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CA1 至 perirhinal 皮质投射中突触可塑性和脑源性神经营养因子 (BDNF) 表达的频率依赖性变化。

Frequency-dependent changes in synaptic plasticity and brain-derived neurotrophic factor (BDNF) expression in the CA1 to perirhinal cortex projection.

机构信息

Department of Psychology, National University of Ireland Maynooth, Maynooth, Co. Kildare, Ireland.

出版信息

Brain Res. 2010 Apr 22;1326:51-61. doi: 10.1016/j.brainres.2010.02.065. Epub 2010 Feb 26.

Abstract

The ability of a synapse to be modulated both positively and negatively may be considered as a plausible model for the formation of learning and memory. The CA1 to perirhinal cortex projection is one of the multiple hippocampal-neocortical projections considered to be crucially involved in memory consolidation. We and others have previously demonstrated the ability of this projection to undergo long-term potentiation (LTP), however it is currently unknown whether the CA1-perirhinal projection can also be modified negatively (i.e. demonstrate long-term depression (LTD)). Here we investigate whether the CA1 to perirhinal projection in vivo in the anaesthetised animal shows a frequency-dependent pattern of synaptic plasticity that is coupled with brain-derived neurotrophic factor (BDNF) expression. Five groups of animals were used and each group underwent one of five different stimulation protocols (1 Hz, 5 Hz, 10 Hz, 50 Hz or 100 Hz) followed by post-stimulation recordings at baseline stimulation intensity (0.05 Hz) for 1h. Paired-pulse facilitation (PPF) recordings were taken both during baseline and 1h post-stimulation across six inter-pulse intervals (IPIs). Following all experiments, tissue samples were taken from area CA1 and perirhinal cortex from both the unstimulated and stimulated hemispheres of each brain and analysed for BDNF. Results indicated that LTP was observed following 50 Hz and 100 Hz HFS but LTD was not observed following any low-frequency stimulation. Pre- and post-stimulation PPF recordings revealed no difference for any of the stimulation frequencies, suggesting that the plasticity observed may involve a post- rather than a presynaptic mechanism. Finally, changes in BDNF were positively correlated with stimulation frequency in the area CA1 but the same pattern was not observed in the perirhinal cortex. These findings suggest that the CA1 to perirhinal cortex projection is electrophysiologically excitatory in nature and that changes in BDNF levels in this projection may not be predictive of changes in synaptic plasticity.

摘要

突触既能被正向调节,也能被负向调节,这一特性可能是学习和记忆形成的一个合理模型。CA1 到边缘皮层的投射是众多被认为对记忆巩固至关重要的海马新皮层投射之一。我们和其他人之前已经证明了这个投射有长时程增强(LTP)的能力,然而,目前还不清楚 CA1 到边缘皮层的投射是否也可以被负向调节(即表现出长时程抑制(LTD))。在这里,我们研究了麻醉动物体内 CA1 到边缘皮层的投射是否表现出与脑源性神经营养因子(BDNF)表达相关的、依赖频率的突触可塑性模式。使用了五组动物,每组动物接受了五种不同刺激方案(1 Hz、5 Hz、10 Hz、50 Hz 或 100 Hz)中的一种,然后在基础刺激强度(0.05 Hz)下进行 1 小时的刺激后记录。在基础状态和刺激后 1 小时,在六个脉冲间隔(IPI)上进行了成对脉冲易化(PPF)记录。在所有实验之后,从未刺激和刺激半球的 CA1 区和边缘皮层采集组织样本,并分析 BDNF。结果表明,50 Hz 和 100 Hz 的高频刺激(HFS)后观察到了 LTP,但任何低频刺激后都没有观察到 LTD。在刺激前后的 PPF 记录中,任何刺激频率都没有差异,这表明观察到的可塑性可能涉及突触后而不是突触前机制。最后,BDNF 的变化与 CA1 区的刺激频率呈正相关,但在边缘皮层中没有观察到相同的模式。这些发现表明,CA1 到边缘皮层的投射在电生理学上是兴奋性的,并且该投射中 BDNF 水平的变化可能不能预测突触可塑性的变化。

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