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在自由活动的大鼠的齿状回中,应变、昼夜节律和刺激模式对 LTP 和并发 LTD 的差异影响。

Differential effects of strain, circadian cycle, and stimulation pattern on LTP and concurrent LTD in the dentate gyrus of freely moving rats.

机构信息

Center for Learning and Memory, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Hippocampus. 2012 Jun;22(6):1363-70. doi: 10.1002/hipo.20972. Epub 2011 Aug 18.

Abstract

Because long-term potentiation (LTP) and long-term depression (LTD) are thought to be involved in learning and memory, it is important to delineate factors that modulate their induction and persistence, especially as studied in freely moving animals. Here, we investigated the effects of rat strain, circadian cycle, and high-frequency stimulation (HFS) pattern on LTP and concurrently induced LTD in the dentate gyrus (DG). Comparison of two commonly used rat strains revealed that medial perforant path field EPSP-population spike (E-S) coupling and LTP were greater in Long-Evans than Sprague-Dawley rats. Circadian cycle experiments conducted in Long-Evans rats revealed greater E-S coupling and enhanced LTP during the dark phase. Interestingly, concurrent LTD in the lateral perforant path did not significantly differ across strains or circadian cycle. Testing HFS protocols during the dark phase revealed that theta burst stimulation (100 Hz bursts at 5 Hz intervals) was ineffective in eliciting either LTP or concurrent LTD in DG, whereas 400 Hz bursts delivered at theta (5 Hz) or delta (1 Hz) frequencies produced substantial LTP and concurrent LTD. Thus, these natural and experimental factors regulate granule cell excitability, and differentially affect LTP and concurrent LTD in the DG of freely moving rats. © 2011 Wiley Periodicals, Inc.

摘要

由于长时程增强(LTP)和长时程抑制(LTD)被认为与学习和记忆有关,因此重要的是要确定调节它们诱导和持续时间的因素,特别是在自由活动的动物中进行研究时。在这里,我们研究了大鼠品系、昼夜节律和高频刺激(HFS)模式对齿状回(DG)中 LTP 和同时诱导的 LTD 的影响。两种常用大鼠品系的比较表明,长爪沙鼠的内侧穿通通路场 EPSP-群体峰(E-S)耦合和 LTP 大于 Sprague-Dawley 大鼠。在长爪沙鼠中进行的昼夜节律实验表明,E-S 耦合更大,并且在暗相期间增强了 LTP。有趣的是,侧向穿通路径中的并发 LTD 在品系或昼夜节律周期之间没有显着差异。在暗相期间测试 HFS 方案表明,θ爆发刺激(5 Hz 间隔的 100 Hz 爆发)在 DG 中既不能引起 LTP 也不能引起同时的 LTD,而在θ(5 Hz)或δ(1 Hz)频率下传递的 400 Hz 爆发会产生大量的 LTP 和同时的 LTD。因此,这些自然和实验因素调节颗粒细胞的兴奋性,并以不同的方式影响自由活动大鼠 DG 中的 LTP 和同时的 LTD。©2011 Wiley Periodicals,Inc.

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