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Interception of reactive, DNA adduct‐forming metabolites present in rodent serum following carcinogen exposure: Implications for use of body fluids in biomonitoring

机译:在致癌物暴露后截获啮齿动物血清中存在的反应性 DNA 加合物形成代谢物:对体液在生物监测中的应用的影响

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AbstractThe detection of adduct‐forming metabolites in the serum of carcinogen treated animals by32P‐postlabeling was evaluated as a novel approach to overcome the stringent requirement of obtaining DNA from tissues in human biomonitoring assessments. Benzoapyrene (BP) was given i.p. to B6C3F1, C57B1/6, ICR, and DBA/2 mouse strains as well as Sprague‐Dawley rats. Three adducts related to BP were detected in the liver and/or lung of Sprague‐Dawley rats or B6C3F1), C57B1/6, and ICR mice; a single adduct was detected in the liver and lung of the DBA/2 mouse strain. Adducts chromatographically similar to those found in these tissues were also detected when salmon sperm DNA was incubated with the serum of BP‐treated animals. Benzidine treatment induced the formation of one adduct in the liver of B6C3F1mice, which was chromatographically similar to dG‐C8‐N′‐acetylbenzidine. An identical adduct was detected in the salmon sperm DNA incubated with the serum of these mice. Cyclopentacdpyrene treatment produced four major and three minor adducts in the liver or lung of B6C3F1mice, all but two of which were detected in DNA incubated with serum of cyclopentacdpyrene‐treated animals. Large interstrain differences in the serum level of BP adduct‐forming metabolites as well as tissue DNA adducts were found which correlated with previously observed strain‐specific trends in sensitivity to PAH‐mediated carcinogenesis. Thus, levels of BP adduct‐forming metabolites were found in the following descending order: B6C3F1, C57B1/6, ICR, and DBA/2. BP‐derived adduct‐forming metabolites were detectable as late as 2 d and 5 d post‐treatment in the serum of C57B1/6 mice or Sprague‐Dawley rats, respectively, which seems to coincide well with the reported species‐specific turnover of serum albumin; a protein know to be involved in the transport of reactive metabolites throughout the systemic circulation. The results obtained clearly indicate the presence of adduct‐forming carcinogen metabolites in the serum of treated animals, which seemingly irrespective of their chemical nature, can be intercepted with exogenous DNA and detected by32P‐postlabeling. Successful application of a serumbased approach coupled with the use of the generally applicable, ultrasensitive32P‐postlabeling assay could evade the need for obtaining DNA from tissues, currently the major impediment in human b
机译:摘要采用32P-postlabeling法检测致癌物处理动物血清中形成加合物的代谢物,是克服人体生物监测评估中从组织获取DNA的严格要求的新方法。将苯并[a]芘 (BP) 腹腔注射给 B6C3F1、C57B1/6、ICR 和 DBA/2 小鼠品系以及 Sprague-Dawley 大鼠。在Sprague-Dawley大鼠或B6C3F1)、C57B1/6和ICR小鼠的肝脏和/或肺中检测到3种与BP相关的加合物;在DBA/2小鼠品系的肝脏和肺中检测到单个加合物。当鲑鱼精子DNA与BP处理动物的血清一起孵育时,还检测到与这些组织中发现的色谱相似的加合物。联苯胺处理诱导B6C3F1小鼠肝脏中形成一个加合物,其色谱学上与dG-C8-N′-乙酰联苯胺相似。在与这些小鼠血清一起孵育的鲑鱼精子DNA中检测到相同的加合物。环戊并[cd]芘处理在B6C3F1小鼠的肝脏或肺中产生了四个主要加合物和三个次要加合物,除两个外,其他所有加合物均在与环戊并[cd]芘处理动物血清孵育的DNA中检测到。发现血清BP加合物形成代谢物和组织DNA加合物水平存在较大的菌株间差异,这与先前观察到的对PAH介导的致癌反应敏感性的菌株特异性趋势相关。因此,BP加合物形成代谢物的水平按以下降序排列:B6C3F1、C57B1/6、ICR和DBA/2。在C57B1/6小鼠或Sprague-Dawley大鼠的血清中,分别在治疗后2天和5天检测到BP衍生的加合物形成代谢物,这似乎与报道的血清白蛋白的物种特异性周转非常吻合;一种已知参与整个体循环中反应性代谢物转运的蛋白质。获得的结果清楚地表明,在处理动物的血清中存在形成加合物的致癌物代谢物,这些代谢物似乎与它们的化学性质无关,可以用外源性DNA截获并通过32P-post-labeling检测。成功应用基于血清的方法,再加上使用普遍适用的超灵敏32P标记后测定法,可以避免从组织中获取DNA的需要,这是目前人类b的主要障碍。

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