首页> 外文期刊>The European Journal of Neuroscience >Rapid visual stimulation increases extrasynaptic glutamate receptor expression but not visual-evoked potentials in the adult rat primary visual cortex
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Rapid visual stimulation increases extrasynaptic glutamate receptor expression but not visual-evoked potentials in the adult rat primary visual cortex

机译:快速的视觉刺激会增加成年大鼠初级视觉皮层中突触外谷氨酸受体的表达,但不会增加视觉诱发电位

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The model most used to study synaptic plasticity, long-term potentiation (LTP), typically employs electrical stimulation of afferent fibers to induce changes in synaptic strength. It would be beneficial for understanding the behavioral relevance of LTP if a model could be developed that used more naturalistic stimuli. Recent evidence suggests that the adult visual cortex, previously thought to have lost most of its plasticity once past the critical period, is in fact capable of LTP-like changes in synaptic strength in response to sensory manipulations alone. In a preliminary study, we used a photic tetanus (PT; flashing checkerboard stimulus) to induce an enhancement of the visual-evoked potential (VEP) in the primary visual cortex of anesthetised adult rats. In the present study, we sought to compare the mechanisms of this novel sensory LTP with those of traditional electrical LTP. Unexpectedly, we found that sensory LTP was not induced as reliably as we had observed previously, as manipulations of several parameters failed to lead to significant potentiation of the VEP. However, we did observe a significant increase in visual cortex glutamate receptor expression on the surface of isolated synapses following the PT. Both AMPA receptor expression and N-methyl-d-aspartate (NMDA) receptor subunit expression were increased, specifically in extrasynaptic regions of the membrane, in PT animals. These results provide biochemical confirmation of the lack of change in the VEP in response to PT, but suggest that PT may prime synapses for strengthening upon appropriate subsequent activation, through the trafficking of glutamate receptors to the cell surface. We tested whether rapid visual stimulation could induce a sensory long-term potentiation. Visual evoked potentials were recorded from urethane-anesthetised rats and after a stable baseline period, a photic tetanus was delivered. There was no evidence of a sensory LTP despite a number of manipulations of experimental variables. However, visual stimulation increased extrasynaptic glutamate receptor expression (GluA1, GluN1) in the visual cortex suggesting that visual cortex was primed and that further visual stimulation across days is necessary for sensory LTP. ? 2012 Federation of European Neuroscience Societies and Blackwell Publishing Ltd.
机译:最常用于研究突触可塑性,长期增强(LTP)的模型通常采用传入纤维的电刺激来诱导突触强度的变化。如果可以开发出使用更自然主义刺激的模型,则对于理解LTP的行为相关性将是有益的。最近的证据表明,以前被认为一旦超过关键时期就已经丧失了大部分可塑性的成人视觉皮层,实际上能够单独响应感觉操纵而具有LTP样的突触强度变化。在一项初步研究中,我们使用了光合的破伤风(PT;闪烁的棋盘刺激)在麻醉的成年大鼠的初级视皮层中诱导了视觉诱发电位(VEP)的增强。在本研究中,我们试图比较这种新型感觉LTP与传统的电LTP的机制。出乎意料的是,我们发现感觉性LTP的诱导能力不如我们先前观察到的可靠,因为对多个参数的操纵未能导致VEP的显着增强。但是,我们确实观察到PT后分离的突触表面上视觉皮层谷氨酸受体的表达显着增加。在PT动物中,AMPA受体表达和N-甲基-d-天冬氨酸(NMDA)受体亚基表达均增加,特别是在膜的突触外区域。这些结果提供了对PT响应的VEP缺乏变化的生化证实,但是表明PT可以通过将谷氨酸受体转运至细胞表面而在适当的后续激活后引发突触增强。我们测试了快速视觉刺激是否可以诱导感觉长期增强。从氨基甲酸乙酯麻醉的大鼠中记录视觉诱发电位,并在稳定的基线期后,递送光气破伤风。尽管对实验变量进行了许多操作,但仍没有感觉LTP的证据。然而,视觉刺激增加了视觉皮层中突触后谷氨酸受体的表达(GluA1,GluN1),这表明视觉皮层已被启动,并且感官LTP需要整天的进一步视觉刺激。 ? 2012年欧洲神经科学学会联合会和布莱克韦尔出版有限公司。

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