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中背侧丘脑投射的扣带前皮质神经元调节小鼠的助人行为。

Mediodorsal thalamus-projecting anterior cingulate cortex neurons modulate helping behavior in mice.

机构信息

Key Laboratory of Molecular Medicine and Biotherapy, School of Life Science, Beijing Institute of Technology, Beijing 100081, China.

School of Basic Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai 201203, China.

出版信息

Curr Biol. 2023 Oct 23;33(20):4330-4342.e5. doi: 10.1016/j.cub.2023.08.070. Epub 2023 Sep 20.

Abstract

Many species living in groups can perform prosocial behaviors via voluntarily helping others with or without benefits for themselves. To provide a better understanding of the neural basis of such prosocial behaviors, we adapted a preference lever-switching task in which mice can prevent harm to others by switching from using a lever that causes shocks to a conspecific one that does not. We found the harm avoidance behavior was mediated by self-experience and visual and social contact but not by gender or familiarity. By combining single-unit recordings and analysis of neural trajectory decoding, we demonstrated the dynamics of anterior cingulate cortex (ACC) neural activity changes synchronously with the harm avoidance performance of mice. In addition, ACC neurons projected to the mediodorsal thalamus (MDL) to modulate the harm avoidance behavior. Optogenetic activation of the ACC-MDL circuit during non-preferred lever pressing (nPLP) and inhibition of this circuit during preferred lever pressing (PLP) both resulted in the loss of harm avoidance ability. This study revealed the ACC-MDL circuit modulates prosocial behavior to avoid harm to conspecifics and may shed light on the treatment of neuropsychiatric disorders with dysfunction of prosocial behavior.

摘要

许多群居生活的物种可以通过自愿帮助他人而表现出亲社会行为,无论对自己是否有益。为了更好地理解这种亲社会行为的神经基础,我们改编了一个偏好杠杆切换任务,在此任务中,老鼠可以通过从引起电击的杠杆切换到对同种动物没有伤害的杠杆来防止对他人的伤害。我们发现,回避伤害的行为是由自我体验、视觉和社会接触介导的,但不受性别或熟悉度的影响。通过结合单细胞记录和神经轨迹解码分析,我们证明了前扣带皮层(ACC)神经活动的动态变化与老鼠回避伤害的表现同步。此外,ACC 神经元投射到中背侧丘脑(MDL),以调节回避伤害行为。在非偏好杠杆按压(nPLP)期间光遗传学激活 ACC-MDL 回路,以及在偏好杠杆按压(PLP)期间抑制该回路,都会导致回避伤害能力的丧失。这项研究揭示了 ACC-MDL 回路调节亲社会行为以避免伤害同种动物,这可能为治疗亲社会行为功能障碍的神经精神障碍提供了思路。

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