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降糖药物吡格列酮在大鼠体内的处置与代谢

Disposition and metabolism of the hypoglycemic agent pioglitazone in rats.

作者信息

Krieter P A, Colletti A E, Doss G A, Miller R R

机构信息

Department of Drug Metabolism, Merck Research Laboratories, Rahway, NJ 07065.

出版信息

Drug Metab Dispos. 1994 Jul-Aug;22(4):625-30.

PMID:7956739
Abstract

The disposition and metabolism of [3H]pioglitazone was determined in male rats after oral administration. The peak plasma concentration of 10 micrograms/ml occurred 1 hr after dosing at 10 mg/kg p.o.; the apparent plasma terminal half-life was 7.5 hr. Most of the radioactivity in plasma up to 8 hr after dosing was due to the parent drug. Pioglitazone was highly protein-bound in plasma; only 1-2% was free at concentrations of 0.1-10 micrograms/ml. Within 3 days after oral administration to bile duct-cannulated rats, 36% and 15% of the oral dose was recovered in the bile and urine, respectively. The pattern of biliary and urinary metabolites was similar. A total of eight metabolites were isolated and identified on the basis of NMR spectroscopy and MS. Metabolites resulting from hydroxylation of either carbon adjacent to the pyridine ring were conjugated with glucuronic acid (M7) or sulfuric acid (M6). The metabolite hydroxylated on the terminal carbon of the ethyl side chain was further oxidized to the carboxylic acid derivative (M3). Oxidative loss of the terminal carbon led to a nicotinic acid derivative (M2) and loss of both carbon atoms to the corresponding 3-hydroxypyridine (M9) derivative that was excreted as the sulfate conjugate (M8). The two carboxylic acid metabolites were also conjugated with taurine (M4 and M5).

摘要

口服给予雄性大鼠后,测定了[3H]吡格列酮的处置和代谢情况。以10mg/kg口服给药后1小时,血浆峰浓度为10μg/ml;血浆表观终末半衰期为7.5小时。给药后8小时内,血浆中的大部分放射性是由于母体药物。吡格列酮在血浆中与蛋白质高度结合;在浓度为0.1 - 10μg/ml时,只有1 - 2%是游离的。给胆管插管大鼠口服给药后3天内,分别有36%和15%的口服剂量在胆汁和尿液中回收。胆汁和尿液代谢物的模式相似。基于核磁共振光谱和质谱,共分离并鉴定出8种代谢物。吡啶环相邻碳原子羟基化产生的代谢物与葡萄糖醛酸(M7)或硫酸(M6)结合。乙基侧链末端碳原子羟基化的代谢物进一步氧化为羧酸衍生物(M3)。末端碳的氧化损失导致烟碱酸衍生物(M2),两个碳原子的损失导致相应的3 - 羟基吡啶(M9)衍生物,其以硫酸盐共轭物(M8)形式排泄。两种羧酸代谢物也与牛磺酸结合(M4和M5)。

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