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首页> 外文期刊>Pharmacology: International Journal of Experimental and Clinical Pharmacology >Comparative pharmacology of zinc mesoporphyrin and tin mesoporphyrin: toxic actions of zinc mesoporphyrin on hematopoiesis and progenitor cell mobilization.
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Comparative pharmacology of zinc mesoporphyrin and tin mesoporphyrin: toxic actions of zinc mesoporphyrin on hematopoiesis and progenitor cell mobilization.

机译:中卟啉锌和中卟啉锡的比较药理:中卟啉锌对造血作用和祖细胞动员的毒性作用。

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摘要

The effects of two synthetic heme analogues, zinc mesoporphyrin (ZnMP) and tin mesoporphyrin (SnMP), on in vivo hematopoietic progenitor cell mobilization and in vitro hematopoiesis were examined in rabbit bone marrow. Rabbits received granulocyte colony-stimulating factor (rhG-CSF) for 7 days in order to mobilize increased numbers of erythroid (BFU-E) and myeloid (CFU-GM) progenitors in peripheral blood. Concurrent treatment of rhG-CSF-treated rabbits with ZnMP reduced mobilization of the numbers of BFU-E (76% inhibition, p < 0.0001) and CFU-GM (70% inhibition, p < 0.005) in peripheral blood. In contrast, SnMP administered at the same concentration had no significant suppressive effect on BFU-E and CFU-GM recruitment. Both metalloporphyrins inhibited bone marrow heme oxygenase activity equally in vivo, thus indicating that both compounds enter bone marrow cells. Direct in vitro addition of ZnMP to normal rabbit bone marrow cultures suppressed BFU-E and CFU-GM growth, whereas SnMP had no such effect. These results confirm, in an in vivo system, our earlier in vitro studies and demonstrate that, at the concentrations studied, ZnMP, in contrast to SnMP, displays toxicity for hematopoietic growth and progenitor cell production.
机译:在兔骨髓中检查了两种合成的血红素类似物锌中卟啉锌(ZnMP)和锡中卟啉锡(SnMP)对体内造血祖细胞动员和体外造血的影响。兔接受粒细胞集落刺激因子(rhG-CSF)7天,以动员外周血中数量增加的红系(BFU-E)和髓样(CFU-GM)祖细胞。用ZnMP同时处理rhG-CSF处理的兔子,可减少外周血中BFU-E(76%抑制,p <0.0001)和CFU-GM(70%抑制,p <0.005)的动员。相反,以相同浓度施用的SnMP对BFU-E和CFU-GM募集没有明显的抑制作用。两种金属卟啉在体内均能同样抑制骨髓血红素加氧酶活性,因此表明这两种化合物都进入了骨髓细胞。直接在体外向正常兔骨髓培养物中添加ZnMP抑制了BFU-E和CFU-GM的生长,而SnMP没有这种作用。这些结果在体内系统中证实了我们较早的体外研究,并证明了在所研究的浓度下,与SnMP相比,ZnMP对造血细胞生长和祖细胞产生具有毒性。

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