Huang M L, Van Peer A, Woestenborghs R, De Coster R, Heykants J, Jansen A A, Zylicz Z, Visscher H W, Jonkman J H
Department of Pharmacokinetics and Drug Metabolism, Janssen Research Foundation, Beerse, Belgium.
Clin Pharmacol Ther. 1993 Sep;54(3):257-68. doi: 10.1038/clpt.1993.146.
The pharmacokinetics of a novel antipsychotic agent, risperidone, and the prolactin response were studied in 12 dextromethorphan-phenotyped healthy men after administration of 1 mg risperidone intravenously, intramuscularly, and orally. The formation of the equipotent major metabolite, 9-hydroxyrisperidone, exhibited CYP2D6-related polymorphism. The plasma area under the concentration-time curve from time zero to infinity ratio of 9-hydroxyrisperidone to risperidone averaged 3 (intravenous and intramuscular) and 6 (oral administration) in the extensive metabolizers and 0.2 in the poor metabolizers. Risperidone half-life was about 3 hours in extensive metabolizers and 22 hours in poor metabolizers. Risperidone absolute oral bioavailability was 66%. The pharmacokinetics of the active moiety (risperidone plus 9-hydroxyrisperidone) varied little among subjects (mean terminal half-life, 20 +/- 2 1/2 hours; absolute oral and intramuscular bioavailability, 100%). The prolactin response correlated best with the plasma active moiety, which showed little hysteresis. It is concluded that risperidone metabolic polymorphism on increased plasma prolactin is minimal and that the active moiety is clinically relevant.
在12名经右美沙芬表型鉴定的健康男性中,静脉注射、肌肉注射和口服1毫克利培酮后,研究了新型抗精神病药物利培酮的药代动力学及催乳素反应。等效主要代谢产物9-羟基利培酮的形成表现出CYP2D6相关的多态性。在广泛代谢者中,从时间零到无穷大的9-羟基利培酮与利培酮浓度-时间曲线下面积之比平均为3(静脉注射和肌肉注射)和6(口服),而在代谢不良者中为0.2。利培酮在广泛代谢者中的半衰期约为3小时,在代谢不良者中为22小时。利培酮的绝对口服生物利用度为66%。活性部分(利培酮加9-羟基利培酮)的药代动力学在受试者之间变化不大(平均终末半衰期,20±2.5小时;绝对口服和肌肉注射生物利用度,100%)。催乳素反应与血浆活性部分相关性最好,且几乎没有滞后现象。得出的结论是,利培酮代谢多态性对血浆催乳素升高的影响最小,且活性部分具有临床相关性。