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丙酮和甲基正丁基酮对肝脏混合功能氧化酶的影响。

Effects of acetone and methyl n-butyl ketone on hepatic mixed-function oxidase.

作者信息

Kobusch A B, Plaa G L, du Souich P

机构信息

Département de Pharmacologie, Faculté de Médecine, Université de Montréal, Québec, Canada.

出版信息

Biochem Pharmacol. 1989 Oct 15;38(20):3461-7. doi: 10.1016/0006-2952(89)90115-9.

Abstract

The administration of ketones potentiates CCl4 hepatotoxicity; however, the potencies of the ketones differ. The aim of the present study was to assess potential differences between acetone and methyl n-butyl ketone (MnBK) on cytochrome P-450. The effects of single and repetitive doses of acetone and MnBK were determined in male rats by estimating the rate of metabolite formation of three substrates and the hepatic content of cytochrome P-450. A single treatment with acetone (13.5 mmol/kg or greater) enhanced the oxidation of aniline and 7-ethoxycoumarin, whereas repetitive treatments also increased aminopyrine demethylation and cytochrome P-450 content. Single and repetitive treatments of MnBK (15 mmol/kg) augmented the oxidation of all three substrates and increased cytochrome P-450 content. The effects of the ketones on cytochrome P-450 isozymes were characterized using sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Acetone and MnBK increased the 52.1 and 54.1 kD forms and, in addition, MnBK tended to increase the 50.6 kD species. The data indicate that ketones differ in the type of isozymes induced and in the degree of induction. The higher potency of MnBK, compared to acetone, is probably associated with the fact that MnBK affects a greater number of isozymes than acetone.

摘要

给予酮类会增强四氯化碳的肝毒性;然而,不同酮类的效力有所不同。本研究的目的是评估丙酮和甲基正丁基酮(MnBK)在细胞色素P - 450方面的潜在差异。通过估计三种底物的代谢产物形成速率和细胞色素P - 450的肝脏含量,确定了雄性大鼠单次和重复给予丙酮及MnBK的影响。单次给予丙酮(13.5 mmol/kg或更高剂量)可增强苯胺和7 - 乙氧基香豆素的氧化,而重复给药还会增加氨基比林脱甲基作用和细胞色素P - 450含量。单次和重复给予MnBK(15 mmol/kg)可增强所有三种底物的氧化并增加细胞色素P - 450含量。使用十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳对酮类对细胞色素P - 450同工酶的影响进行了表征。丙酮和MnBK增加了52.1和54.1 kD的形式,此外,MnBK还倾向于增加50.6 kD的种类。数据表明,酮类在诱导的同工酶类型和诱导程度上存在差异。与丙酮相比,MnBK的效力更高可能与MnBK比丙酮影响更多的同工酶这一事实有关。

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