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与司巴丁和甲妥英氧化多态性相关的丙咪嗪代谢——一项群体研究。

Imipramine metabolism in relation to the sparteine and mephenytoin oxidation polymorphisms--a population study.

作者信息

Madsen H, Nielsen K K, Brøsen K

机构信息

Department of Clinical Pharmacology, Odense University, Denmark.

出版信息

Br J Clin Pharmacol. 1995 Apr;39(4):433-9. doi: 10.1111/j.1365-2125.1995.tb04473.x.

DOI:10.1111/j.1365-2125.1995.tb04473.x
PMID:7640151
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1365132/
Abstract
  1. Sparteine and mephenytoin phenotyping tests were carried out in 327 healthy Danish subjects. Two weeks later each subject took 25 mg imipramine followed by urine collection for 24 h. The urinary content of imipramine, desipramine, 2-hydroxy-imipramine and 2-hydroxy-desipramine was assayed by h.p.l.c. 2. The medians of the hydroxylation ratios (i.e. 2-hydroxy-metabolite over parent compound) were 6 to 14 times higher in 300 extensive metabolizers of sparteine (EMs) as compared with 27 poor metabolizers (PMs), but none of the ratios separated the two phenotypes completely. 3. There were 324 EM of mephenytoin (EMM) and three PM (PMM) in the sample. The demethylation ratios between desipramine, 2-hydroxy-desipramine and their corresponding tertiary amines showed statistically significant correlations with the mephenytoin S/R isomer ratio (Spearman's rs: -0.20 and -0.27, P < 0.05). 4. The demethylation ratios were higher in 80 smokers than in 245 non-smokers. This indicates that CYP1A2, which is induced by cigarette smoking, also catalyzes the N-demethylation of imipramine. 5. CYP2D6 genotyping was carried out by PCR in 325 of the subjects, and the D6-wt allele was amplified in 298 EMs, meaning that they were genotyped correctly. One PMs was D6-wt/D6-B, another PMs had the genotype D6-wt/ and hence both were misclassified as EMs. The remaining 25 PMs were D6-A/D6-B (n = 5), D6-B/ (n = 18) or D6-D/D6-D (no PCR amplification, n = 2).(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 对327名健康丹麦受试者进行了司巴丁和甲妥英的表型测试。两周后,每位受试者服用25毫克丙咪嗪,随后收集24小时尿液。采用高效液相色谱法测定尿液中丙咪嗪、去甲丙咪嗪、2-羟基丙咪嗪和2-羟基去甲丙咪嗪的含量。2. 与27名慢代谢者(PMs)相比,300名司巴丁快代谢者(EMs)的羟基化比率(即2-羟基代谢物与母体化合物的比率)中位数高6至14倍,但没有一个比率能完全区分这两种表型。3. 样本中有324名甲妥英快代谢者(EMM)和3名慢代谢者(PMM)。去甲丙咪嗪、2-羟基去甲丙咪嗪与其相应叔胺之间的去甲基化比率与甲妥英S/R异构体比率呈统计学显著相关性(斯皮尔曼相关系数rs:-0.20和-0.27,P<0.05)。4. 80名吸烟者的去甲基化比率高于245名非吸烟者。这表明由吸烟诱导的CYP1A2也催化丙咪嗪的N-去甲基化。5. 对325名受试者进行了PCR CYP2D6基因分型,298名EMs扩增出D6-wt等位基因,意味着基因分型正确。一名PMs为D6-wt/D6-B,另一名PMs基因型为D6-wt/,因此两者均被误分类为EMs。其余25名PMs为D6-A/D6-B(n = 5)、D6-B/(n = 18)或D6-D/D6-D(无PCR扩增,n = 2)。(摘要截选至250字)

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本文引用的文献

1
Major pathway of imipramine metabolism is catalyzed by cytochromes P-450 1A2 and P-450 3A4 in human liver.丙咪嗪代谢的主要途径由人肝脏中的细胞色素P-450 1A2和细胞色素P-450 3A4催化。
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The N-demethylation of imipramine correlates with the oxidation of S-mephenytoin (S/R-ratio). A population study.丙咪嗪的N-去甲基化与S-美芬妥英氧化(S/R比值)相关。一项群体研究。
Br J Clin Pharmacol. 1993 Mar;35(3):331-4.
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Fluvoxamine is a potent inhibitor of cytochrome P4501A2.氟伏沙明是细胞色素P4501A2的强效抑制剂。
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