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Biochem Pharmacol. 2017 Jul 1;135:139-150. doi: 10.1016/j.bcp.2017.03.015. Epub 2017 Mar 27.
The pharmacokinetics and metabolism of lumiracoxib were studied, after administration of single 10mg/kg oral doses to chimeric liver-humanized and murinized FRG mice. In the chimeric humanized mice, lumiracoxib reached peak observed concentrations in the blood of 1.10±0.08μg/mL at 0.25-0.5h post-dose with an AUC of 1.74±0.52μgh/mL and an effective half-life for the drug of 1.42±0.72h (n=3). In the case of the murinized animals peak observed concentrations in the blood were determined as 1.15±0.08μg/mL at 0.25h post-dose with an AUC of 1.94±0.22μgh/mL and an effective half-life of 1.28±0.02h (n=3). Analysis of blood indicated only the presence of unchanged lumiracoxib. Metabolic profiling of urine, bile and faecal extracts revealed a complex pattern of metabolites for both humanized and murinized animals with, in addition to unchanged parent drug, a variety of hydroxylated and conjugated metabolites detected. The profiles obtained in humanized mice were different compared to murinized animals with e.g., a higher proportion of the dose detected in the form of acyl glucuronide metabolites and much reduced amounts of taurine conjugates. Comparison of the metabolic profiles obtained from the present study with previously published data from C57bl/6J mice and humans, revealed a greater though not complete match between chimeric humanized mice and humans, such that the liver-humanized FRG model may represent a useful approach to assessing the biotransformation of such compounds in humans.
在给予嵌合人源化和鼠源化 FRG 小鼠单次 10mg/kg 口服剂量后,研究了鲁米昔布的药代动力学和代谢情况。在嵌合人源化小鼠中,鲁米昔布在给药后 0.25-0.5 小时达到血液中的最大观测浓度为 1.10±0.08μg/mL,AUC 为 1.74±0.52μgh/mL,药物的有效半衰期为 1.42±0.72h(n=3)。在鼠源化动物中,血液中最大观测浓度在给药后 0.25h 确定为 1.15±0.08μg/mL,AUC 为 1.94±0.22μgh/mL,有效半衰期为 1.28±0.02h(n=3)。血液分析仅表明存在未改变的鲁米昔布。尿液、胆汁和粪便提取物的代谢谱分析显示,人源化和鼠源化动物均存在复杂的代谢物模式,除了未改变的母体药物外,还检测到各种羟化和共轭代谢物。与人源化小鼠相比,鼠源化动物的代谢谱不同,例如,酰基葡萄糖醛酸代谢物形式的剂量比例较高,牛磺酸缀合物的量大大减少。将本研究获得的代谢谱与先前从 C57bl/6J 小鼠和人类获得的已发表数据进行比较,发现嵌合人源化小鼠与人之间的匹配程度更高,但并非完全匹配,例如,肝人源化 FRG 模型可能是评估此类化合物在人类中生物转化的一种有用方法。