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氯美昔布在雄性C57bl/6J小鼠体内的代谢:新型体内代谢物的表征

Lumiracoxib metabolism in male C57bl/6J mice: characterisation of novel in vivo metabolites.

作者信息

P Dickie Anthony, Wilson Claire E, Schreiter Kay, Wehr Roland, D Wilson Ian, Riley Rob

机构信息

a Evotec UK Ltd , Milton Park, Abingdon , UK.

b Evotec International GmbH , In Vivo Pharmacology, Göttingen , Germany , and.

出版信息

Xenobiotica. 2017 Jun;47(6):538-546. doi: 10.1080/00498254.2016.1206239. Epub 2016 Jul 18.

DOI:10.1080/00498254.2016.1206239
PMID:27430634
Abstract

1. The pharmacokinetics and metabolism of lumiracoxib in male C57bl/6J mice were investigated following a single oral dose of 10 mg/kg. 2. Lumiracoxib achieved peak observed concentrations in the blood of 1.26 + 0.51 μg/mL 0.5 h (0.5-1.0) post-dose with an AUC of 3.48 + 1.09 μg h/mL. Concentrations of lumiracoxib then declined with a terminal half-life of 1.54 + 0.31 h. 3. Metabolic profiling showed only the presence of unchanged lumiracoxib in blood by 24 h, while urine, bile and faecal extracts contained, in addition to the unchanged parent drug, large amounts of hydroxylated and conjugated metabolites. 4. No evidence was obtained in the mouse for the production of the downstream products of glutathione conjugation such as mercapturates, suggesting that the metabolism of the drug via quinone-imine generating pathways is not a major route of biotransformation in this species. Acyl glucuronidation appeared absent or a very minor route. 5. While there was significant overlap with reported human metabolites, a number of unique mouse metabolites were detected, particularly taurine conjugates of lumiracoxib and its oxidative metabolites.

摘要
  1. 单次口服10毫克/千克剂量后,研究了氯美昔布在雄性C57bl/6J小鼠体内的药代动力学和代谢情况。2. 氯美昔布给药后0.5小时(0.5 - 1.0小时)在血液中达到的观察到的峰值浓度为1.26 + 0.51微克/毫升,曲线下面积(AUC)为3.48 + 1.09微克·小时/毫升。随后氯美昔布浓度下降,终末半衰期为1.54 + 0.31小时。3. 代谢谱分析显示,到24小时时血液中仅存在未变化的氯美昔布,而尿液、胆汁和粪便提取物中除了未变化的母体药物外,还含有大量羟基化和结合代谢物。4. 在小鼠中未获得谷胱甘肽结合下游产物如硫醚氨酸盐产生的证据,表明该药物通过醌亚胺生成途径的代谢不是该物种生物转化的主要途径。酰基葡萄糖醛酸化似乎不存在或只是一条非常次要的途径。5. 虽然与已报道的人类代谢物有显著重叠,但检测到了一些独特的小鼠代谢物,特别是氯美昔布及其氧化代谢物的牛磺酸结合物。

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