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外侧杏仁核至外侧隔核回路对于调节小鼠的社交新颖性至关重要。

The basolateral amygdala to lateral septum circuit is critical for regulating social novelty in mice.

机构信息

Department of Neuroscience, Johns Hopkins School of Medicine, Baltimore, MD, 21205, USA.

Lieber Institute for Brain Development, Johns Hopkins Medical Campus, Baltimore, MD, 21205, USA.

出版信息

Neuropsychopharmacology. 2023 Feb;48(3):529-539. doi: 10.1038/s41386-022-01487-y. Epub 2022 Nov 12.

Abstract

The lateral septum (LS) is a basal forebrain GABAergic region that is implicated in social novelty. However, the neural circuits and cell signaling pathways that converge on the LS to mediate social behaviors aren't well understood. Multiple lines of evidence suggest that signaling of brain-derived neurotrophic factor (BDNF) through its receptor TrkB plays important roles in social behavior. BDNF is not locally produced in LS, but we demonstrate that nearly all LS GABAergic neurons express TrkB. Local TrkB knock-down in LS neurons decreased social novelty recognition and reduced recruitment of neural activity in LS neurons in response to social novelty. Since BDNF is not synthesized in LS, we investigated which inputs to LS could serve as potential BDNF sources for controlling social novelty recognition. We demonstrate that selectively ablating inputs to LS from the basolateral amygdala (BLA), but not from ventral CA1 (vCA1), impairs social novelty recognition. Moreover, depleting BDNF selectively in BLA-LS projection neurons phenocopied the decrease in social novelty recognition caused by either local LS TrkB knockdown or ablation of BLA-LS inputs. These data support the hypothesis that BLA-LS projection neurons serve as a critical source of BDNF for activating TrkB signaling in LS neurons to control social novelty recognition.

摘要

外侧隔核(LS)是基底前脑 GABA 能区域,与社会新奇性有关。然而,汇聚到 LS 以介导社交行为的神经回路和细胞信号通路尚未得到很好的理解。有多项证据表明,脑源性神经营养因子(BDNF)通过其受体 TrkB 进行信号转导,在社交行为中发挥重要作用。BDNF 不是在 LS 中局部产生的,但我们证明几乎所有 LS GABA 能神经元都表达 TrkB。LS 神经元中的局部 TrkB 敲低会降低对社会新奇性的识别,并减少 LS 神经元对社会新奇性的反应性神经活动募集。由于 BDNF 不是在 LS 中合成的,我们研究了哪些输入到 LS 可以作为控制社会新奇性识别的潜在 BDNF 来源。我们证明,选择性消融 LS 来自外侧杏仁核(BLA)的输入,但不是来自腹侧 CA1(vCA1)的输入,会损害社会新奇性识别。此外,选择性耗尽 BLA-LS 投射神经元中的 BDNF 可模拟由局部 LS TrkB 敲低或 BLA-LS 输入消融引起的社会新奇性识别下降。这些数据支持了以下假设,即 BLA-LS 投射神经元作为激活 LS 神经元中 TrkB 信号的关键 BDNF 来源,以控制社会新奇性识别。

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