首页> 外文期刊>Nuclear Medicine and Biology >EFFECTS OF HALOPERIDOL AND COCAINE PRETREATMENTS ON BRAIN DISTRIBUTION AND KINETICS OF [C-11]METHAMPHETAMINE IN METHAMPHETAMINE SENSITIZED DOG - APPLICATION OF PET TO DRUG PHARMACOKINETIC STUDY
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EFFECTS OF HALOPERIDOL AND COCAINE PRETREATMENTS ON BRAIN DISTRIBUTION AND KINETICS OF [C-11]METHAMPHETAMINE IN METHAMPHETAMINE SENSITIZED DOG - APPLICATION OF PET TO DRUG PHARMACOKINETIC STUDY

机译:氟哌啶醇和可卡因预处理对甲基苯丙胺敏感犬中[C-11]甲基苯丙胺的脑分布和动力学的影响-PET在药物动力学研究中的应用

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摘要

Repeated administration of methamphetamine (MAP) causes behavioral sensitization in animals. We previously reported that the maximum accumulation level of [C-11]MAP in the MAP sensitized dog brain was 1.4 times higher than that in the control. In behavioral studies, haloperidol (a dopamine D-2 receptor antagonist) prevents MAP induced behavioral sensitization, and cocaine (a dopamine reuptake blocker) has the cross-behavioral sensitization with MAP. In the present study, to elucidate the relation between the MAP induced behavioral sensitization and the pharmacokinetics of MAP, we investigated the effects of haloperidol and cocaine pretreatments on brain regional distribution and kinetics of [C-11]MAP using positron emission tomography (PET). A significant increase of [C-11]MAP uptake into the sensitized dog brain was prevented by haloperidol and cocaine pretreatments. These pharmacokinetic changes were not due to the changes in the rate of MAP metabolism. These results suggest haloperidol and cocaine can change the cerebral pharmacokinetic profile of MAP in the behavioral-sensitized dog. The variations of MAP-accumuation may affect the development or expression of MAP-induced behavioral sensitization. (C) 1997 Elsevier Science Inc. [References: 19]
机译:重复服用甲基苯丙胺(MAP)会引起动物行为过敏。我们先前曾报道,MAP致敏犬脑中[C-11] MAP的最大积累水平是对照组的1.4倍。在行为研究中,氟哌啶醇(多巴胺D-2受体拮抗剂)可防止MAP引起的行为敏化,而可卡因(多巴胺再摄取阻滞剂)具有与MAP的交叉行为敏化作用。在本研究中,为了阐明MAP引起的行为敏化与MAP的药代动力学之间的关系,我们使用正电子发射断层扫描(PET)研究了氟哌啶醇和可卡因预处理对[C-11] MAP的大脑区域分布和动力学的影响。 。氟哌啶醇和可卡因预处理可防止[C-11] MAP摄入显着增加的犬脑。这些药代动力学变化不是由于MAP代谢速率的变化。这些结果表明氟哌啶醇和可卡因可以改变行为敏感犬的MAP的脑药代动力学特征。 MAP积累的变化可能会影响MAP诱导的行为敏化的发展或表达。 (C)1997 Elsevier Science Inc. [参考:19]

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