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伴侣分离挽救了下丘脑催产素神经元密度因结对而下降的现象。

Partner separation rescues pair bond-induced decreases in hypothalamic oxytocin neural densities.

机构信息

Department of Psychology, Emory University, 36 Eagle Row, Atlanta, GA, 30322, USA.

出版信息

Sci Rep. 2023 Mar 24;13(1):4835. doi: 10.1038/s41598-023-32076-8.

Abstract

Studies in prairie voles (Microtus ochrogaster) have shown that although formation of the pair bond is accompanied by a suite of behavioral changes, a bond between two voles can dissolve and individuals can form new pair bonds with other conspecifics. However, the neural mechanisms underlying this behavioral flexibility have not been well-studied. Here we examine plasticity of nonapeptide, vasopressin (VP) and oxytocin (OT), neuronal populations in relation to bonding and the dissolution of bonds. Using adult male and female prairie voles, animals were either pair bonded, co-housed with a same-sex sibling, separated from their pair bond partner, or separated from their sibling. We examined neural densities of VP and OT cell groups and observed plasticity in the nonapeptide populations of the paraventricular nucleus of the hypothalamus (PVN). Voles that were pair bonded had fewer PVN OT neurons, suggesting that PVN OT neural densities decrease with pair bonding, but increase and return to a pre-pair bonded baseline after the dissolution of a pair bond. Our findings suggest that the PVN nonapeptide cell groups are particularly plastic in adulthood, providing a mechanism by which voles can exhibit context-appropriate behavior related to bond status.

摘要

草原田鼠(Microtus ochrogaster)的研究表明,尽管形成伴侣关系伴随着一系列行为变化,但两只田鼠之间的联系可以解除,个体可以与其他同种个体形成新的伴侣关系。然而,这种行为灵活性的神经机制尚未得到很好的研究。在这里,我们研究了与结合和结合解除相关的非肽、血管加压素(VP)和催产素(OT)神经元群体的可塑性。使用成年雄性和雌性草原田鼠,动物要么形成伴侣关系,与同性别兄弟姐妹合住,要么与伴侣关系的伙伴分开,要么与兄弟姐妹分开。我们检查了下丘脑室旁核(PVN)中 VP 和 OT 细胞群的神经密度,并观察了非肽群体的可塑性。形成伴侣关系的田鼠 PVNOT 神经元较少,这表明 PVNOT 神经密度随着伴侣关系的形成而降低,但在伴侣关系解除后会增加并恢复到伴侣关系形成前的基线。我们的研究结果表明,PVN 非肽细胞群在成年期具有特别的可塑性,为田鼠表现出与结合状态相关的适当行为提供了一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11cd/10039073/0ff8c121195b/41598_2023_32076_Fig1_HTML.jpg

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