging from picomolar to micromolar for 30 min resulted in a 1.5- to 4.6-fold enhancement in colonies formed in response to rGM-CSF that was due to an increase in granulocyte/macrophage colonies. The synergism equaled or exceeded that reported for the effects of interleukin 1, interleukin 3, or interleukin 6 with GM-CSF. Optimal enhancement was obtained with 1 microM HQ and was largely independent of the concentration of rGM-CSF. Pretreatment with other authentic benzene metabolites, phenol and catechol, and the putative metabolite trans, trans-muconaldehyde did not enhance growth factor response. Coadministration of phenol and HQ did not enhance the maximal rGM-CSF response obtained with HQ alone but shifted the optimal concentration to 100 pM. Synergism between HQ and rGM-CSF was observed with nonadherent bone marrow cells and lineage-depleted bone marrow cells, suggesting an intrinsic effect on recruitment of myeloid progenitor cells not normally responsive to rGM-CSF. Alterations in differentiation in a myeloid progenitor cell population may be of relevance in the pathogenesis of acute myelogenous leukemia secondary to drug or chemical exposure.
研究了苯代谢物体外预处理对重组粒细胞/巨噬细胞集落刺激因子(rGM-CSF)刺激的小鼠骨髓细胞集落形成反应的影响。用皮摩尔至微摩尔浓度的对苯二酚(HQ)预处理30分钟,导致对rGM-CSF反应形成的集落增加1.5至4.6倍,这是由于粒细胞/巨噬细胞集落增加所致。这种协同作用等于或超过了白细胞介素1、白细胞介素3或白细胞介素6与GM-CSF联合作用的报道。用1μM HQ可获得最佳增强效果,且在很大程度上与rGM-CSF的浓度无关。用其他纯正的苯代谢物、苯酚和儿茶酚,以及假定的代谢物反式,反式-粘康醛预处理均未增强生长因子反应。苯酚和HQ共同给药并未增强单独使用HQ时获得的最大rGM-CSF反应,但将最佳浓度移至100 pM。在非贴壁骨髓细胞和谱系清除的骨髓细胞中观察到HQ与rGM-CSF之间的协同作用,这表明对通常对rGM-CSF无反应的髓系祖细胞的募集有内在影响。髓系祖细胞群体分化的改变可能与药物或化学物质暴露继发的急性髓性白血病的发病机制有关。