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苯巴比妥和卡马西平在3-巯基丙酸诱导的重复性癫痫发作中的海马药代动力学差异。

Differential hippocampal pharmacokinetics of phenobarbital and carbamazepine in repetitive seizures induced by 3-mercaptopropionic acid.

作者信息

Höcht Christian, Lazarowski Alberto, Gonzalez Nélida N, Mayer Marcos A, Opezzo Javier A W, Taira Carlos A, Girardi Elena

机构信息

Cátedra de Farmacología, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Junín 956, (C1113AAD) Buenos Aires, Argentina.

出版信息

Neurosci Lett. 2009 Mar 27;453(1):54-7. doi: 10.1016/j.neulet.2009.01.079. Epub 2009 Feb 4.

Abstract

Previous evidence has shown that chronic 3-mercaptopropionic acid (MP) administration induced brain P-glycoprotein (P-gp) overexpression altering target site accumulation of phenytoin. The aim of the present work was to assess the involvement of P-glycoprotein in carbamazepine and phenobarbital hippocampal pharmacokinetics in an experimental model of epilepsy, induced by repetitive MP administration. Seizures were induced in Wistar rats by injection of MP (45 mg kg(-1), i.p.) during 10 days. Control rats (C) were injected with saline solution. In order to monitor extracellular brain antiepileptic levels, a concentric probe was inserted into the hippocampus. Animals were administered with carbamazepine (10 mg kg(-1), i.v.) or phenobarbital (20 mg kg(-1), i.v.) 30 min after intraperitoneal administration of vehicle or nimodipine (2 mg kg(-1)), a well known P-glycoprotein inhibitor. No differences were found in hippocampal concentrations of carbamazepine comparing all groups. In vehicle pre-treated rats, hippocampal phenobarbital concentrations were lower in MP (maximal concentration, C(max): 6.0+/-0.6 microg ml(-1), p<0.05) than in C animals (C(max): 9.4+/-0.9 microg ml(-1)). Control rats pre-treated with nimodipine showed similar results (C(max): 10.7+/-0.6 microg ml(-1)) than those pre-treated with vehicle. Nimodipine pre-treatment in MP rats enhanced hippocampal phenobarbital concentrations (C(max): 10.2+/-1.0 microg ml(-1), p<0.05) as compared with vehicle pre-treatment. Results of our work suggest that P-glycoprotein (P-gp) overexpression by repetitive seizures induced by MP administration does not modify brain bioavailability of carbamazepine. Conversely, hippocampal levels of phenobarbital are reduced in MP rats with regard to non-epileptic rats, suggesting a potential role of P-gp overexpression in pharmacoresistance to phenobarbital.

摘要

先前的证据表明,长期给予3-巯基丙酸(MP)可诱导脑P-糖蛋白(P-gp)过表达,从而改变苯妥英的靶位点蓄积。本研究的目的是在由重复给予MP诱导的癫痫实验模型中,评估P-糖蛋白在卡马西平和苯巴比妥海马体药代动力学中的作用。通过在10天内注射MP(45 mg kg(-1),腹腔注射)诱导Wistar大鼠癫痫发作。对照大鼠(C组)注射生理盐水。为了监测细胞外脑内抗癫痫药物水平,将同心探针插入海马体。在腹腔注射溶剂或尼莫地平(2 mg kg(-1))(一种众所周知的P-糖蛋白抑制剂)30分钟后,给动物静脉注射卡马西平(10 mg kg(-1))或苯巴比妥(20 mg kg(-1))。比较所有组,卡马西平的海马体浓度未发现差异。在溶剂预处理的大鼠中,MP组海马体苯巴比妥浓度(最大浓度,C(max):6.0±0.6 μg ml(-1),p<0.05)低于C组动物(C(max):9.4±0.9 μg ml(-1))。用尼莫地平预处理的对照大鼠显示出与用溶剂预处理的大鼠相似的结果(C(max):10.7±0.6 μg ml(-1))。与溶剂预处理相比,MP大鼠中尼莫地平预处理提高了海马体苯巴比妥浓度(C(max):10.2±1.0 μg ml(-1),p<0.05)。我们的研究结果表明,MP给药诱导的重复性癫痫发作导致的P-糖蛋白(P-gp)过表达不会改变卡马西平的脑生物利用度。相反,与非癫痫大鼠相比,MP大鼠海马体中苯巴比妥水平降低,表明P-gp过表达在对苯巴比妥的耐药性中可能起作用。

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