Lennard M S, Tucker G T, Silas J H, Freestone S, Ramsay L E, Woods H F
Clin Pharmacol Ther. 1983 Dec;34(6):732-7. doi: 10.1038/clpt.1983.242.
The hypothesis that variability in metoprolol metabolism stereoselectivity is related to debrisoquin oxidation phenotype was tested in six extensive (EM) and six poor (PM) debrisoquin metabolizers. In EM, plasma AUCs for (S)-metoprolol were 35% higher than for (R)-metoprolol, whereas in PM, AUCs for (S)-metoprolol were lower than for (R)-metoprolol. AUCs for total metoprolol correlated with the ratio of (S)- to (R)-metoprolol AUC. The renal clearance of metoprolol was also stereoselective but to the same extent in both EM and PM. Findings suggest that the enzyme system responsible for polymorphic oxidation of the debrisoquin-type is stereoselective. The relation between log total metoprolol plasma concentration and response (beta-blockade) was shifted to the right in PM relative to EM, which is compatible with a difference in pharmacologic activity of metoprolol enantiomers. Kinetic predictions based on total drug measurements will tend to overestimate dynamic differences between EM and PM, but the magnitude of the error is relatively small, and, in absolute terms, there is a large difference in pharmacologic activity between the phenotypes (beta-blockade at 24 hr: EM = 5.3 +/- 5.6%; PM = 18.9 +/- 3.8%).
在6名异喹胍代谢快型(EM)和6名异喹胍代谢慢型(PM)受试者中,对美托洛尔代谢立体选择性的变异性与异喹胍氧化表型相关这一假设进行了检验。在EM中,(S)-美托洛尔的血浆AUC比(R)-美托洛尔高35%,而在PM中,(S)-美托洛尔的AUC低于(R)-美托洛尔。总美托洛尔的AUC与(S)-美托洛尔和(R)-美托洛尔AUC的比值相关。美托洛尔的肾清除率也具有立体选择性,但在EM和PM中程度相同。研究结果表明,负责异喹胍型多态性氧化的酶系统具有立体选择性。相对于EM,PM中总美托洛尔血浆浓度对数与反应(β受体阻滞)之间的关系向右偏移,这与美托洛尔对映体的药理活性差异相符。基于总药物测量的动力学预测往往会高估EM和PM之间的动态差异,但误差幅度相对较小,而且从绝对值来看,不同表型之间的药理活性存在很大差异(24小时时的β受体阻滞:EM = 5.3±5.6%;PM = 18.9±3.8%)。