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在小鼠最大电休克模型中对洛西加莫与传统抗癫痫药物相互作用的等效应线分析。

Isobolographic analysis of interactions between losigamone and conventional antiepileptic drugs in the mouse maximal electroshock model.

作者信息

Borowicz Kinga K, Kimber-Trojnar Zaneta, Ratnaraj Neville, Patsalos Philip N, Luszczki Jarogniew J, Czuczwar Stanislaw J

机构信息

Department of Pathophysiology, Lublin Medical University, Jaczewskiego 8, 20-090 Lublin, Poland.

出版信息

Eur Neuropsychopharmacol. 2007 Jan 15;17(2):94-101. doi: 10.1016/j.euroneuro.2006.02.005. Epub 2006 Mar 6.

Abstract

The aim of this study was the isobolographic evaluation of interactions between losigamone (LSG), valproate (VPA), carbamazepine (CBZ), phenytoin (PHT), and phenobarbital (PB) in the maximal electroshock (MES) test in mice. Electroconvulsions were produced by means of an alternating current (ear-clip electrodes, 0.2-s stimulus duration, and tonic hindlimb extension taken as the endpoint). Adverse effects were evaluated in the chimney test (motor coordination) and the passive avoidance task (long-term memory). Brain concentrations of antiepileptic drugs (AEDs) were measured by immunofluorescence or high-performance liquid chromatography. Isobolographic analysis indicated synergistic interactions between LSG and VPA. For example, in the proportion of 1:1 the theoretically calculated 50% effective dose for additivity (ED(50add)) was 138 mg/kg, while the experimentally derived ED(50) for the mixture (ED(50mix)) was 85.2 mg/kg. The difference was significant at p<0.001. LSG combined with CBZ or PHT showed additivity, whereas the combinations of LSG with PB were either additive, for the fixed ratios of 1:3 and 1:1, or antagonistic for the ratio of 3:1 (ED(50add)=18.4 mg/kg versus ED(50mix)=26.7 mg/kg, p<0.05). Impairment of long-term memory was noted only in the case of VPA given at its ED(50), however this AED did not affect motor performance. LSG, CBZ, PHT and PB (applied at their ED(50) values) and co-administration of LSG with conventional AEDs (including VPA) impaired neither motor performance nor long-term memory. LSG did not affect the brain concentration of VPA or PB, but significantly elevated the brain concentrations of CBZ and PHT. In contrast, VPA, CBZ and PHT significantly increased the brain concentration of LSG, indicating a pharmacokinetic contribution to the observed pharmacodynamic interactions. Although LSG exhibited some favorable pharmacodynamic interactions with various AEDs, these were complicated by pharmacokinetic interactions and emphasize the importance of measuring AED concentrations in studies designed to identify desirable AED combinations.

摘要

本研究的目的是在小鼠最大电休克(MES)试验中,采用等效应线图分析法评估洛西加莫(LSG)、丙戊酸盐(VPA)、卡马西平(CBZ)、苯妥英(PHT)和苯巴比妥(PB)之间的相互作用。通过交流电(耳夹电极,刺激持续时间0.2秒,以强直性后肢伸展作为终点)诱发惊厥。在烟囱试验(运动协调性)和被动回避任务(长期记忆)中评估不良反应。通过免疫荧光或高效液相色谱法测量抗癫痫药物(AEDs)的脑内浓度。等效应线图分析表明LSG和VPA之间存在协同相互作用。例如,在1:1的比例下,理论计算的相加50%有效剂量(ED(50add))为138mg/kg,而混合物的实验得出的ED(50)(ED(50mix))为85.2mg/kg。差异在p<0.001时具有显著性。LSG与CBZ或PHT联合显示相加作用,而LSG与PB的组合在固定比例1:3和1:1时为相加作用,在3:1比例时为拮抗作用(ED(50add)=18.4mg/kg对ED(50mix)=26.7mg/kg,p<0.05)。仅在给予VPA其ED(50)时观察到长期记忆受损,然而这种AED不影响运动表现。LSG、CBZ、PHT和PB(以其ED(50)值给药)以及LSG与传统AEDs(包括VPA)联合给药既不损害运动表现也不损害长期记忆。LSG不影响VPA或PB的脑内浓度,但显著提高CBZ和PHT的脑内浓度。相反,VPA、CBZ和PHT显著增加LSG的脑内浓度,表明药代动力学对观察到的药效学相互作用有贡献。尽管LSG与各种AEDs表现出一些有利的药效学相互作用,但这些因药代动力学相互作用而变得复杂,并强调在旨在确定理想AED组合的研究中测量AED浓度的重要性。

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