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distinct acc neural mechanisms underlying authentic and transmitted anxiety induced by maternal separation in mice.

Distinct ACC Neural Mechanisms Underlie Authentic and Transmitted Anxiety Induced by Maternal Separation in Mice.

机构信息

School of Life Sciences, Guangzhou University, Guangzhou 510006, China.

School of Life Sciences, South China Normal University, Guangzhou 510631, China.

出版信息

J Neurosci. 2023 Nov 29;43(48):8201-8218. doi: 10.1523/JNEUROSCI.0558-23.2023.

Abstract

It is known that humans and rodents are capable of transmitting stress to their naive partners via social interaction. However, a comprehensive understanding of transmitted stress, which may differ from authentic stress, thus revealing unique neural mechanisms of social interaction resulting from transmitted stress and the associated anxiety, is missing. We used, in the present study, maternal separation (MS) as a stress model to investigate whether MS causes abnormal behavior in adolescence. A key concern in the analysis of stress transmission is whether the littermates of MS mice who only witness MS stress ("Partners") exhibit behavioral abnormalities similar to those of MS mice themselves. Of special interest is the establishment of the neural mechanisms underlying transmitted stress and authentic stress. The results show that Partners, similar to MS mice, exhibit anxiety-like behavior and hyperalgesia after witnessing littermates being subjected to early-life repetitive MS. Electrophysiological analysis revealed that mice subjected to MS demonstrate a reduction in both the excitatory and inhibitory synaptic activities of parvalbumin interneurons (PVINs) in the anterior cingulate cortex (ACC). However, Partners differed from MS mice in showing an increase in the number and excitability of GABAergic PVINs in the ACC and in the ability of chemogenetic PVIN inactivation to eliminate abnormal behavior. Furthermore, the social transfer of anxiety-like behavior required intact olfactory, but not visual, perception. This study suggests a functional involvement of ACC PVINs in mediating the distinct neural basis of transmitted anxiety. The anterior cingulate cortex (ACC) is a critical brain area in physical and social pain and contributes to the exhibition of abnormal behavior. ACC glutamatergic neurons have been shown to encode transmitted stress, but it remains unclear whether inhibitory ACC neurons also play a role. We evaluate, in this study, ACC neuronal, synaptic and network activities and uncover a critical role of parvalbumin interneurons (PVINs) in the expression of transmitted stress in adolescent mice who had witnessed MS of littermates in infancy. Furthermore, inactivation of ACC PVINs blocks transmitted stress. The results suggest that emotional contagion has a severe effect on brain function, and identify a potential target for the treatment of transmitted anxiety.

摘要

已知人类和啮齿动物能够通过社交互动将压力传递给他们天真的伴侣。然而,对于传递的压力(可能与真实压力不同)的全面理解,以及由此产生的社交互动的独特神经机制和相关的焦虑,我们还缺乏认识。在本研究中,我们使用母婴分离(MS)作为应激模型,研究 MS 是否会导致青春期异常行为。分析压力传递的一个关键问题是,仅目睹 MS 应激的 MS 小鼠的同窝仔鼠(“伴侣”)是否表现出与 MS 小鼠自身相似的行为异常。特别关注的是,建立传递压力和真实压力的神经机制。结果表明,与 MS 小鼠相似,在目睹同窝仔鼠遭受早期生命中重复的 MS 后,伴侣也表现出焦虑样行为和痛觉过敏。电生理分析显示,经历 MS 的小鼠在前扣带皮层(ACC)中的 PVIN 兴奋性和抑制性突触活动均减少。然而,与 MS 小鼠不同的是,伴侣的 ACC 中 GABAergic PVIN 的数量和兴奋性增加,并且化学遗传失活 PVIN 可以消除异常行为。此外,焦虑样行为的社交传递需要完整的嗅觉感知,但不需要视觉感知。这项研究表明,ACC PVIN 在介导传递焦虑的独特神经基础方面具有功能相关性。前扣带皮层(ACC)是躯体和社交疼痛的关键脑区,有助于异常行为的表现。ACC 谷氨酸能神经元已被证明可以编码传递的压力,但尚不清楚抑制性 ACC 神经元是否也起作用。在这项研究中,我们评估了 ACC 神经元、突触和网络活动,并揭示了在幼年时目睹同窝仔鼠经历 MS 的青春期小鼠中,ACC 中的 PVIN 在传递压力表达中的关键作用。此外,ACC PVIN 的失活阻止了传递压力。结果表明,情绪感染对大脑功能有严重影响,并确定了治疗传递焦虑的潜在靶点。

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