Gallicchio V S, Casale G P, Bartholomew P M, Watts T D
Int J Cell Cloning. 1987 May;5(3):231-41. doi: 10.1002/stem.5530050307.
This paper describes a study of hematopoiesis in parathion-treated mice. Adult mice (48 C57B1/6) were given a daily dose of parathion (4 mg/kg p.o.) or corn oil vehicle (5 ml/kg p.o.) for 14 days. During the pesticide and the examination period, treated animals showed no signs of poisoning and had normal body weights. On days 2, 5, 7, 9, 12 and 14 following parathion or corn oil, femoral marrow cells were assayed in vitro for granulocyte/monocyte (CFU-gm), erythroid (CFU-e and BFU-e), megakaryocyte (CFU-meg), stromal (CFU-str) and multipotential (CFU-mix) hematopoietic stem cells. Leukocyte counts were elevated on days 2 and 5, while platelet counts were not increased until day 12. No change was observed in either hematocrits or numbers of marrow cells. BFU-e were reduced (23% of control) by day 7, then increased to 137% of control by day 14. CFU-e were reduced (41% of control) on day 9, then increased to 71% of control by day 14. CFU-mix were 130% of control (day 2), then declined to control values by day 5. On days 12 and 14, CFU-mix colonies decreased to 40% of control. CFU-str were reduced at all time points examined. CFU-gm were 123%, 136% and 130% of control on days 7, 12 and 14, respectively, while CFU-meg were increased (145% of control) on day 7. The data suggest that parathion alters the cloning potential of bone marrow precursor stem cells.
本文描述了对经对硫磷处理的小鼠造血作用的一项研究。成年小鼠(48只C57B1/6)每天经口给予对硫磷(4毫克/千克)或玉米油载体(5毫升/千克),持续14天。在使用农药期间和检查期间,处理过的动物未表现出中毒迹象,体重正常。在给予对硫磷或玉米油后的第2、5、7、9、12和14天,对股骨骨髓细胞进行体外检测,以分析粒细胞/单核细胞(CFU - gm)、红系(CFU - e和BFU - e)、巨核细胞(CFU - meg)、基质(CFU - str)和多能(CFU - mix)造血干细胞。白细胞计数在第2天和第5天升高,而血小板计数直到第12天才增加。血细胞比容或骨髓细胞数量均未观察到变化。BFU - e在第7天减少(为对照组的23%),然后在第14天增加至对照组的137%。CFU - e在第9天减少(为对照组的41%),然后在第14天增加至对照组的71%。CFU - mix在第2天为对照组的130%,然后在第5天降至对照值。在第12天和第14天,CFU - mix集落减少至对照组的40%。在所有检查的时间点,CFU - str均减少。CFU - gm在第7、12和14天分别为对照组的123%、136%和130%,而CFU - meg在第7天增加(为对照组的145%)。数据表明,对硫磷改变了骨髓前体干细胞的克隆潜力。