Antonoudiou Pantelis, Stone Bradly, Colmers Phillip L W, Evans-Strong Aidan, Walton Najah, Weiss Grant, Maguire Jamie
bioRxiv. 2023 Aug 3:2023.08.02.551710. doi: 10.1101/2023.08.02.551710.
The basolateral amygdala (BLA) is an emotional processing hub and is well-established to influence both positive and negative valence processing. Selective engagement of a heterogeneous cell population in the BLA is thought to contribute to this flexibility in valence processing. However, how this process is impacted by previous experiences which influence valence processing is unknown. Here we demonstrate that previous positive (EE) or negative (chronic unpredictable stress) experiences differentially influence the activity of specific populations of BLA principal neurons projecting to either the nucleus accumbens core or bed nucleus of the stria terminalis. Using chemogenetic manipulation of these projection-specific neurons we can mimic or occlude the effects of chronic unpredictable stress or enriched environment on valence processing to bidirectionally control avoidance behaviors and stress-induced helplessness. These data demonstrate that previous experiences influence the responsiveness of projection-specific BLA principal neurons, biasing information routing through the BLA, to govern valence processing.
基底外侧杏仁核(BLA)是一个情绪处理中枢,并且已经证实它会影响正性和负性效价处理。人们认为,BLA中异质性细胞群的选择性参与有助于效价处理的这种灵活性。然而,这个过程如何受到影响效价处理的既往经历的影响尚不清楚。在这里,我们证明既往的正性(丰富环境)或负性(慢性不可预测应激)经历会差异性地影响投射到伏隔核核心或终纹床核的BLA主要神经元特定群体的活动。通过对这些投射特异性神经元进行化学遗传学操作,我们可以模拟或阻断慢性不可预测应激或丰富环境对效价处理的影响,从而双向控制回避行为和应激诱导的无助感。这些数据表明,既往经历会影响投射特异性BLA主要神经元的反应性,使通过BLA的信息路由产生偏差,从而控制效价处理。