State Key Laboratory of Medical Neurobiology, Institutes of Brain Science, MOE Frontier Center for Brain Science, Fudan University, Shanghai, China.
Research Center of Translation Medicine, Shanghai Children's Hospital, Shanghai Jiao Tong University, Shanghai, China.
Addict Biol. 2021 Nov;26(6):e13048. doi: 10.1111/adb.13048. Epub 2021 May 11.
The process through which early memories are transferred to the cerebral cortex to form long-term memories is referred to as memory consolidation, and the basolateral amygdala (BLA) is an important brain region involved in this process. Although functional connections between the BLA and multiple brain regions are critical for the consolidation of withdrawal memory, whether the projection from the BLA to the anterior cingulate cortex (ACC) is involved in the formation or consolidation of withdrawal memory remains unclear. In this paper, we used a chemical genetic method to specifically label the BLA-ACC projection in a combined morphine withdrawal and conditioned place aversion (CPA) animal model. We found that (1) the inhibition of the BLA-ACC projection during conditioning had no effects on the formation of early withdrawal memory; (2) the inhibition of the BLA-ACC projection had no effects on the retrieval of either early or long-term withdrawal memory; and (3) the persistent inhibition of the BLA-ACC projection after early withdrawal memory formation could inhibit the formation of long-term withdrawal memory and decrease Arc protein expression in the ACC. These results suggested that the persistent activation of the BLA-ACC projection after the formation of early withdrawal memory facilitates the formation of long-term withdrawal memory by increasing the plasticity of ACC neurons.
将早期记忆转移到大脑皮层形成长期记忆的过程称为记忆巩固,而外侧杏仁核(BLA)是参与该过程的重要脑区。尽管 BLA 与多个脑区之间的功能连接对于戒断记忆的巩固至关重要,但 BLA 投射到前扣带皮层(ACC)是否参与戒断记忆的形成或巩固尚不清楚。在本文中,我们使用化学遗传方法在吗啡戒断和条件性位置厌恶(CPA)动物模型中特异性标记 BLA-ACC 投射。我们发现:(1)在条件作用期间抑制 BLA-ACC 投射对早期戒断记忆的形成没有影响;(2)抑制 BLA-ACC 投射对早期或长期戒断记忆的检索均没有影响;(3)在早期戒断记忆形成后持续抑制 BLA-ACC 投射可抑制长期戒断记忆的形成,并降低 ACC 中的 Arc 蛋白表达。这些结果表明,早期戒断记忆形成后 BLA-ACC 投射的持续激活通过增加 ACC 神经元的可塑性促进了长期戒断记忆的形成。