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Systems Reconsolidation Reveals a Selective Role for the Anterior Cingulate Cortex in Generalized Contextual Fear Memory Expression

机译:系统重组揭示了在广义上​​下文恐惧记忆表达中的前扣带回皮层的选择性作用。

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After acquisition, hippocampus-dependent memories undergo a systems consolidation process, during which they become independent of the hippocampus and dependent on the anterior cingulate cortex (ACC) for memory expression. However, consolidated remote memories can become transiently hippocampus-dependent again following memory reactivation. How this systems reconsolidation affects the role of the ACC in remote memory expression is not known. Using contextual fear conditioning, we show that the expression of 30-day-old remote memory can transiently be supported by either the ACC or the dorsal hippocampus following memory reactivation, and that the ACC specifically mediates expression of remote generalized contextual fear memory. We found that suppression of neural activity in the ACC with the AMPA/kainate receptor antagonist 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) impaired the expression of remote, but not recent, contextual fear memory. Fear expression was not affected by this treatment if preceded by memory reactivation 6?h earlier, nor was it affected by suppression of neural activity in the dorsal hippocampus with the GABA-receptor agonist muscimol. However, simultaneous targeting of both the ACC and the dorsal hippocampus 6?h after memory reactivation disrupted contextual fear memory expression. Second, we observed that expression of a 30-day-old generalized contextual fear memory in a novel context was not affected by memory reactivation 6?h earlier. However, intra-ACC CNQX infusion before testing impaired contextual fear expression in the novel context, but not the original training context. Together, these data suggest that although the dorsal hippocampus may be recruited during systems reconsolidation, the ACC remains necessary for the expression of generalized contextual fear memory.
机译:采集后,海马依赖性记忆经历系统整合过程,在此过程中,它们变得独立于海马并依赖于前扣带回皮质(ACC)进行记忆表达。但是,合并的远程记忆可能会在记忆重新激活后再次变得短暂依赖于海马。该系统整合如何影响ACC在远程内存表达中的作用尚不清楚。使用上下文恐惧条件,我们显示记忆激活后,ACC或背侧海马可以短暂支持30天的远程记忆的表达,并且ACC专门介导远程广义上下文恐惧记忆的表达。我们发现用AMPA /海藻酸酯受体拮抗剂6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)抑制ACC中的神经活动会损害远程但不是最近的上下文恐惧记忆的表达。如果在6小时之前重新激活记忆,恐惧表达不会受到这种治疗的影响,也不会受到GABA受体激动剂麝香酚对海马背侧神经活动抑制的影响。然而,记忆激活后同时靶向ACC和背海马6?h破坏了背景恐惧记忆表达。其次,我们观察到在新的情境中30天大的广义情境恐惧记忆的表达不受早于6h的记忆激活的影响。但是,ACC内CNQX输注在测试之前会在新情境中损害情境恐惧表达,而在原始训练情境中则不会。总之,这些数据表明,尽管在系统整合过程中可能会招募背侧海马,但ACC仍是表达一般性背景恐惧记忆的必要条件。

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