Augustijns P, Peeters L, Croes K, Verbeeck R K
Laboratorium Farmacotechnologie en Biofarmacie, O&N, Gasthuisberg, Belgium.
Eur J Drug Metab Pharmacokinet. 1999 Jan-Mar;24(1):105-8. doi: 10.1007/BF03190018.
A qualitative kinetic study on the stereoselective hepatic metabolism of chloroquine was undertaken by separately incubating chloroquine enantiomers with rat liver microsomes. The dependency of desethylchloroquine formation on NADPH suggests a cytochrome P-450 isozyme catalysed metabolism. Over a wide concentration range (1-300 microM), chloroquine metabolism appeared not to follow simple Michaelis-Menten kinetics. The enantiomeric ratio (R/S) of desethylchloroquine was dependent on concentration, and ranged from 8 at 1 microM to 1 at 300 microM. Mutual enantiomer--enantiomer interaction studies at low concentration (1-5 microM) revealed that the formation of (R)-desethylchloroquine was strongly inhibited by (S)-chloroquine. The findings of the present study support the hypothesis that a high-affinity/low capacity enzyme is capable of stereoselective discrimination. At this point, it remains to be proven whether stereoselective metabolism and enantiomer-enantiomer interactions affect the in vivo disposition of chloroquine.
通过将氯喹对映体与大鼠肝微粒体分别孵育,对氯喹的立体选择性肝脏代谢进行了定性动力学研究。去乙基氯喹形成对NADPH的依赖性表明其代谢由细胞色素P-450同工酶催化。在较宽的浓度范围(1-300微摩尔)内,氯喹代谢似乎不遵循简单的米氏动力学。去乙基氯喹的对映体比率(R/S)取决于浓度,在1微摩尔时为8,在300微摩尔时为1。低浓度(1-5微摩尔)下的对映体-对映体相互作用研究表明,(S)-氯喹强烈抑制(R)-去乙基氯喹的形成。本研究结果支持以下假设:高亲和力/低容量酶能够进行立体选择性识别。目前,立体选择性代谢和对映体-对映体相互作用是否影响氯喹的体内处置仍有待证实。