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痕迹性眨眼条件反射后,豚鼠中间核突触超微结构的变化与反应幅度和时程有关。

Changes of synaptic ultrastructure in the guinea pig interpositus nuclei associate with response magnitude and timing after trace eyeblink conditioning.

机构信息

Department of Physiology, College of Basic Medical Sciences, Third Military Medical University, Chongqing 400038, PR China.

出版信息

Behav Brain Res. 2012 Jan 15;226(2):529-37. doi: 10.1016/j.bbr.2011.10.011. Epub 2011 Oct 14.

DOI:10.1016/j.bbr.2011.10.011
PMID:22019363
Abstract

Learning-induced changes of synaptic ultrastructure have long been proposed as a mechanism that may contribute to support memory formation. Although recent studies have demonstrated that the interpositus nuclei (IN) play critical role in acquisition and retention of trace conditioned eyeblink responses (CRs), there is now limited evidence associating trace eyeblink conditioning with changes of synaptic ultrastructure in the IN. Here, we investigated this issue using a transmission electron microscope. Adult guinea pigs were randomly allocated to either a trace-paired, delay-paired, unpaired or exposure-only condition. The IN tissue was taken for morphological analysis 1h after the completion of the tenth training session. Serial section analysis of synaptic ultrastructure revealed that trace eyeblink conditioning induced increases in the thickness of excitatory PSD. Classification of the synapses into shape subtypes indicated that the increased thickness of excitatory PSD was mainly attributable to increase in the concave- and convex-shaped synapses. On the contrary, trace eyeblink conditioning resulted in decreases in the thickness of inhibitory PSD. Specifically, these significant changes of PSD thickness were limited to occur in the animals with good behavioral performance. Further analysis of correlations between the trace CR performance and synaptic ultrastructural modifications showed that the thickness of excitatory PSD within the IN correlated with the peak amplitude of trace CRs, whereas the thickness of inhibitory PSD correlated with the onset latency. The present findings suggest that trace eyeblink conditioning induces structural plasticity in the IN, which may play a crucial role in acquiring and executing adaptive eyeblink movements.

摘要

学习诱导的突触超微结构变化长期以来一直被认为是一种可能有助于支持记忆形成的机制。尽管最近的研究表明中间核(IN)在痕迹条件性眨眼反应(CR)的获得和保持中起着关键作用,但目前与痕迹眨眼条件反射与 IN 中突触超微结构变化相关的证据有限。在这里,我们使用透射电子显微镜研究了这个问题。成年豚鼠被随机分配到痕迹配对、延迟配对、非配对或仅暴露条件。在第十次训练结束后 1 小时采集 IN 组织进行形态学分析。突触超微结构的连续切片分析显示,痕迹眨眼条件反射诱导兴奋性 PSD 厚度增加。将突触分类为形状亚型表明,兴奋性 PSD 的增加主要归因于凹形和凸形突触的增加。相反,痕迹眨眼条件反射导致抑制性 PSD 厚度减小。具体而言,这些 PSD 厚度的显著变化仅限于行为表现良好的动物中发生。对痕迹 CR 表现与突触超微结构变化之间相关性的进一步分析表明,IN 内兴奋性 PSD 的厚度与痕迹 CRs 的峰值幅度相关,而抑制性 PSD 的厚度与起始潜伏期相关。本研究结果表明,痕迹眨眼条件反射诱导 IN 中的结构可塑性,这可能在获得和执行适应性眨眼运动中起着关键作用。

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