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Amygdala Dopamine Receptors Are Required for the Destabilization of a Reconsolidating Appetitive Memory

机译:杏仁核多巴胺受体是必需的用于重新整合的食欲记忆的不稳定作用

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摘要

Disrupting maladaptive memories may provide a novel form of treatment for neuropsychiatric disorders, but little is known about the neurochemical mechanisms underlying the induction of lability, or destabilization, of a retrieved consolidated memory. Destabilization has been theoretically linked to the violation of expectations during memory retrieval, which, in turn, has been suggested to correlate with prediction error (PE). It is well-established that PE correlates with dopaminergic signaling in limbic forebrain structures that are critical for emotional learning. The basolateral amygdala is a key neural substrate for the reconsolidation of pavlovian reward-related memories, but the involvement of dopaminergic mechanisms in inducing lability of amygdala-dependent memories has not been investigated. Therefore, we tested the hypothesis that dopaminergic signaling within the basolateral amygdala is required for the destabilization of appetitive pavlovian memories by investigating the effects dopaminergic and protein synthesis manipulations on appetitive memory reconsolidation in rats. Intra-amygdala administration of either the D1-selective dopamine receptor antagonist or the D2-selective dopamine receptor antagonist raclopride prevented memory destabilization at retrieval, thereby protecting the memory from the effects of an amnestic agent, the protein synthesis inhibitor anisomycin. These data show that dopaminergic transmission within the basolateral amygdala is required for memory labilization during appetitive memory reconsolidation.
机译:破坏适应不良的记忆可能会为神经精神疾病提供一种新颖的治疗方法,但对引起恢复的合并记忆的不稳定性或不稳定的潜在神经化学机制知之甚少。理论上,不稳定已与内存检索过程中违反预期有关,而后者又被认为与预测误差(PE)相关。众所周知,体育运动与边缘前脑结构中的多巴胺能信号传导有关,这对情感学习至关重要。基底外侧杏仁核是重塑帕夫洛夫奖赏相关记忆的关键神经底物,但尚未研究多巴胺能机制在诱发杏仁核依赖性记忆的不稳定性中的作用。因此,我们通过研究多巴胺能和蛋白质合成操作对大鼠食性记忆再巩固的影响,检验了假设的假设是,基底外侧杏仁核内的多巴胺能信号传导是破坏食欲帕夫洛夫记忆的必要条件。杏仁内施用D1选择性多巴胺受体拮抗剂或D2选择性多巴胺受体拮抗剂雷洛必利可以防止记忆恢复时的不稳定,从而保护记忆免受记忆消除剂(蛋白质合成抑制剂茴香霉素)的影响。这些数据表明,在食性记忆重建过程中,基底外侧杏仁核内的多巴胺能传递是记忆标记所必需的。

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