Active avoidance recruits the anterior cingulate cortex regardless of social context in male and female rats.

Shannon Ruble, Cassandra Kramer, Lexe West, Karissa Payne, Halle Ness, Greg Erickson, Alyssa Scott, Maria M Diehl
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Abstract

Actively avoiding danger is necessary for survival. Most research has focused on the behavioral and neurobiological processes when individuals avoid danger alone, under solitary conditions. Therefore, little is known about how social context affects active avoidance. Using a modified version of the platform-mediated avoidance task in rats, we investigated whether the presence of a social partner attenuates conditioned freezing and enhances avoidance learning compared to avoidance learned under solitary conditions. Rats spent a similar percentage of time avoiding during the tone under both conditions; however, rats trained under social conditions exhibited greater freezing during the tone as well as lower rates of darting and food seeking compared to solitary rats. Under solitary conditions, we observed higher levels of avoidance in females compared to males, which was not present in rats trained under social conditions. To gain greater mechanistic insight, we optogenetically inactivated glutamatergic projection neurons in the anterior cingulate cortex (ACC) following avoidance training. Photoinactivation of ACC neurons reduced expression of avoidance under social conditions both in the presence and absence of the partner. Under solitary conditions, photoinactivation of ACC delayed avoidance in males but blocked avoidance in females. Our findings suggest that avoidance is mediated by the ACC, regardless of social context, and may be dysfunctional in those suffering from trauma-related disorders. Furthermore, sex differences in prefrontal circuits mediating active avoidance warrant further investigation, given that females experience a higher risk of developing anxiety disorders.

社交条件下的主动回避会调动雄性和雌性大鼠的前扣带回皮层。
积极躲避潜在威胁是生存的必要条件。大多数研究都集中在个体在独处条件下躲避潜在威胁时的行为和神经生物学过程。因此,人们对社会环境如何影响主动回避知之甚少。我们使用平台介导的回避任务的改进版,研究了与单独条件下的回避学习相比,社交伙伴的存在是否会减弱冻结反应并促进更多的回避学习。在两种条件下,大鼠在条件音中回避的时间比例相似;然而,与独居大鼠相比,在社交条件下接受训练的大鼠在条件音中表现出更大的冻结反应,对食物奖励的按压也更低。在独居条件下,我们观察到雌性大鼠比雄性大鼠有更多的回避行为,而在社交条件下则没有这种现象。为了更深入地了解机理,我们在回避训练后对前扣带回皮层(ACC)中的谷氨酸能投射神经元进行了光遗传学灭活。在社交条件下,无论是否有伴侣在场,光激活 ACC 神经元都会损害回避的表达。在独处条件下,ACC神经元的光激活延迟了雄性的回避,但阻碍了雌性的回避。我们的研究结果表明,无论社会环境如何,回避都是由ACC介导的,并且可能在那些患有创伤相关疾病的人身上出现功能障碍。此外,鉴于女性罹患焦虑症的风险较高,介导主动回避的前额叶回路的性别差异值得进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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