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大鼠和人肝脏微粒体对单萜香芹酮的立体选择性代谢。

Stereoselective metabolism of the monoterpene carvone by rat and human liver microsomes.

作者信息

Jäger W, Mayer M, Platzer P, Reznicek G, Dietrich H, Buchbauer G

机构信息

Institute of Pharmaceutical Chemistry, University of Vienna, Austria.

出版信息

J Pharm Pharmacol. 2000 Feb;52(2):191-7. doi: 10.1211/0022357001773841.

Abstract

The large amounts of carvone enantiomers consumed as food additives and in dental formulations justifies the evaluation of their biotransformation pathway. The in-vitro metabolism of R-(-)- and S-(+)-carvone was studied in rat and human liver microsomes using chiral gas chromatography. Stereoselective biotransformation was observed when each enantiomer was incubated separately with liver microsomes. 4R, 6S-(-)-Carveol was NADPH-dependently formed from R-(-)-carvone, whereas 4S, 6S-(+)-carveol was produced from S-(+)-carvone. Metabolite formation followed Michaelis-Menten kinetics exhibiting a significant lower apparent Km (Michaelis-Menten Constant) for 4R, 6S-(-)-carveol compared with 4S, 6S-(+)-carveol in rat and human liver microsomes (28.4+/-10.6 microM and 69.4+/-10.3 microM vs 33.6+/-8-55 microM and 98.3+/-22.4 microM). The maximal formation rate (Vmax) determined in the same microsomal preparations yielded 30.2+/-5.0 and 32.3+/-3.9 pmol (mg protein)(-1) min(-1) in rat liver and 55.3+/-5.7 and 65.2+/-4.3 pmol (mg protein)(-1) min(-1) in human liver microsomes. Phase II conjugation of the carveol isomers by rat and human liver microsomes in the presence of UDPGA (uridine S'-diphosphogluaronic acid) only revealed glucuronidation of 4R, 6S-(-)-carveol. Vmax for glucuronide formation was more than 4-fold higher in the rat liver compared with human liver preparations (185.9+/-34.5 and 42.6+/-7.1 pmol (mg protein)(-1) min(-1), respectively). Km values, however, showed no species-related difference (13.9+/-4.1 microM and 10.2+/-2.2 microM). This study demonstrated stereoselectivity in phase-I and phase-II metabolism for R-(-)- and S-(+)-carvone and might be predictive for carvone biotransformation in man.

摘要

大量作为食品添加剂和用于牙科配方中的香芹酮对映体使得对其生物转化途径进行评估成为必要。使用手性气相色谱法研究了R-(-)-和S-(+)-香芹酮在大鼠和人肝微粒体中的体外代谢。当将每种对映体分别与肝微粒体一起温育时,观察到了立体选择性生物转化。4R, 6S-(-)-香芹醇由R-(-)-香芹酮经NADPH依赖性形成,而4S, 6S-(+)-香芹醇由S-(+)-香芹酮产生。代谢物形成遵循米氏动力学,在大鼠和人肝微粒体中,4R, 6S-(-)-香芹醇的表观Km(米氏常数)显著低于4S, 6S-(+)-香芹醇(分别为28.4±10.6 μM和69.4±10.3 μM,对比33.6±8 - 55 μM和98.3±22.4 μM)。在相同的微粒体制剂中测定的最大形成速率(Vmax)在大鼠肝中为30.2±5.0和32.3±3.9 pmol (mg蛋白)-1 min-1,在人肝微粒体中为55.3±5.7和65.2±4.3 pmol (mg蛋白)-1 min-1。在UDPGA(尿苷S'-二磷酸葡糖醛酸)存在下,大鼠和人肝微粒体对香芹醇异构体的II相结合仅显示4R, 6S-(-)-香芹醇的葡糖醛酸化。与人类肝脏制剂相比,大鼠肝脏中葡糖醛酸苷形成的Vmax高出4倍多(分别为185.9±34.5和42.6±7.1 pmol (mg蛋白)-1 min-1)。然而,Km值未显示出种属相关差异(13.9±4.1 μM和10.2±2.2 μM)。本研究证明了R-(-)-和S-(+)-香芹酮在I相和II相代谢中的立体选择性,并且可能对人体中香芹酮的生物转化具有预测性。

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