首页> 外文期刊>Pharmacological reports: PR >Effect of p-isopropoxyphenylsuccinimide monohydrate on the anticonvulsant action of carbamazepine, phenobarbital, phenytoin and valproate in the mouse maximal electroshock-induced seizure model.
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Effect of p-isopropoxyphenylsuccinimide monohydrate on the anticonvulsant action of carbamazepine, phenobarbital, phenytoin and valproate in the mouse maximal electroshock-induced seizure model.

机译:对-异丙氧基苯基琥珀酰亚胺一水合物对小鼠最大电击诱发癫痫发作模型中卡马西平,苯巴比妥,苯妥英钠和丙戊酸盐的抗惊厥作用的影响。

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摘要

This study was designed to determine the effects of p-isopropoxyphenylsuccinimide monohydrate (IPPS) on the protective action of four classical antiepileptic drugs (carbamazepine, phenobarbital, phenytoin and valproate) in the mouse maximal electroshock seizure model. Tonic hind limb extension (seizure activity) was evoked in adult male albino Swiss mice by a current (sine-wave, 25 mA, 500 V, 50 Hz, 0.2 s stimulus duration) delivered via auricular electrodes. Acute adverse-effect profiles with respect to motor performance, long-term memory and skeletal muscular strength were measured along with total brain antiepileptic drug concentrations. Results indicate that IPPS administered intraperitoneally (ip) at doses of 75 and 150 mg/kg significantly elevated the threshold for electroconvulsions in mice. IPPS at lower doses of 18.75 and 37.5 mg/kg had no impact on the threshold for electroconvulsions in mice. Moreover, 37.5 mg/kg IPPS significantly enhanced the anticonvulsant activity of phenytoin and valproate, but not that of carbamazepine or phenobarbital, in the maximal electroshock seizure test in mice. IPPS (18.75 mg/kg) had no impact on the antiseizure action of phenytoin and valproate against maximal electroshock-induced seizures in mice. Pharmacokinetic experiments revealed that IPPS did not alter total brain concentrations of phenytoin or valproate in mice. In conclusion, the enhanced anticonvulsant action of phenytoin and valproate by IPPS in the mouse maximal electroshock-induced seizure model and lack of pharmacokinetic interactions make the combinations of IPPS with phenytoin and valproate of pivotal importance for further experimental and clinical studies. The combinations of IPPS with carbamazepine and phenobarbital are neutral from a preclinical viewpoint.
机译:本研究旨在确定对异丙氧基苯基琥珀酰亚胺一水合物(IPPS)对四种最大的抗癫痫药物(卡马西平,苯巴比妥,苯妥英钠和丙戊酸盐)在小鼠最大电击惊厥模型中的保护作用。在成年雄性白化病瑞士小鼠中,通过耳电极传递的电流(正弦波,25 mA,500 V,50 Hz,0.2 s刺激持续时间)诱发了强直后肢伸展(癫痫发作活动)。在运动表现,长期记忆和骨骼肌力量方面的急性不良反应概况以及总的脑部抗癫痫药浓度进行了测量。结果表明,以75和150 mg / kg的剂量腹膜内(ip)施用IPPS可以显着提高小鼠电惊厥的阈值。较低剂量的18.75和37.5 mg / kg IPPS对小鼠电惊厥阈值没有影响。此外,在小鼠最大的电击惊厥试验中,37.5 mg / kg IPPS显着增强了苯妥英和丙戊酸盐的抗惊厥活性,但未增强卡马西平或苯巴比妥的抗惊厥活性。 IPPS(18.75 mg / kg)对苯妥英和丙戊酸盐对小鼠最大的电击诱发的癫痫发作的抗癫痫发作作用没有影响。药代动力学实验表明,IPPS不会改变小鼠苯妥英或丙戊酸盐的总脑浓度。总之,IPPS在小鼠最大的电击诱发的癫痫发作模型中苯妥英和丙戊酸盐的抗惊厥作用增强,并且缺乏药代动力学相互作用,使得IPPS与苯妥英和丙戊酸盐的组合对于进一步的实验和临床研究至关重要。从临床前的观点来看,IPPS与卡马西平和苯巴比妥的组合是中性的。

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