Scheding S, Loeffler M, Anselstetter V, Wichmann H E
Department of Labor Safety and Environmental Medicine, University of Wuppertal, Federal Republic of Germany.
Arch Toxicol. 1992;66(8):546-50. doi: 10.1007/BF01973384.
Benzo[a]pyrene (BaP) has been reported to exert a differential effect on murine hematopoiesis that is mouse strain specific. Interpretation of these results based solely on experimental data is restricted and leaves important questions unanswered. Therefore, a mathematical model of murine hematopoiesis was applied in order to: (1) identify the targets of BaP, (2) quantify the damage to target cells and (3) based on these results, interpret differences in strain susceptibility. Model analysis of the hematopoietic response of D2 and BDF1 mice to a daily oral administration of 125 mg/kg BaP showed that proliferating hematopoietic cells are the targets of BaP. Within this group it was found that: (a) erythropoietic cells were the most susceptible to BaP, (b) granulopoietic cells showed a susceptibility half that of erythropoietic cells and (c) the susceptibility of stem cells ranged between that of erythropoietic and granulopoietic cells. This damage pattern was the same for both strains, indicating that the difference between the strains was quantitative. As cell destruction rates were about 3-fold higher for D2 than BDF1 mice, it was concluded that D2 mice were about three times as susceptible to BaP as BDF1 mice. The study showed that the mathematical model, in addition to experimental methods, provided an efficient tool for the analysis of BaP hematotoxicity.
据报道,苯并[a]芘(BaP)对小鼠造血功能具有差异性影响,且具有小鼠品系特异性。仅基于实验数据对这些结果进行解释存在局限性,一些重要问题仍未得到解答。因此,应用了一种小鼠造血功能的数学模型,目的是:(1)确定BaP的作用靶点,(2)量化对靶细胞的损伤,(3)基于这些结果,解释品系易感性的差异。对D2和BDF1小鼠每日口服125mg/kg BaP后的造血反应进行模型分析,结果表明增殖的造血细胞是BaP的作用靶点。在这一组中发现:(a)红细胞生成细胞对BaP最敏感,(b)粒细胞生成细胞的敏感性是红细胞生成细胞的一半,(c)干细胞的敏感性介于红细胞生成细胞和粒细胞生成细胞之间。两种品系的这种损伤模式相同,表明品系之间的差异是定量的。由于D2小鼠的细胞破坏率比BDF1小鼠高约3倍,因此得出结论,D2小鼠对BaP的易感性约为BDF1小鼠的三倍。该研究表明,除实验方法外,数学模型为分析BaP的血液毒性提供了一种有效的工具。