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首页> 外文期刊>The Journal of Physiology >Histamine H3 receptor activation decreases kainate-induced hippocampal gamma oscillations in vitro by action potential desynchronization in pyramidal neurons.
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Histamine H3 receptor activation decreases kainate-induced hippocampal gamma oscillations in vitro by action potential desynchronization in pyramidal neurons.

机译:组胺H3受体的激活通过锥体神经元中的动作电位去同步化减少了海藻酸盐诱导的海马γ振荡。

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The study of rhythmic electrical activity in slice preparations has generated important insights into neural network function. While the synaptic mechanisms involved in the generation of in vitro network oscillations have been studied widely, little is known about the modulatory influence exerted on rhythmic activity in neuronal networks by neuropeptides and biogenic amines. Gamma oscillations play an important role in cognitive processes and are altered or disrupted in disorders such as Alzheimer's disease (AD) and schizophrenia. Given the importance of gamma oscillations for learning, memory and cognition processes as well as the recent interest in histamine H(3) receptors in the development of pro-cognitive drugs to treat disorders such as AD and schizophrenia, it is relevant to study the impact of histaminergic mechanisms on network gamma oscillations. Here we show for the first time a modulation of gamma oscillation by histaminergic mechanisms. Selective activation of the H(3) receptor by R-alpha-methylhistamine significantly reduces the power of kainate-induced gamma oscillations, but not carbachol-induced gamma oscillations, in the rat hippocampal slice preparation without affecting oscillation frequency. This effect is neither caused by a decrease in excitatory or inhibitory postsynaptic currents, nor a decrease in cellular excitability. Instead, we find that the decrease in oscillation power following H(3) receptor activation results from a desynchronization of pyramidal neuron action potential firing with regard to the local field potential oscillation cycle. Our data provide a possible mechanism of action for histamine in regulating gamma oscillations in the hippocampal network.
机译:对切​​片制剂中节律性电活动的研究已产生了对神经网络功能的重要见解。虽然已经广泛研究了涉及体外网络振荡产生的突触机制,但是关于神经肽和生物胺对神经元网络的节律活动的调节作用知之甚少。伽玛振荡在认知过程中起着重要作用,并在阿尔茨海默氏病(AD)和精神分裂症等疾病中发生改变或破坏。鉴于伽马振荡对于学习,记忆和认知过程的重要性以及最近在开发用于治疗AD和精神分裂症等疾病的认知药物方面对组胺H(3)受体的兴趣,对研究影响至关重要网络伽马振荡的组织胺能机制在这里,我们首次展示了通过组胺能机制对伽马振荡的调制。 H-3受体的R-α-甲基组胺的选择性激活显着降低了大鼠海马体切片制备中的海藻酸盐诱导的伽马振动的能力,而不是卡巴胆碱引起的伽马振动的能力,而不会影响振荡频率。这种作用既不是由兴奋性或抑制性突触后电流的减少引起的,也不是由细胞兴奋性的降低引起的。相反,我们发现H(3)受体激活后振荡功率的降低是由锥体神经元动作电位触发的不同步引起的,其与局部场电位振荡周期有关。我们的数据为组胺调节海马网络中的伽马振荡提供了一种可能的作用机制。

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