Ho P C, Bourne D W, Triggs E J, Heazlewood V
Eur J Clin Pharmacol. 1984;27(4):441-6. doi: 10.1007/BF00549592.
The pharmacokinetics of canrenone and 'total metabolites' after base hydrolysis was studied in eight young volunteers following single and multiple dose oral administration of spironolactone. The plasma levels of canrenone and 'total metabolites' were fitted to a two-compartment open model with a first-order absorption process. From our eight normal subjects studied, the harmonic mean of the distributive half-life (t1/2 alpha) of canrenone was found to be 1.66 h, and the harmonic mean of the terminal elimination half-life (t1/2 beta) to be 22.6 h. Harmonic means of the distributive and elimination half-lives of 'total metabolites' after base hydrolysis were 2.48 h and 28.8 h respectively. The accumulation ratio of canrenone was 2.53, whereas that of 'total metabolites' was 1.89. Despite the fact that spironolactone has been shown to induce hepatic metabolism of other drugs, no evidence of autoinduction was noted in the present study, as plasma levels of canrenone and 'total metabolites' were found to obey a linear two-compartment model with reproducible absorption and disposition after single and multiple doses.
在8名年轻志愿者单次和多次口服螺内酯后,研究了坎利酮和碱水解后“总代谢产物”的药代动力学。坎利酮和“总代谢产物”的血浆水平采用具有一级吸收过程的二室开放模型进行拟合。在我们研究的8名正常受试者中,坎利酮分布半衰期(t1/2α)的调和均值为1.66小时,终末消除半衰期(t1/2β)的调和均值为22.6小时。碱水解后“总代谢产物”分布和消除半衰期的调和均值分别为2.48小时和28.8小时。坎利酮的蓄积比为2.53,而“总代谢产物”的蓄积比为1.89。尽管已证明螺内酯可诱导其他药物的肝代谢,但在本研究中未发现自身诱导的证据,因为单次和多次给药后,坎利酮和“总代谢产物”的血浆水平符合具有可重复吸收和处置的线性二室模型。