Department of Pharmacology and Therapeutics, Trinity College, Dublin 2, Ireland.
Cereb Cortex. 2013 Apr;23(4):932-9. doi: 10.1093/cercor/bhs086. Epub 2012 Apr 5.
Both electrically induced synaptic long-term potentiation (LTP) and long-term depression have been extensively studied as models of the cellular basis of learning and memory mechanisms. Recently, considerable interest has been generated by the possibility that the activity-dependent persistent reversal of previously established synaptic LTP (depotentiation) may play a role in the time- and state-dependent erasure of memory. Here, we examined the requirement for glutamate receptor activation in experience-induced reversal of previously established LTP in the CA1 area of the hippocampus of freely behaving rats. Continuous exploration of non-aversive novelty for ~30 min, which was associated with hippocampal activation as measured by increased theta power in the electroencephalogram, triggered a rapid and persistent reversal of high frequency stimulation-induced LTP both at apical and basal synapses. Blockade of metabotropic glutamate (mGlu) receptors with mGlu5 subtype-selective antagonists, or N-methyl-D-aspartate (NMDA) receptors with GluN2B subunit-selective antagonists, prevented novelty-induced depotentiation. These findings strongly indicate that activation of both mGlu5 receptors and GluN2B-containing NMDA receptors is required for experience-triggered induction of depotentiation at CA3-CA1 synapses. The mechanistic concordance of the present and previous studies of experience-induced and electrically induced synaptic depotentiation helps to integrate our understanding of the neurophysiological underpinnings of learning and memory.
电诱导的突触长时程增强(LTP)和长时程抑制(LTD)已被广泛研究,作为学习和记忆机制的细胞基础模型。最近,人们对活动依赖性的先前建立的突触 LTP 持久逆转(去极化)的可能性产生了极大的兴趣,因为它可能在时间和状态依赖的记忆擦除中发挥作用。在这里,我们研究了在自由活动的大鼠海马 CA1 区,谷氨酸受体激活在经验诱导的先前建立的 LTP 逆转中的作用。持续探索约 30 分钟的非厌恶新奇性,这与脑电图中增加的θ功率所测量的海马激活有关,触发了高频刺激诱导的 LTP 在顶端和基底突触的快速和持久逆转。使用代谢型谷氨酸(mGlu)受体 mGlu5 亚型选择性拮抗剂或 N-甲基-D-天冬氨酸(NMDA)受体 GluN2B 亚单位选择性拮抗剂阻断 mGlu 受体,可防止新奇性诱导的去极化。这些发现强烈表明,mGlu5 受体和包含 GluN2B 的 NMDA 受体的激活对于 CA3-CA1 突触的经验触发的去极化诱导是必需的。本研究和先前的经验诱导和电诱导突触去极化研究在机制上的一致性有助于整合我们对学习和记忆的神经生理学基础的理解。