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小鼠膀胱中2-氨基芴-DNA加合物:年龄、性别和乙酰化酶表型的影响

2-Aminofluorene-DNA adducts in mouse urinary bladder: effect of age, sex and acetylator phenotype.

作者信息

Levy G N, Weber W W

机构信息

Department of Pharmacology, University of Michigan, Ann Arbor 48109.

出版信息

Carcinogenesis. 1992 Feb;13(2):159-64. doi: 10.1093/carcin/13.2.159.

Abstract

Formation of urinary bladder DNA-2-aminofluorene adducts in inbred and acetylator congenic mice was measured 3 h after a 60 mg/kg dose of the arylamine carcinogen. The sensitivity of 32P-postlabeling with HPLC analysis permitted quantitation of adducts in individual mouse bladders. Acetylator phenotype was a significant determinant of DNA damage in female mice as slow acetylators had higher levels of bladder DNA adducts than rapids. This correlation is the reverse of that seen with hepatic DNA. Age was also a significant determinant of DNA damage as older mice (20-23 weeks) formed more bladder DNA adducts than young (7 week) mice. The age-related increase in bladder adduct formation was seen in both sexes of all mouse lines. Male B6 mice exposed to 2-aminofluorene at 20-23 weeks of age showed a 26-fold higher level of bladder DNA adducts than males exposed at 7 weeks. In addition to the large increase in total adduct level, the older male B6 mice produced significant amounts of an unidentified, early-eluting adduct peak that had chromatographic properties similar to an aminofluorene-DNA adduct produced through peroxidative activation. These results indicate that age, sex and acetylator phenotype are all important determinants of aromatic amine-bladder DNA adduct formation in mice.

摘要

在给予60mg/kg剂量的芳胺致癌物后3小时,测定近交系和乙酰化酶同基因小鼠膀胱DNA - 2 -氨基芴加合物的形成情况。采用高效液相色谱分析的32P后标记法的灵敏度允许对单个小鼠膀胱中的加合物进行定量。乙酰化酶表型是雌性小鼠DNA损伤的一个重要决定因素,因为慢乙酰化酶的膀胱DNA加合物水平高于快乙酰化酶。这种相关性与肝脏DNA的情况相反。年龄也是DNA损伤的一个重要决定因素,因为老年小鼠(20 - 23周)比幼年(7周)小鼠形成更多的膀胱DNA加合物。在所有品系小鼠的两性中均观察到与年龄相关的膀胱加合物形成增加。20 - 23周龄暴露于2 -氨基芴的雄性B6小鼠的膀胱DNA加合物水平比7周龄暴露的雄性小鼠高26倍。除了总加合物水平大幅增加外,老年雄性B6小鼠还产生了大量未鉴定的、早期洗脱的加合物峰,其色谱特性类似于通过过氧化激活产生的氨基芴 - DNA加合物。这些结果表明,年龄、性别和乙酰化酶表型都是小鼠芳香胺 - 膀胱DNA加合物形成的重要决定因素。

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