首页> 外文期刊>Brain research >Effect of levetiracetam on molecular regulation of hippocampal glutamate and GABA transporters in rats with chronic seizures induced by amygdalar FeCl3 injection.
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Effect of levetiracetam on molecular regulation of hippocampal glutamate and GABA transporters in rats with chronic seizures induced by amygdalar FeCl3 injection.

机译:左乙拉西坦对注射杏仁核FeCl3致慢性癫痫大鼠海马谷氨酸和GABA转运蛋白的分子调节作用。

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摘要

Enhancement of the glutamatergic excitatory synaptic transmission efficacy in the FeCl3 induced epilepsy model is associated with changes in the levels of glutamate and GABA transporter proteins. This study examined the effect of levetiracetam (LEV) on glutamate overflow and glutamate/GABA transporters expression in rats with epileptogenesis induced by the amygdalar injection of 1.0 microl of 100 mM FeCl3 (epileptic rat) and in control rats receiving amygdalar acidic saline injection (non-epileptic rat). In amygdalar acidic saline injected rats, 40 mM KCl-evoked glutamate overflow was significantly suppressed by both 32 and 100 microM LEV co-perfusion. In unilateral amygdalar FeCl3 injected rats, 32 microM LEV was ineffective, but the 100 microM LEV statistically suppressed glutamate overflow. Western blotting was employed to determine the hippocampal expression of glutamate/GABA transporters in epileptic or non-epileptic rats. The rats were treated for 14 days with 54 mg/kg LEV or vehicle intraperitoneally injection. Following 14 days of treatment, the ipsilateral hippocampus was removed for a Western blot analysis. In non-epileptic rats, the expression increased for all of the glutamate and GABA transporters (GLAST, GLT-1, EAAC-1, GAT-1 and GAT-3) while the glutamate transporter regulating protein (GTRAP3-18) decreased in comparison to those of normal rats that were treated with the vehicle. In epileptic rats receiving LEV, the EAAC-1 and GAT-3 levels increased while GTRAP3-18 (89%) decreased in comparison to those of the epileptic rats treated with the vehicle. GTRAP3-18 inhibitor regulates glutamate-binding affinity to EAAC-1. The anti-epileptic action of LEV may be partially due to a reduction of glutamate-induced excitotoxicity and an enhancement of the GABAergic inhibition as observed with the inhibitory effect on the 40 mM KCl-evoked glutamate overflow. These conclusions are supported by the increase in the expression of glial glutamate transporters (GLAST and GLT-1), and the increase in the expression of EAAC-1 and GAT-3 associated with a decrease in GTRAP3-18. The increased expression of EAAC-1 and the decreased expression of GTRAP3-18 in association with the up-regulation of GAT-3 due to such continual LEV administration was thus found to enhance GABA synthesis and reverse the transport of GABA both in non-epileptic and epileptic rats. The suppression of glutamate excitation and the enhancement of GABA inhibition in the rats with continual LEV administration is a result of the up-regulation of glutamate and GABA transporters with the down-regulation of GTRAP3-18. These observations together demonstrated the critical molecular mechanism of the anti-epileptic activity of LEV.
机译:FeCl3诱发的癫痫模型中谷氨酸能兴奋性突触传递功效的增强与谷氨酸和GABA转运蛋白水平的变化有关。这项研究检查了左乙拉西坦(LEV)对注射了1.0微升100 mM FeCl3的杏仁核所致癫痫的大鼠(癫痫大鼠)和接受杏仁核酸性盐水注射的对照大鼠(非谷氨酸溢流)和谷氨酸/ GABA转运蛋白表达的影响。 -癫痫大鼠)。在注射了杏仁核酸性盐水的大鼠中,32和100 microM LEV共灌注均显着抑制了40 mM KCl诱发的谷氨酸溢流。在单侧注入杏仁核FeCl3的大鼠中,32 microM LEV无效,但100 microM LEV在统计学上抑制了谷氨酸的溢出。使用蛋白质印迹法确定癫痫或非癫痫大鼠中谷氨酸/ GABA转运蛋白的海马表达。用54mg / kg LEV或媒介物腹膜内注射治疗大鼠14天。治疗14天后,取出同侧海马进行Western印迹分析。在非癫痫大鼠中,所有谷氨酸和GABA转运蛋白(GLAST,GLT-1,EAAC-1,GAT-1和GAT-3)的表达均增加,而谷氨酸转运蛋白调节蛋白(GTRAP3-18)则下降。与用媒介物治疗的正常大鼠与接受媒介物治疗的癫痫大鼠相比,接受LEV的癫痫大鼠的EAAC-1和GAT-3水平升高,而GTRAP3-18降低(89%)。 GTRAP3-18抑制剂调节对EAAC-1的谷氨酸结合亲和力。 LEV的抗癫痫作用可能部分是由于对40 mM KCl引起的谷氨酸溢流的抑制作用所观察到的,谷氨酸诱导的兴奋性毒性的降低和GABA能抑制的增强。这些结论得到神经胶质谷氨酸转运蛋白(GLAST和GLT-1)表达的增加以及EAAC-1和GAT-3表达的增加与GTRAP3-18减少相关的支持。因此发现,由于这种持续的LEV给药,EAAC-1表达的增加和GTRAP3-18表达的减少与GAT-3的上调相关,在非癫痫病中均能增强GABA的合成并逆转GABA的转运。和癫痫大鼠。连续LEV给药对大鼠谷氨酸兴奋的抑制作用和对GABA抑制作用的增强是谷氨酸和GABA转运蛋白上调而GTRAP3-18下调的结果。这些观察结果共同证明了LEV抗癫痫活性的关键分子机制。

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