首页> 美国卫生研究院文献>The Journal of Neuroscience >Impaired Feedforward Inhibition of the Thalamocortical Projection in Epileptic Ca2+ Channel Mutant Mice tottering
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Impaired Feedforward Inhibition of the Thalamocortical Projection in Epileptic Ca2+ Channel Mutant Mice tottering

机译:癫痫的Ca2 +通道突变小鼠的丘脑皮质投射的前馈抑制能力减弱

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摘要

The tottering (tg) mice have a mutation in the CaV2.1 (P/Q-type) voltage-dependent Ca2+ channel α12.1 subunit gene. tg mice show not only cerebellar ataxia but also absence epilepsy, which begins at ∼3 weeks of age and persists throughout life. Similarities in EEG and sensitivity to antiepileptic drugs suggest that tg mice are a good model for human absence epilepsy. Although imbalance between excitatory and inhibitory activity in the thalamocortical network is thought to contribute to the pathogenesis of absence epilepsy, the effect of the mutation on thalamocortical synaptic responses remains unknown. Here we showed imbalanced impairment of inhibitory synaptic responses in tg mice using brain slice preparations. Somatosensory thalamocortical projection makes not only monosynaptic glutamatergic connections but also disynaptic GABAergic connections, which mediate feedforward inhibition, onto layer IV neurons. In tg mice, IPSC amplitudes recorded from layer IV pyramidal cells of the somatosensory cortex in response to thalamic stimulation became disproportionately reduced compared with EPSC amplitudes at later developmental stages (postnatal days 21–30). Similar results were obtained by local stimulation of layer IV pyramidal neurons. However, IPSC reduction was not seen in layer V pyramidal neurons of epileptic tg mice or in layer IV pyramidal neurons of younger tg mice before the onset of epilepsy (postnatal days 14–16). These results showed that the feedforward inhibition from the thalamus to layer IV neurons of the somatosensory cortex was severely impaired in tg mice and that the impairment of the inhibitory synaptic transmission was correlated to the onset of absence epilepsy.
机译:蹒跚(tg)小鼠的CaV2.1(P / Q型)电压依赖性Ca 2 + 通道α12.1亚基基因发生突变。 tg小鼠不仅表现出小脑性共济失调,而且还表现出无癫痫病,这种病始于约3周龄,并持续一生。脑电图的相似性和对抗癫痫药的敏感性表明,tg小鼠是人类失神癫痫的良好模型。尽管认为丘脑皮质网络中兴奋性和抑制活性之间的失衡是导致癫痫发作的原因,但突变对丘脑皮质突触反应的影响尚不清楚。在这里,我们显示了使用脑片制剂在tg小鼠中抑制突触反应的不平衡损伤。体感丘脑皮质投射不仅使单突触的谷氨酸能连接,而且使介导前馈抑制的突触的GABA能连接到IV层神经元上。在tg小鼠中,响应于丘脑刺激,从体感皮层的IV层锥体细胞记录的IPSC幅度与发育后期(出生后21-30天)的EPSC幅度相比成比例地降低。通过局部刺激第IV层锥体神经元获得了相似的结果。然而,癫痫发作之前(出生后14-16天),在癫痫tg小鼠的V层锥体神经元或年轻tg小鼠的IV层锥体神经元中未见IPSC降低。这些结果表明,在tg小鼠中,从丘脑到体感皮层的IV层神经元的前馈抑制作用严重受损,并且突触传递的抑制作用与缺乏癫痫发作有关。

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