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NADH对来自对照和苯巴比妥处理的大鼠或不同年龄大鼠肝脏微粒体中乙基吗啡N-去甲基化的影响。

The influence of NADH on the ethylmorphine-N-demethylation in liver microsomes from control and phenobarbital-treated rats or different ages.

作者信息

Müller D, Klinger W

出版信息

Acta Biol Med Ger. 1977;36(7-8):1161-6.

PMID:25549
Abstract

The ethylmorphine-N-demethylation by liver microsomes from control and phenobarbital-treated rats of different ages was investigated by means of adding NADPH in combination with NADH to the incubation medium. The rate of ethylmorphine-N-demethylation in the presence of NADPH without NADH is greater in adult than in young rats and greater in induced that in control rats. The higher the activity of ethylmorphine metabolism with NADPH alone the more it is abolsutely enhanced by NADH. The relative increase in ethylmorphine metabolism caused by NADH is equal in all groups of animals. It is concluded that there are no differences in the introduction of the second electron from NADH to the oxygenated cytochrome P-450 but there are differences in the concentration of cytochrome-substrate complex and, consequently, in the oxygenated cytochrome-substrate complex. The enhancing effect of NADH is higher at lower NADPH concentrations. In the presence of NADH, the NADPH concentrations necessary to obtain a msximum metabolic rate are lower than without NADH.

摘要

通过向孵育介质中添加NADPH与NADH的组合,研究了不同年龄对照组和苯巴比妥处理组大鼠肝脏微粒体对乙基吗啡的N-去甲基化作用。在仅存在NADPH而无NADH的情况下,成年大鼠中乙基吗啡-N-去甲基化的速率高于幼鼠,且诱导组高于对照组。单独使用NADPH时乙基吗啡代谢活性越高,NADH对其绝对增强作用就越大。NADH引起的乙基吗啡代谢相对增加在所有动物组中是相等的。得出的结论是,从NADH向氧化型细胞色素P-450引入第二个电子没有差异,但细胞色素-底物复合物的浓度存在差异,因此氧化型细胞色素-底物复合物也存在差异。在较低的NADPH浓度下,NADH的增强作用更高。在存在NADH的情况下,获得最大代谢速率所需的NADPH浓度低于不存在NADH时。

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