首页> 美国卫生研究院文献>The Journal of Neuroscience >Basolateral Amygdala Inputs to the Medial Entorhinal Cortex Selectively Modulate the Consolidation of Spatial and Contextual Learning
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Basolateral Amygdala Inputs to the Medial Entorhinal Cortex Selectively Modulate the Consolidation of Spatial and Contextual Learning

机译:基底外侧杏仁核输入到内侧内嗅皮层选择性地调节空间和上下文学习的巩固。

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摘要

Although evidence suggests that the basolateral amygdala (BLA) and dorsal hippocampus (DH) work together to influence the consolidation of spatial/contextual learning, the circuit mechanism by which the BLA selectively modulates spatial/contextual memory consolidation is not clear. The medial entorhinal cortex (mEC) is a critical region in the hippocampus-based system for processing spatial information. As an efferent target of the BLA, the mEC is a candidate by which the BLA influences the consolidation of such learning. To address several questions regarding this issue, male Sprague Dawley rats received optogenetic manipulations of different BLA afferents immediately after training in different learning tasks. Optogenetic stimulation of the BLA–mEC pathway using ChR2(E123A) after spatial and cued-response Barnes maze training enhanced and impaired retention, respectively, whereas optical inhibition of the pathway using eNpHR3.0 produced trends in the opposite direction. Similar stimulation of the BLA-posterior dorsal striatum pathway had no effect. BLA–mEC stimulation also selectively enhanced retention for the contextual, but not foot shock, component of a modified contextual fear-conditioning procedure. In both sets of experiments, only stimulation using bursts of 8 Hz light pulses significantly enhanced retention, suggesting the importance of driving activity in this frequency range. An 8 Hz stimulation of the BLA–mEC pathway increased local field potential power in the same frequency range in the mEC and in the DH. Together, the present findings suggest that the BLA modulates the consolidation of spatial/contextual memory via projections to the mEC and that activity within the 8 Hz range is critical for this modulation.>SIGNIFICANCE STATEMENT The mechanism by which the basolateral amygdala (BLA) influences the consolidation of spatial/contextual memory is unknown. Using an optogenetic approach with multiple behavioral procedures, we found that immediate posttraining 8 Hz stimulation of BLA projections to the medial entorhinal cortex (mEC) enhanced retention for spatial/contextual memory, impaired retention for cued-response memory, and had no effect on foot shock learning for contextual fear conditioning. Electrophysiological recordings confirmed that 8 Hz stimulation of this pathway increased activity in the 8 Hz range in the mEC and in the dorsal hippocampus, a region critical for spatial memory consolidation. This suggests that coordinated BLA activity with downstream regions in the 8 Hz activity range immediately after training is important for consolidation of multiple memory forms.
机译:尽管有证据表明基底外侧杏仁核(BLA)和背侧海马(DH)共同影响空间/上下文学习的巩固,但BLA选择性地调节空间/上下文记忆巩固的电路机制尚不清楚。内侧内嗅皮质(mEC)是基于海马的系统中用于处理空间信息的关键区域。作为BLA的传出目标,mEC是BLA影响这种学习巩固的候选者。为了解决有关此问题的几个问题,雄性Sprague Dawley大鼠在接受了不同的学习任务训练后立即接受了不同BLA传入基因的光遗传学操作。在Barnes迷宫训练和空间响应后,使用ChR2(E123A)对ChA2(E123A)的BLA–mEC途径的光遗传刺激分别增强和削弱了保留,而使用eNpHR3.0对该途径的光学抑制则产生相反的趋势。 BLA-后背纹状体途径的类似刺激无效。 BLA-mEC刺激还选择性地增强了对情景的恐惧感调节程序中的情景的保持力,而不是对脚底震动的保持力。在这两组实验中,只有使用8 Hz光脉冲的脉冲刺激才能显着提高保持力,这表明在此频率范围内进行驾驶活动非常重要。 BLA–mEC途径的8 Hz刺激在mEC和DH中的相同频率范围内增加了局部电场的潜在功率。总之,目前的发现表明,BLA通过对mEC的投影来调节空间/上下文记忆的巩固,并且8 Hz范围内的活动对该调节至关重要。>意义声明基底外侧杏仁核(BLA)影响空间/上下文记忆的巩固尚不清楚。使用具有多种行为程序的光遗传学方法,我们发现立即训练后的8 Hz刺激BLA投射到内侧内嗅皮层(mEC)增强了空间/上下文记忆的保持力,提示反应记忆的保持力受损,并且对脚没有影响休克学习,以适应情境恐惧。电生理记录证实,该途径的8 Hz刺激增加了mEC和背侧海马区(对于空间记忆巩固至关重要的区域)在8 Hz范围内的活性。这表明训练后立即在8 Hz活动范围内与下游区域协调BLA活动对于巩固多种记忆形式非常重要。

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