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Kainate receptors and rhythmic activity in neuronal networks: hippocampal gamma oscillations as a tool

机译:海藻酸受体和神经元网络中的节律活动:海马伽马振荡作为一种工具

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摘要

Rhythmic electrical activity is ubiquitous in neuronal networks of the brain and is implicated in a multitude of different processes. A prominent example in the healthy brain is electrical oscillations in the gamma-frequency band (20–80 Hz) in hippocampal and neocortical networks, which play an important role in learning, memory and cognition. An example in the pathological brain is electrographic seizures observed in certain types of epilepsy. Interestingly the activation of kainate receptors (KARs) plays an important role in synaptic physiology and plasticity, and can generate both gamma oscillations and electrographic seizures. Electrophysiological recordings of extracellular gamma oscillations and intracellular currents in a hippocampal slice combined with computer modelling can shed light on the expression loci of KAR subunits on single neurones and the distinct roles subunits play in rhythmic activity in the healthy and the pathologicalal brain. Using this approach in wild-type (WT) and KAR knockout mice it has been shown that KAR subunits GluR5 and GluR6 have similar functions during gamma oscillations and epileptiform bursts and that small changes in the overall activity in the hippocampal area CA3 can tilt the balance between excitation and inhibition and cause the neuronal network to switch from gamma oscillations to epileptiform bursts.
机译:节律性电活动在大脑的神经元网络中无处不在,并涉及许多不同的过程。在健康的大脑中,一个突出的例子是海马和新皮层网络的伽马频带(20–80 Hz)中的电振荡,这在学习,记忆和认知中起着重要作用。病理性大脑中的一个例子是在某些类型的癫痫中观察到的电子照相癫痫发作。有趣的是,红藻氨酸受体(KARs)的激活在突触生理和可塑性中起重要作用,并且可以产生伽马振荡和电图发作。海马切片中细胞外γ振荡和细胞内电流的电生理记录与计算机建模相结合,可以揭示单个神经元上KAR亚基的表达位点,以及亚基在健康和病理性脑的节律活动中发挥的独特作用。使用这种方法在野生型(WT)和KAR基因敲除小鼠中,已证明KAR亚基GluR5和GluR6在伽马振荡和癫痫样爆发期间具有相似的功能,海马区CA3整体活动的微小变化会倾斜平衡刺激和抑制之间的关系,并导致神经网络从伽马振荡转换为癫痫样爆发。

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