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Copper Inhibits NMDA Receptor-Independent LTP and Modulates the Paired-Pulse Ratio after LTP in Mouse Hippocampal Slices

机译:铜抑制NMDA受体依赖性LTP并调节小鼠海马切片中LTP后的配对脉冲比率

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Copper misregulation has been implicated in the pathological processes underlying deterioration of learning and memory in Alzheimer's disease and other neurodegenerative disorders. Supporting this, inhibition of long-term potentiation (LTP) by copper (II) has been well established, but the exact mechanism is poorly characterized. It is thought that an interaction between copper and postsynaptic NMDA receptors is a major part of the mechanism; however, in this study, we found that copper (II) inhibited NMDA receptor-independent LTP in the CA3 region of hippocampal slices. In addition, in the CA3 and CA1 regions, copper modulated the paired-pulse ratio (PPR) in an LTP-dependent manner. Combined, this suggests the involvement of a presynaptic mechanism in the modulation of synaptic plasticity by copper. Inhibition of the copper-dependent changes in the PPR with cyclothiazide suggested that this may involve an interaction with the presynaptic AMPA receptors that regulate neurotransmitter release.
机译:铜失调与阿尔茨海默氏病和其他神经退行性疾病的学习和记忆能力下降的病理过程有关。支持这一点的研究已经很好地证实了铜(II)对长期增强(LTP)的抑制作用,但是确切的机理尚不明确。据认为,铜和突触后NMDA受体之间的相互作用是该机制的主要部分。然而,在这项研究中,我们发现铜(II)抑制海马切片CA3区的NMDA受体非依赖性LTP。此外,在CA3和CA1区域,铜以LTP依赖的方式调制成对脉冲比(PPR)。综上所述,这暗示了突触前机制参与铜对突触可塑性的调节。环噻嗪对PPR中铜依赖性变化的抑制表明,这可能涉及与调节神经递质释放的突触前AMPA受体的相互作用。

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