首页> 外文期刊>Behavioural Brain Research: An International Journal >Pharmacodynamic consequences of P-glycoprotein-dependent pharmacokinetics of risperidone and haloperidol in mice.
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Pharmacodynamic consequences of P-glycoprotein-dependent pharmacokinetics of risperidone and haloperidol in mice.

机译:利培酮和氟哌啶醇对小鼠的P-糖蛋白依赖性药代动力学的药效学后果。

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摘要

Efflux transporters, like P-glycoprotein (P-gp), may limit the access of drugs to the brain via the blood-brain barrier. The antipsychotic drug risperidone and its active metabolite 9-hydroxyrisperidone (paliperidone) are substrates of P-gp. Motor behavior of P-gp deficient mice (mdr1a/1b (-/-, -/-)) and wild type animals on a rotarod after acute doses of risperidone or haloperidol, a nonsubstrate of P-gp, were analysed aiming to show that P-gp substrate properties of an antipsychotic drug have functional consequences. Behavioral tests revealed dose-dependent effects of 0.3-3mg/kg risperidone in wild type animals 0.5-12h after i.p. injection of the drug. In knockout mice the 0.3mg/kg dose of risperidone was as effective as the 3mg/kg dose in wild type mice. A dose of 0.3mg/kg haloperidol, however, exhibited similar pharmacodynamic effects in both genotypes. Brain concentrations of risperidone plus 9-hydroxyrisperidone were 10-fold higher in knockout than in wild type animals whereas brain concentrations of haloperidol did not differ between the two genotypes. P-gp-dependent brain distribution kinetics and behavioral effects of risperidone give evidence that the expression of P-gp has an impact on psychotropic drug actions when treating patients with drugs that are substrates of P-gp.
机译:外排转运蛋白,如P-糖蛋白(P-gp),可能会限制药物通过血脑屏障进入大脑。抗精神病药利培酮及其活性代谢物9-羟基利培酮(帕潘立酮)是P-gp的底物。对P-gp缺陷小鼠(mdr1a / 1b(-/-,-/-))和野生型动物在急性剂量的利培酮或氟哌啶醇(一种非P-gp的底物)后的运动行为进行了分析,旨在表明抗精神病药的P-gp底物性质具有功能性后果。行为测试显示,腹腔注射后0.5-12小时,野生型动物中0.3-3mg / kg利培酮具有剂量依赖性。注射药物。在敲除小鼠中,0.3mg / kg的利培酮剂量与在野生型小鼠中的3mg / kg剂量一样有效。然而,氟哌啶醇的剂量为0.3mg / kg,在两种基因型中均表现出相似的药效学作用。基因敲除的利培酮和9-羟基利培酮的脑部浓度比野生型动物高10倍,而氟哌啶醇的脑部浓度在两种基因型之间没有差异。依赖于P-gp的大脑分布动力学和利培酮的行为效应提供了证据,证明当使用P-gp底物药物治疗患者时,P-gp的表达会影响精神药物的作用。

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