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苯巴比妥及其N-甲基化衍生物对肝脏细胞色素P450诱导的不同作用。

Distinct effects of phenobarbital and its N-methylated derivative on liver cytochrome P450 induction.

作者信息

Murayama N, Shimada M, Yamazoe Y, Sogawa K, Nakayama K, Fujii-Kuriyama Y, Kato R

机构信息

Department of Pharmacology, School of Medicine, Keio University, Tokyo, Japan.

出版信息

Arch Biochem Biophys. 1996 Apr 1;328(1):184-92. doi: 10.1006/abbi.1996.0159.

Abstract

The relationship between barbiturate structures and their effects on induction of rat cytochrome P450 forms was studied in primary cultured hepatocytes. Treatment of hepatocytes cultured on matrigel with 1 mM barbital, N-methylbarbital, cyclobarbital, hexobarbital, phenobarbital (PB), or mephobarbital (N-methyl-PB) resulted in increased amounts of CYP2B1/2 and CYP2C6 forms. Microsomal CYP3A content was also enhanced by treatment with these barbiturates, except for barbital. Although no relationship was observed between the levels of CYP2B1/2 and CYP3A, ratios of CYP3A/CYP2B1 plus CYP2B2 contents were invariably higher with hepatocytes treated with N-methylated barbiturates than with the nonmethylated analogs. Consistent results were also observed in vivo in rats treated with PB and N-methyl-PB. These results indicate the difference in the structure requirement for induction of CYP2B and CYP3A. In addition, N-methyl-PB was found to suppress PB-mediated induction of CYP2B1. Hepatic levels of CYP2B1 mRNA and protein were increased by treatment with PB or N-methyl-PB alone, but decreased by cotreatment with 1 mM PB and N-methyl-PB. The suppression has been shown to occur at the transcriptional level of the CYP2B1 gene by using a chloramphenicol acetyltransferase reporter-CYP2B1 fused gene system.

摘要

在原代培养的肝细胞中研究了巴比妥类药物结构与其对大鼠细胞色素P450同工酶诱导作用之间的关系。用1 mM巴比妥、N-甲基巴比妥、环巴比妥、己巴比妥、苯巴比妥(PB)或美芬妥英(N-甲基-PB)处理在基质胶上培养的肝细胞,导致CYP2B1/2和CYP2C6同工酶含量增加。除巴比妥外,这些巴比妥类药物处理也会提高微粒体CYP3A含量。虽然未观察到CYP2B1/2水平与CYP3A之间的关系,但用N-甲基化巴比妥类药物处理的肝细胞中,CYP3A/CYP2B1加CYP2B2含量的比值始终高于未甲基化类似物处理的肝细胞。在用PB和N-甲基-PB处理的大鼠体内也观察到了一致的结果。这些结果表明诱导CYP2B和CYP3A对结构要求存在差异。此外,发现N-甲基-PB可抑制PB介导的CYP2B1诱导。单独用PB或N-甲基-PB处理可增加肝脏中CYP2B1 mRNA和蛋白质水平,但同时用1 mM PB和N-甲基-PB处理则会降低。通过使用氯霉素乙酰转移酶报告基因-CYP2B1融合基因系统已证明这种抑制发生在CYP2B1基因的转录水平。

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