癸酸氟哌啶醇在大鼠体内的药动学。

Y Oh-e, H Miyazaki, Y Matsunaga, M Hashimoto
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引用次数: 13

摘要

大鼠肌注癸酸氟哌啶醇和氟哌啶醇后血浆水平与氟哌啶醇的多室模型吻合较好,该模型是由氟哌啶醇及其癸酸酯水解处理的2室模型组合而成。计算参数表明,肌注的癸酸氟哌啶醇大部分水解为氟哌啶醇后被血液吸收,且吸收是限速的。区域淋巴结水平表明肌内注射的酯通过淋巴系统被吸收,在那里可能发生了氟哌啶醇水解。因此,淋巴系统中癸酸氟哌啶醇的缓慢进入和水解被认为是肌注癸酸氟哌啶醇后血浆活性蛋白水平持续升高的原因。
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Pharmacokinetics of haloperidol decanoate in rats.

Plasma levels of haloperidol decanoate and haloperidol after intramuscular administration of haloperidol decanoate in rats showed good fits with a multi-compartment model which was constituted by combination of 2-compartment models for the disposition of haloperidol and for its ester decanoate through the process of hydrolysis of the ester. Calculated parameters indicated that most of intramuscularly administered haloperidol decanoate is absorbed in blood after hydrolysis to haloperidol and the absorption is rate-limiting. Regional lymph node levels suggested that the intramuscularly administered ester was absorbed via the lymphatic system where the hydrolysis to haloperidol probably occurred. Thus, slow entrance and hydrolysis of haloperidol decanoate in the lymphatic system was considered to be the cause of sustained plasma levels of the active principle after intramuscular administration of haloperidol decanoate.

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