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大鼠肝脏匀浆形成的苯并[f]喹啉和苯并[h]喹啉代谢产物的鉴定。

Identification of the metabolites of benzo[f]quinoline and benzo[h]quinoline formed by rat liver homogenate.

作者信息

LaVoie E J, Adams E A, Hoffmann D

出版信息

Carcinogenesis. 1983 Sep;4(9):1133-8. doi: 10.1093/carcin/4.9.1133.

DOI:10.1093/carcin/4.9.1133
PMID:6883636
Abstract

Benzo[f]quinoline and benzo[h]quinoline are widespread environmental pollutants which have been found to be mutagenic. The metabolism of benzo[f]quinoline and benzo[h]quinoline was investigated using a liver homogenate from Aroclor-pretreated rats. The metabolites of benzo[f]quinoline which were identified were 7,8-dihydroxy-7,8-dihydrobenzo[f]quinoline, 9,10-dihydroxy-9,10-dihydrobenzo[f]quinoline, 7-hydroxybenzo[f]quinoline, and benzo[f]quinoline-N-oxide. Metabolism studies on benzo[f]quinoline performed in the presence of the epoxide hydratase inhibitor, 3,3,3-trichloropropylene oxide, demonstrated that the formation of both of these dihydrodiols can be inhibited. The major metabolites of benzo[h]quinoline were identified as 5,6-dihydroxy-5,6-dihydrobenzo[h]quinoline and 7,8-dihydroxy-7,8-dihydrobenzo[h]quinoline. Benzo[h]quinoline-N-oxide was not detected as a metabolite. In the presence of an epoxide hydratase inhibitor, the major metabolites of benzo[h]quinoline were 5,6-epoxybenzo[h]quinoline and 7-hydroxybenzo[h]quinoline. The difference in the metabolism to N-oxides observed between benzo[h]quinoline and benzo[f]quinoline is consistent with previous observations in which sterically hindered aromatic ring nitrogen compounds such as benzo[h]quinoline are more resistant to N-oxide formation. The nitrogen atom of these aza-arenes with its lone pair of electrons has a significant influence on sites at which dihydrodiols are formed. The data suggest that the aromatic ring nitrogen of these azaphenanthrenes has an effect similar to that of a methyl substituent in directing their metabolic oxidation.

摘要

苯并[f]喹啉和苯并[h]喹啉是广泛存在的环境污染物,已被发现具有致突变性。利用来自经多氯联苯预处理大鼠的肝匀浆研究了苯并[f]喹啉和苯并[h]喹啉的代谢情况。鉴定出的苯并[f]喹啉代谢产物有7,8-二羟基-7,8-二氢苯并[f]喹啉、9,10-二羟基-9,10-二氢苯并[f]喹啉、7-羟基苯并[f]喹啉以及苯并[f]喹啉-N-氧化物。在环氧化物水合酶抑制剂3,3,3-三氯环氧丙烷存在的情况下对苯并[f]喹啉进行的代谢研究表明,这两种二氢二醇的形成均可被抑制。苯并[h]喹啉的主要代谢产物被鉴定为5,6-二羟基-5,6-二氢苯并[h]喹啉和7,8-二羟基-7,8-二氢苯并[h]喹啉。未检测到苯并[h]喹啉-N-氧化物作为代谢产物。在环氧化物水合酶抑制剂存在的情况下,苯并[h]喹啉的主要代谢产物为5,6-环氧苯并[h]喹啉和7-羟基苯并[h]喹啉。苯并[h]喹啉和苯并[f]喹啉在生成N-氧化物的代谢方面存在的差异与之前的观察结果一致,即在之前的观察中,诸如苯并[h]喹啉这类空间位阻较大的芳香环氮化合物对形成N-氧化物更具抗性。这些氮杂芳烃的氮原子及其孤对电子对二氢二醇的形成位点有显著影响。数据表明,这些氮杂菲的芳香环氮在引导其代谢氧化方面具有与甲基取代基类似的作用。

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