弓状核
下丘脑
生物
内分泌学
内科学
核心
神经科学
小胶质细胞
神经营养因子
多巴胺能
信号转导
脑源性神经营养因子
室周核
性别特征
中枢神经系统
正中隆起
作者
Jonathan C. Bean,Jinjing Jian,Tzu-Chiao Lu,Hailan Liu,Kristine Conde,Darah Ave Threat,Sanika V Jossy,Megan E Burt,Jingjing Cheng,Yue Deng,Xing Fang,Xiaoyu Geng,Zili Yan,Yongxiang Li,Hesong Liu,Qingzhuo Liu,Yutian Liu,Yuhan Shi,Longlong Tu,Mengjie Wang
标识
DOI:10.1038/s41467-026-69239-w
摘要
The arcuate nucleus of the hypothalamus plays a central role in sensing and integrating nutritional, hormonal, and neural signals that regulate feeding, energy homeostasis, growth, and reproduction, all of which show pronounced sex differences. However, the cellular mechanisms underlying these responses remain poorly understood. We performed snRNA-seq of the mediobasal hypothalamus, focusing on the arcuate nucleus, in female and male mice under different nutritional states. Analysis of 42 cell types revealed that Agrp neurons were most sensitive to nutritional changes, dopaminergic neurons showed strong sex-specific differences, and KNDy neurons were highly responsive to both sex and nutrition. Pomc neurons displayed moderate nutritional sensitivity. Most glial populations were stable, although microglia and oligodendrocytes showed moderate variation. Cell-cell communication analysis identified neurotrophic factor signaling as a key pathway regulated by sex and nutrition. This study represents a major effort to comprehensively characterize sex-specific differences in arcuate nucleus response across nutritional conditions.
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