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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Genotoxic activation of hydrazine, two dialkylhydrazines, thiourea and ethylene thiourea in the somatic w/w + assay of Drosophila melanogaster.
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Genotoxic activation of hydrazine, two dialkylhydrazines, thiourea and ethylene thiourea in the somatic w/w + assay of Drosophila melanogaster.

机译:果蝇w / w +体细胞测定中肼,两种二烷基肼,硫脲和亚乙基硫脲的基因毒性激活。

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Genotoxic activation of hydrazine (HZ), two symmetrical dialkylhydrazines, namely, 1,2dimethylhydrazine and 1,2-diethylhydrazine (SDMH and SDEH), thiourea (TU) and ethylene thiourea (ETU) has been evaluated by means of the w/w + somatic assay of Drosophila. Both low bioactivation insecticide-susceptible (IS) and high biotransformation insecticide-resistant (IR) strains were used. The combined application of insecticide-susceptible and insecticide-resistant strains should, in principle, detect somatic cell recombinagens in the Drosophila melanogaster in vivo w/w + assay. The IS strain was more susceptible to toxicity induced by the test chemicals than the IR stocks. Its performance in the biotransformation of the chemicals tested was rather poor. TU was inactive in all strains. With the active compounds, spot frequencies increased approximately linearly with dose for each spot type. SDEH gave a strong positive result in all three female genotypes exposed. HZ, ETU and SDMH were overall weakly positive inthe IR strain Haag-79 (HG-R). Interestingly, ETU was clearly positive in the IR Hikone-R (HK-R) strain. A comparison of the recombinagenic potencies between the active and the weakly positive compounds, and among strains, showed pronounced genotype-dependent differences between the low and the high bioactivation strains. The ability of Drosophila to express several procarcinogens in relation to insecticide-resistance after activation catalyzed by CYP450 enzymes is discussed.
机译:通过w / w +评估了肼(HZ),两种对称的二烷基肼(1,2二甲基肼和1,2-二乙基肼(SDMH和SDEH),硫脲(TU)和乙烯硫脲(ETU))的遗传毒性激活+果蝇的体细胞测定。使用低生物活性的对杀虫剂敏感的(IS)菌株和高生物转化的抗杀虫剂(IR)的菌株。原则上,应结合使用对杀虫剂敏感和对杀虫剂具有抗性的菌株,以体内w / w +测定法检测果蝇中的体细胞重组蛋白。与IR储备相比,IS菌株更容易受到测试化学品诱导的毒性的影响。其在所测试化学物质的生物转化中的性能相当差。 TU在所有菌株中均不活跃。对于活性化合物,对于每种斑点类型,斑点频率随剂量近似线性增加。在所有暴露的三种女性基因型中,SDEH均给出了强烈的阳性结果。 HZ,ETU和SDMH在IR菌株Haag-79(HG-R)中总体呈弱阳性。有趣的是,ETU在IR Hikone-R(HK-R)菌株中明显呈阳性。活性和弱阳性化合物之间以及菌株之间的重组能力比较表明,低和高生物激活菌株之间存在明显的基因型依赖性差异。讨论了果蝇表达CYP450酶催化激活后与抗药性有关的几种致癌物的能力。

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