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NMDA-NR1 and AMPA-GluR4 receptor subunit immunoreactivities in the absence epileptic WAG/Rij rat.

机译:在没有癫痫性WAG / Rij大鼠的情况下,NMDA-NR1和AMPA-GluR4受体亚基的免疫反应性。

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From an age of 2-3 months onwards, the WAG/Rij rat, a genetic model for absence epilepsy, develops spike-wave discharges (SWD). SWD start in the peri-oral somatosensory cortex (POsc), whereas the rostral reticular thalamic nucleus (rRTN) contributes to synchronizing the thalamo-cortical oscillations. We hypothesize that N-methyl-D-aspartate (NMDA) and alpha-amino-3-hydroxy-5-methyl-4-isoazolepropionic acid (AMPA) receptors in the POsc and rRTN are involved in, respectively, the initiation and synchronization of SWD activity. As a first step to test this hypothesis, 3 months old non-epileptic and 6 months old absence epileptic WAG/Rij rats were compared with age-matched non-epileptic ACI control rats. The presence of NMDA and AMPA receptors was assessed by quantifying immunostaining for the NMDA-NR1 subunit and the AMPA-GluR4 subunit, respectively. In the POsc, WAG/Rij rats of both ages showed less NMDA-NR1 (-14.7%) and AMPA-GluR4 (-8.7%) subunit staining than ACI rats. From 3 to 6 months, AMPA-GluR4 subunit staining more strongly increased in the rRTN of WAG/Rij rats than of ACI rats. Further studies should support our assumption that in the POsc of the WAG/Rij rat, SWD start as a result of reduced NMDA- and AMPA-mediated glutamatergic stimulation, and that AMPA-GluR4 containing neurons in the rRTN of this rat strain contribute to synchronization of thalamic and cortical neurons.
机译:从2-3个月大的时候开始,WAG / Rij大鼠(一种无癫痫病的遗传模型)会产生尖峰波放电(SWD)。 SWD从口腔周围的体感皮质(POsc)开始,而眼部网状丘脑核(rRTN)有助于同步丘脑-皮质振荡。我们假设POsc和rRTN中的N-甲基-D-天冬氨酸(NMDA)和α-氨基-3-羟基-5-甲基-4-异唑丙酸(AMPA)受体分别参与了Psc和rRTN的引发和同步社署活动。作为检验该假设的第一步,将3个月大的非癫痫大鼠和6个月大的无癫痫WAG / Rij大鼠与年龄匹配的非癫痫ACI对照大鼠进行了比较。 NMDA和AMPA受体的存在分别通过量化NMDA-NR1亚基和AMPA-GluR4亚基的免疫染色来评估。在POsc中,两个年龄段的WAG / Rij大鼠均显示出比ACI大鼠少的NMDA-NR1(-14.7%)和AMPA-GluR4(-8.7%)亚基染色。在3到6个月中,WAG / Rij大鼠的rRTN中AMPA-GluR4亚基染色比ACI大鼠更强烈地增加。进一步的研究应支持我们的假设,即在WAG / Rij大鼠的POsc中,SWD是由于NMDA和AMPA介导的谷氨酸能刺激减少而开始的,并且该大鼠品系的rRTN中含有AMPA-GluR4的神经元有助于同步化。丘脑和皮层神经元。

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