Witkamp R F, Nijmeijer S M, Kolker H J, Noordhoek J, van Miert A S
Department of Veterinary Basic Sciences, Faculty of Veterinary Medicine, University of Utrecht, The Netherlands.
J Vet Pharmacol Ther. 1993 Jun;16(2):164-73. doi: 10.1111/j.1365-2885.1993.tb00160.x.
The effect of gonadal hormones on the plasma elimination and urinary metabolite profile of antipyrine was studied in dwarf goats. Female goats were treated with testosterone and male goats were treated with 17 beta-oestradiol. Castrated males were treated with either testosterone or 17 beta-oestradiol. Antipyrine (25 mg/kg, i.v.) was given both before and after the hormonal treatments. The effects of the hormonal status on the plasma elimination of the parent compound were not consistent. This was possibly due to the fact that formation of the main metabolite of antipyrine in the goat, 4-hydroxy antipyrine (OHA), was not affected by sex or hormonal treatment. On the other hand, there were clear effects of hormonal status on urinary excretion of the three other metabolites. In females and castrated males testosterone suppressed the formation of norantipyrine (NORA), 3-hydroxymethylantipyrine (HMA) and 4,4'-dihydroxyantipyrine (DOHA). Intact males produced smaller amounts of these metabolites than females. It is concluded that distinct xenobiotic metabolizing pathways exist in the dwarf goat, which are influenced in their activity by gonadal hormones. This confirms previous findings in rats and mice. The possibility that sex hormones influence drug metabolism in food-producing animals could have consequences for veterinary therapeutics and public health. This study also demonstrates that, when using the antipyrine test for the assessment of hepatic drug metabolism, it is very important to include the determination of metabolites.
在矮山羊中研究了性腺激素对安替比林血浆清除率及尿代谢产物谱的影响。对雌性山羊给予睾酮治疗,对雄性山羊给予17β-雌二醇治疗。对去势雄性山羊分别给予睾酮或17β-雌二醇治疗。在激素治疗前后均静脉注射安替比林(25mg/kg)。激素状态对母体化合物血浆清除率的影响并不一致。这可能是由于山羊体内安替比林的主要代谢产物4-羟基安替比林(OHA)的形成不受性别或激素治疗的影响。另一方面,激素状态对其他三种代谢产物的尿排泄有明显影响。在雌性和去势雄性山羊中,睾酮抑制了去甲安替比林(NORA)、3-羟甲基安替比林(HMA)和4,4'-二羟基安替比林(DOHA)的形成。完整雄性山羊产生的这些代谢产物比雌性山羊少。结论是,矮山羊存在不同的外源物代谢途径,其活性受性腺激素影响。这证实了先前在大鼠和小鼠中的研究结果。性激素影响产肉动物药物代谢的可能性可能对兽医治疗和公共卫生产生影响。本研究还表明,在使用安替比林试验评估肝脏药物代谢时,测定代谢产物非常重要。