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CYP2D-related Metabolism in Animals of the Canoidea Superfamily – Species Differences

机译:CYP2D相关代谢在Canoidea超科动物中的分布-种间差异

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摘要

CYP2D-related drug metabolism in liver microsomes from animals of the Canoidea super family, i.e. mink (Mustela vison), bears (Ursus arctos), foxes (Vulpes vulpes) and dogs, were investigated. Propranolol, bunitrolol and imipramine, which are typically substrates of CYP2D subfamilies, were used in the experiment. All the animals of the Canoidea superfamily that were tested lacked the ability to catalyse 7-hydroxylation of propranolol, which is one of the major metabolic pathways in rats. Stereoselectivity of propranolol metabolism was towards (S)-propranolol in all the reactions of the animals tested with the exception of mink, which showed a selective tendency towards (R)-propranolol in {N-}dealkylation. As far as metabolic patterns of (R)- and (S)-propranolol are concerned, bears, foxes and dogs are alike, but minks are somewhat different. Liver microsomes from mink showed, among the animals of the Canoidea superfamily, the lowest propranolol hydroxylase activity at 4- and 5-positions and imipramine 2-hydroxylation and {N-}demethylation activities. We could not detect bunitrolol 4-hydroxylation in mink liver microsomes at the low substrate concentration used. We conclude that mink have the lowest activity of CYP2D-related xenobiotic metabolism among the Canoidea superfamily.
机译:研究了Canoidea super家族动物(即貂(Mustela vison),熊(Ursus arctos),狐狸(Vulpes vulpes)和狗)的肝微粒体中与CYP2D相关的药物代谢。实验中使用了通常为CYP2D亚家族底物的普萘洛尔,苯尼洛尔和丙米嗪。被测试的Canoidea超家族的所有动物均缺乏催化普萘洛尔7-羟基化的能力,普萘洛尔是大鼠的主要代谢途径之一。除水貂外,在所测试动物的所有反应中,心得安对新戊醇的代谢的立体选择性都对(S)-心得安。就(R)-和(S)-普萘洛尔的代谢方式而言,熊,狐狸和狗相似,但貂皮有所不同。来自水貂的肝微粒体显示,在Canoidea超家族的动物中,最低的心得安在4和5位上有心得安醇羟化酶活性,而丙咪嗪2-羟基化和{N-}去甲基化活性最低。在所用的低底物浓度下,我们无法在水貂肝微粒体中检测到苯并洛尔4-羟基化。我们得出的结论是,水貂在Canoidea超家族中具有最低的CYP2D相关异源生物代谢活性。

著录项

  • 来源
    《Veterinary Research Communications》 |2006年第5期|505-512|共8页
  • 作者单位

    Laboratory of Toxicology Department of Environmental Veterinary Sciences Graduate School of Veterinary Medicine Hokkaido University Kita-ward N18W9 Sapporo 060-0818 Japan;

    Laboratory of Toxicology Department of Environmental Veterinary Sciences Graduate School of Veterinary Medicine Hokkaido University Kita-ward N18W9 Sapporo 060-0818 Japan;

    Laboratory of Toxicology Department of Environmental Veterinary Sciences Graduate School of Veterinary Medicine Hokkaido University Kita-ward N18W9 Sapporo 060-0818 Japan;

    High-tech Research Center Azabu University Sagamihara Japan;

    Laboratory of Toxicology Department of Environmental Veterinary Sciences Graduate School of Veterinary Medicine Hokkaido University Kita-ward N18W9 Sapporo 060-0818 Japan;

    Laboratory of Toxicology Department of Environmental Veterinary Sciences Graduate School of Veterinary Medicine Hokkaido University Kita-ward N18W9 Sapporo 060-0818 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Canoidea; metabolism; propranolol; regioselectivity; species differences;

    机译:卡尼地亚;新陈代谢;普萘洛尔;区域选择性;物种差异;

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