A translational EEG-based approach to assess modulation of long-lasting NMDAR-dependent synaptic plasticity

A translational EEG-based approach to assess modulation of long-lasting NMDAR-dependent synaptic plasticity
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DOI:
10.1007/s00213-019-05341-w
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发表时间:
2019-12-01
期刊:
影响因子:
3.4
通讯作者:
Moskal, J. R.
Moskal, J. R.
中科院分区:
医学3区
文献类型:
--
作者:
Burgdorf, Jeffrey S.;Christian, E. P.;Moskal, J. R.

文献摘要

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研究背景NYX-2925是一种新型的N-甲基-D-天冬氨酸受体(NMDAR)调节剂,在体外可促进NMDAR依赖的长时程增强(LTP)和在体学习记忆。结果NYX-2925(1、10 mg/kg)可增加听觉强直后1h aLTP,aLTP由强直后140-180 ms的aLTP减去强直前差值波形测得。NYX-2925(0.1、1 mg/kg PO)促进通过差波形(即,偏差音减去标准音)。NYX-2925(0.1、1、10 mg/kg PO)也增强了静息态α qEEG功率。相反,NMDAR谷氨酸盐位点拮抗剂CPP(10 mg/kg IP)降低α功率和MMN,并产生与NYX-2925对aLTP.Conclusions相反的效果,这些数据表明,NYX-2925激活NMDAR增强体内突触可塑性,这可能既减少神经系统疾病的症状,又可作为药物作用的生物标志物。这是第一次证明了一个持久的(1小时后破伤风)的影响,NMDAR调制突触可塑性过程中,在体内使用非侵入性技术在自由行为的动物。
Background NYX-2925 is a novel N-methyl-D-aspartate receptor (NMDAR) modulator that has been shown to facilitate both NMDAR-dependent long-term potentiation (LTP) in vitro and learning and memory in vivo.Objective The present studies examine the effects of NYX-2925 on NMDAR-dependent auditory LTP (aLTP) in vivo.Methods NMDAR-dependent aLTP and NMDAR-dependent auditory mismatch negativity (MMN) was measured, as well as changes in resting-state qEEG power.Results NYX-2925 (1, 10 mg/kg PO) increased aLTP 1 h after auditory tetanus measured by the post-minus pre-tetanus difference waveform 140-180 ms post tone onset. NYX-2925 (0.1, 1 mg/kg PO) facilitated MMN measured by the difference waveform (i.e., deviant minus standard tones). NYX-2925 (0.1, 1, 10 mg/kg PO) also enhanced resting-state alpha qEEG power. Conversely, the NMDAR glutamate site antagonist CPP (10 mg/kg IP) reduces alpha power and MMN and produces an opposite effect as NYX-2925 on aLTP.Conclusions Together, these data suggest that the activation of the NMDAR by NYX-2925 enhances synaptic plasticity in vivo, which may both reduce symptoms of neurological disorders and serve as a biomarker for drug effects. This is the first demonstration of a long-lasting (1-h post-tetanus) effect of NMDAR modulation on synaptic plasticity processes in vivo using a noninvasive technique in freely behaving animals.