氯氮平对纹状体D(2)多巴胺受体的饱和作用。

S. Nyberg, Y. Chou, C. Halldin
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引用次数: 13

摘要

正电子发射断层扫描(PET)研究表明,氯氮平治疗的精神分裂症患者纹状体D2多巴胺受体占用率低。本初步研究的目的是探讨这种低受体占用是否确实代表纹状体D2多巴胺受体在氯氮平作用下的部分饱和。3只麻醉食蟹猴在基线和静脉注射氯氮平1.5 mg/kg和18.5 mg/kg后,在一天内用PET和[11C]氯氯pride检查。估计相应的人类口服剂量约为。210毫克/天和2800毫克/天。D2多巴胺受体占用率采用平衡比分析计算,当总剂量为1.5 mg/kg时为54 ~ 58%,当总剂量为20 mg/kg时为87 ~ 89%。计算最大入住率为93%。我们得出结论,pet测量的D2多巴胺受体占用氯氮平可以使用基于质量作用定律的模型来描述,该模型先前在常规抗精神病药物中得到验证。因此,足够大剂量的氯氮平有望使纹状体D2多巴胺受体完全占据。这些发现进一步支持了我们之前的发现,即在标准剂量氯氮平治疗的患者中D2多巴胺受体占用率低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Saturation of striatal D(2) dopamine receptors by clozapine.
Positron emission tomography (PET) studies have demonstrated low striatal D2 dopamine receptor occupancy in clozapine-treated schizophrenic patients. The aim of this pilot study was to explore if this low receptor occupancy indeed represents partial saturability of striatal D2 dopamine receptors by clozapine. Three anaesthetized Cynomolgus monkeys were examined during one day with PET and [11C]raclopride at baseline and after intravenous injections of clozapine 1.5 mg/kg followed by 18.5 mg/kg. The estimated corresponding human oral doses were approx. 210 mg/d and 2800 mg/d. D2 dopamine receptor occupancy was calculated using an equilibrium-ratio analysis and ranged from 54 to 58% after 1.5 mg/kg and 87 to 89% after the total dose 20 mg/kg. The calculated maximal occupancy was 93%. We conclude that PET-measured D2 dopamine receptor occupancy by clozapine can be described using a model based on the law of mass action, previously validated for conventional antipsychotics. Therefore, sufficiently high doses of clozapine are expected to produce complete striatal D2 dopamine receptor occupancy. The findings further support our previous findings of low D2 dopamine receptor occupancy in patients treated with standard doses of clozapine.
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