首页> 美国卫生研究院文献>The Journal of Physiology >Reduction of high-frequency network oscillations (ripples) and pathological network discharges in hippocampal slices from connexin 36-deficient mice
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Reduction of high-frequency network oscillations (ripples) and pathological network discharges in hippocampal slices from connexin 36-deficient mice

机译:减少连接蛋白36缺陷小鼠海马切片的高频网络振荡(波纹)和病理网络放电

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摘要

Recent evidence suggests that electrotonic coupling is an important mechanism for neuronal synchronisation in the mammalian cortex and hippocampus. Various types of network oscillations have been shown to depend on, or be sharpened by, gap junctions between inhibitory interneurones or excitatory projection cells. Here we made use of a targeted disruption of the gene coding for Cx36, a recently discovered neuronal gap junction subunit, to analyse its role in hippocampal network behaviour. Mice lacking Cx36 are viable and lack obvious morphological or behavioural abnormalities. Stimulation of afferent and efferent fibre pathways in hippocampal slices revealed a largely normal function of the synaptic circuitry, including tetanically evoked network oscillations. Spontaneous sharp waves and ripple (∼200 Hz) oscillations, however, occurred less frequently in slices from Cx36 -/- mice, and ripples were slightly slower than in littermate controls. Moreover, epileptiform discharges elicited by 4-aminopyridine were attenuated in slices from Cx36 -/- mice. Our findings indicate that Cx36 plays a role in the generation of certain forms of network synchronisation in the hippocampus, namely sharp wave-ripple complexes and hypersynchronous epileptiform discharges.
机译:最近的证据表明,电声耦合是哺乳动物皮质和海马神经元同步的重要机制。已经显示出各种类型的网络振荡依赖于抑制性神经元或兴奋性投射细胞之间的间隙连接,或者被其抑制。在这里,我们利用编码最近发现的神经元间隙连接亚基Cx36的基因的定向破坏来分析其在海马网络行为中的作用。缺乏Cx36的小鼠是可行的,并且缺乏明显的形态或行为异常。海马切片中传入和传出纤维路径的刺激揭示了突触电路的大部分正常功能,包括强直性诱发的网络振荡。但是,在Cx36-/-小鼠的切片中,自发的尖锐波和波纹(〜200 Hz)振荡的发生频率较低,并且波纹比同窝的对照组稍慢。此外,由4-氨基吡啶引起的癫痫样放电在来自Cx36-/-小鼠的切片中被减弱。我们的发现表明,Cx36在海马中某些形式的网络同步的产生中起作用,即尖锐的波纹状复合体和超同步性癫痫样放电。

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