Rema V, Armstrong-James M, Ebner F F
Institute for Developmental Neuroscience, John F. Kennedy Center, Vanderbilt University, Nashville, Tennessee 37203, USA.
J Neurosci. 1998 Dec 1;18(23):10196-206. doi: 10.1523/JNEUROSCI.18-23-10196.1998.
The effect of blocking NMDA glutamate receptors in adult rat cortex on experience-dependent synaptic plasticity of barrel cortex neurons was studied by infusing D-AP5 with an osmotic minipump over barrel cortex for 5 d of novel sensory experience. In acute pilot studies, 500 microM D-AP5 was shown to specifically suppress NMDA receptor (NMDAR)-dependent responses of single cells in cortical layers I-IV. To induce plasticity, all whiskers except D2 and D1 were cut close to the face 1 d after pump insertion. The animals were housed with 2 cage mates before recording 4 d later. This pairing of two whiskers for several days in awake animals generates highly significant biases in responses from D2 layer IV (barrel) cells to the intact D1 whisker as opposed to the cut D3 whisker. D-AP5 completely prevented the D1/D3 surround whisker bias from occurring in the D2 barrel cells (p > 0.6 for D1 > D3, Wilcoxon). Fast-spike and slow-spike barrel cells were affected equally, suggesting parity for inhibitory and excitatory cell plasticity. D-AP5 only partially suppressed the D1/D3 bias in supragranular layers (layers II-III) in the same penetrations (p < 0.042 for D1 > D3). In control animals, the inactive L-AP5 isomer allowed the bias to develop normally toward the intact surround whisker (p < 0.001 for D1 > D3) for cells in all layers. We conclude that experience-dependent synaptic plasticity of mature barrel cortex is cortically dependent and that modification of local cortical NMDARs is necessary for its expression.
通过用渗透微型泵在桶状皮层注入D-AP5持续5天的新感觉体验,研究了阻断成年大鼠皮层中的NMDA谷氨酸受体对桶状皮层神经元经验依赖性突触可塑性的影响。在急性预实验中,500 microM的D-AP5被证明能特异性抑制皮层I-IV层单细胞的NMDA受体(NMDAR)依赖性反应。为了诱导可塑性,在插入泵1天后,除D2和D1之外的所有触须都在靠近面部处被剪掉。在4天后记录之前,将动物与2个笼伴饲养在一起。在清醒动物中,将两根触须配对几天会使D2层IV(桶状)细胞对完整的D1触须与被剪掉的D3触须的反应产生高度显著的偏差。D-AP5完全阻止了D1/D3周围触须偏差在D2桶状细胞中出现(D1>D3时p>0.6,Wilcoxon检验)。快速发放和慢速发放的桶状细胞受到的影响相同,表明抑制性和兴奋性细胞可塑性相当。在相同的穿透中,D-AP5仅部分抑制了颗粒上层(II-III层)中的D1/D3偏差(D1>D3时p<0.042)。在对照动物中,无活性的L-AP5异构体使所有层的细胞对完整的周围触须的偏差正常发展(D1>D3时p<0.001)。我们得出结论,成熟桶状皮层的经验依赖性突触可塑性是皮层依赖性的,并且局部皮层NMDAR的修饰对于其表达是必要的。