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Anti-Epileptic Drug Combination Efficacy in an In Vitro Seizure Model – Phenytoin and Valproate Lamotrigine and Valproate

机译:体外癫痫发作模型中的抗癫痫药联合功效–苯妥英钠和丙戊酸盐拉莫三嗪和丙戊酸盐

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摘要

In this study, we investigated the relative efficacy of different classes of commonly used anti-epileptic drugs (AEDs) with different mechanisms of action, individually and in combination, to suppress epileptiform discharges in an in vitro model. Extracellular field potential were recorded in 450 μm thick transverse hippocampal slices prepared from juvenile Wistar rats, in which “epileptiform discharges” (ED’s) were produced with a high-K+ (8.5 mM) bicarbonate-buffered saline solution. Single and dual recordings in stratum pyramidale of CA1 and CA3 regions were performed with 3–5 MΩ glass microelectrodes. All drugs—lamotrigine (LTG), phenytoin (PHT) and valproate (VPA)—were applied to the slice by superfusion at a rate of 2 ml/min at 32°C. Effects upon frequency of ED’s were assessed for LTG, PHT and VPA applied at different concentrations, in isolation and in combination. We demonstrated that high-K+ induced ED frequency was reversibly reduced by LTG, PHT and VPA, at concentrations corresponding to human therapeutic blood plasma concentrations. With a protocol using several applications of drugs to the same slice, PHT and VPA in combination displayed additivity of effect with 50μM PHT and 350μM VPA reducing SLD frequency by 44% and 24% individually (n = 19), and together reducing SLD frequency by 66% (n = 19). 20μM LTG reduced SLD frequency by 32% and 350μM VPA by 16% (n = 18). However, in combination there was a supra-linear suppression of ED’s of 64% (n = 18). In another independent set of experiments, similar results of drug combination responses were also found. In conclusion, a combination of conventional AEDs with different mechanisms of action, PHT and VPA, displayed linear additivity of effect on epileptiform activity. More intriguingly, a combination of LTG and VPA considered particularly efficacious clinically showed a supra-additive suppression of ED’s. This approach may be useful as an in vitro platform for assessing drug combination efficacy.
机译:在这项研究中,我们调查了具有不同作用机制的不同类别的常用抗癫痫药(AED)在体外模型中单独或组合用于抑制癫痫样放电的相对功效。从幼年的Wistar大鼠制备的450μm厚的横向海马切片中记录了细胞外场电势,其中“癫痫状放电”(ED's)用高K + (8.5 mM)碳酸氢盐缓冲的盐水产生解。用3–5MΩ玻璃微电极对CA1和CA3区域的锥体层进行单记录和双记录。将所有药物-拉莫三嗪(LTG),苯妥英钠(PHT)和丙戊酸盐(VPA)-在32°C下以2 ml / min的速度通过灌注融合到切片上。评估了不同浓度,单独或组合使用LTG,PHT和VPA对ED频率的影响。我们证明,LTG,PHT和VPA可逆地降低高K + 诱导的ED频率,其浓度与人类治疗性血浆浓度相对应。通过在同一切片上多次使用药物的方案,PHT和VPA的组合显示了50μMPHT和350μMVPA的效果相加,分别使SLD频率降低了44%和24%(n = 19),并共同降低了SLD频率66%(n = 19)。 20μMLTG将SLD频率降低了32%,将350μMVPA降低了16%(n = 18)。但是,结合起来,ED的超线性抑制为64%(n = 18)。在另一组独立的实验中,也发现了药物联合反应的相似结果。总之,具有不同作用机制的传统AED,PHT和VPA的组合显示出对癫痫样活性的线性加和作用。更有趣的是,LTG和VPA的组合在临床上被认为特别有效,显示出对ED的超加性抑制。该方法可用作评估药物组合功效的体外平台。

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