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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Comparative metabolism and DNA binding of 1-, 2-, and 4-nitropyrene in rats.
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Comparative metabolism and DNA binding of 1-, 2-, and 4-nitropyrene in rats.

机译:在大鼠中比较新陈代谢和1-,2-和4-硝基py的DNA结合。

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The metabolism and DNA binding studies of mono-NP isomers under identical conditions were conducted, as an initial investigation, in order to provide an understanding for the higher carcinogenic activity of 4-NP in the rat mammary gland. Urinary and fecal excretion patterns of 4-NP and 1-NP 24 h following administration to female CD rats (i.p.; 24 mg/kg body weight; 1.55 mCi/rat) were similar but higher than those of 2-NP. The identified metabolites were formed via nitroreduction and ring oxidation pathways. Neither the excretion patterns nor the nature of the metabolites readily explained why the mammary tumorigenic activity of these three isomers varied. Although overall levels of mono-NP bound to liver DNA did not account for the observed differences in the biological activity, further HPLC analysis of the liver DNA hydrolysates showed that only 4-NP had yielded putative multiple DNA adducts; none were detected in the case of 1-NP and 2-NP. 1-, 2-, and 4-NP were found to bind to mammary DNA at levels of 0.6, 0.3, and 2.1 pmol/mg DNA, respectively. The structure of DNA adducts in the mammary gland and in the liver of female CD rats following the i.p. administration of 4-NP has not been identified. Collectively, the results of this preliminary study indicate that the difference in levels of DNA binding in the mammary gland in vivo may reflect why 4-NP has higher carcinogenic activity.
机译:为了初步了解4-NP在大鼠乳腺中的较高致癌活性,在相同条件下进行了单NP异构体的代谢和DNA结合研究。雌性CD大鼠给药后24 h(i.p .; 24 mg / kg体重; 1.55 mCi / rat),4-NP和1-NP的尿和粪便排泄模式相似但高于2-NP。通过硝化还原和环氧化途径形成鉴定出的代谢产物。无论是排泄方式还是代谢物的性质都不能轻易解释为什么这三种异构体的乳腺致瘤活性会发生变化。尽管与肝脏DNA结合的单NP的总体水平不能解释观察到的生物学活性差异,但是进一步的HPLC分析肝脏DNA水解产物表明,只有4-NP产生了假定的多个DNA加合物。 1-NP和2-NP均未检测到。发现1-,2-和4-NP分别以0.6、0.3和2.1pmol / mg DNA的水平结合至乳腺DNA。腹膜内注射后雌性CD大鼠的乳腺和肝脏中DNA加合物的结构。尚未确定4-NP的给药。总的来说,这项初步研究的结果表明,体内乳腺中DNA结合水平的差异可能反映了4-NP具有更高致癌活性的原因。

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