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7-甲基苯并[a]芘与大鼠肝微粒体的代谢研究:通过反相和正相高效液相色谱法进行分离及代谢产物的表征

Metabolic study of 7-methylbenzo[a]pyrene with rat liver microsomes: separation by reversed-phase and normal-phase high performance liquid chromatography and characterization of metabolites.

作者信息

Wong T K, Chiu P L, Fu P P, Yang S K

出版信息

Chem Biol Interact. 1981 Aug;36(2):153-66. doi: 10.1016/0009-2797(81)90017-x.

Abstract

The 7-methylbenzo[a]pyrene (7-MBaP) was incubated with liver microsomes of rats pretreated with polychlorinated biphenyls (Aroclor 1254) (PCBs). Metabolites of 7-MBaP were isolated by both reversed-phase and normal-phage high performance liquid chromatography (HPLC) and were characterized by nuclear magnetic resonance, UV-visible and mass spectral analyses. The predominant metabolite of 7-MBaP was found to be 3-hydroxy-7-methylbenzo[a]pyrene (3-hydroxy-7-MBaP). Other identified metabolites include 7-MBaP 4,5-, 7,8-, and 9,10-trans-dihydrodiols, 7-hydroxymethyl-BaP, 7-hydroxymethyl-BaP trans-9,10-dihydrodiol, 9-hydroxy-7-MBaP, 3-hydroxy-7-hydroxymethyl-BaP, 7-MBaP 1,6- and 3,6- quinones, and a hydroquinone which is also formed by further metabolism of the 3-hydroxy-7-MBaP. Comparative metabolic studies of 7-MBaP and BaP indicated that, relative to that of BaP, the methyl substituent of 7-MBaP slightly increases the formation of 3-hydroxy-7-MBaP and decreases the metabolism at other regions of the 7-MBaP molecule. The finding that a 7,8-dihydrodiol is a metabolite indicates that, like BaP, 7-MBaP may also be activated to the potentially reactive 7,8-dihydrodiol 9,10-epoxides although their formations are significantly reduced.

摘要

将7-甲基苯并[a]芘(7-MBaP)与经多氯联苯(Aroclor 1254)(PCBs)预处理的大鼠肝脏微粒体一起孵育。通过反相和正相高效液相色谱(HPLC)分离7-MBaP的代谢产物,并通过核磁共振、紫外可见光谱和质谱分析对其进行表征。发现7-MBaP的主要代谢产物是3-羟基-7-甲基苯并[a]芘(3-羟基-7-MBaP)。其他鉴定出的代谢产物包括7-MBaP 4,5-、7,8-和9,10-反式二氢二醇、7-羟甲基-BaP、7-羟甲基-BaP反式-9,10-二氢二醇、9-羟基-7-MBaP、3-羟基-7-羟甲基-BaP、7-MBaP 1,6-和3,6-醌,以及一种对苯二酚,它也是由3-羟基-7-MBaP的进一步代谢形成的。7-MBaP和BaP的比较代谢研究表明,相对于BaP,7-MBaP的甲基取代基略微增加了3-羟基-7-MBaP的形成,并降低了7-MBaP分子其他区域的代谢。发现7,8-二氢二醇是一种代谢产物表明,与BaP一样,7-MBaP也可能被激活为潜在的活性7,8-二氢二醇9,10-环氧化物,尽管它们的形成显著减少。

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