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Stimulus intensity-dependent modulations of hippocampal long-term potentiation by basolateral amygdala priming

机译:基底外侧杏仁核引发的海马长时程增强刺激强度依赖性调节

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摘要

There is growing realization that the relationship between memory and stress/emotionality is complicated, and may include both memory enhancing and memory impairing aspects. It has been suggested that the underlying mechanisms involve amygdala modulation of hippocampal synaptic plasticity, such as long-term potentiation (LTP). We recently reported that while in CA1 basolateral amygdala (BLA) priming impaired theta stimulation induced LTP, it enhanced LTP in the dentate gyrus (DG). However, emotional and stressfull experiences were found to activate synaptic plasticity within the BLA, raising the possibility that BLA modulation of other brain regions may be altered as well, as it may depend on the way the BLA is activated or is responding. In previous studies BLA priming stimulation was relatively weak (1 V, 50 μs pulse duration). In the present study we assessed the effects of two stronger levels of BLA priming stimulation (1 V or 2 V, 100 μs pulse duration) on LTP induction in hippocampal DG and CA1, in anesthetized rats. Results show that 1V-BLA priming stimulation enhanced but 2V-BLA priming stimulation impaired DG LTP; however, both levels of BLA priming stimulation impaired CA1 LTP, suggesting that modulation of hippocampal synaptic plasticity by amygdala is dependent on the degree of amygdala activation. These findings suggest that plasticity-induced within the amygdala, by stressful experiences induces a form of metaplasticity that would alter the way the amygdala may modulate memory-related processes in other brain areas, such as the hippocampus.
机译:越来越多的人意识到记忆与压力/情绪之间的关系很复杂,并且可能包括记忆增强和记忆受损两个方面。已经提出,潜在的机制涉及杏仁核对海马突触可塑性的调节,例如长期增强(LTP)。我们最近报道说,虽然在CA1基底外侧杏仁核(BLA)引发损伤theta刺激诱导的LTP,但它增强了齿状回(DG)的LTP。然而,发现情绪和压力充沛的经历会激活BLA内的突触可塑性,从而增加了其他大脑区域的BLA调节也可能改变的可能性,因为这可能取决于BLA的激活方式或反应方式。在先前的研究中,BLA启动刺激相对较弱(1 V,50μs脉冲持续时间)。在本研究中,我们评估了麻醉大鼠海马DG和CA1中两种较强水平的BLA启动刺激(1 V或2 V,脉冲持续时间为100μs脉冲)对LTP诱导的影响。结果表明,1V-BLA引发刺激增强,但2V-BLA引发刺激损害DG LTP。然而,两种水平的BLA启动刺激均会损害CA1 LTP,这表明杏仁核对海马突触可塑性的调节取决于杏仁核的活化程度。这些发现表明,通过压力经历在杏仁核内诱导的可塑性诱导了某种形式的可塑性,这将改变杏仁核调节其他大脑区域(例如海马体)中与记忆有关的过程的方式。

著录项

  • 作者

    Li, Zexuan; Richter-Levin, Gal;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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