Identification of a neurocircuit underlying regulation of feeding by stress-related emotional responses

Feeding is known to be profoundly affected by stress-related emotional states and eating disorders are comorbid with psychiatric symptoms and altered emotional responses. The neural basis underlying feeding regulation by stress-related emotional changes is poorly understood. Here, we identify a nove...

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Veröffentlicht in:Nature communications 2019-08, Vol.10 (1), p.3446-16, Article 3446
Hauptverfasser: Xu, Yuanzhong, Lu, Yungang, Cassidy, Ryan M., Mangieri, Leandra R., Zhu, Canjun, Huang, Xugen, Jiang, Zhiying, Justice, Nicholas J., Xu, Yong, Arenkiel, Benjamin R., Tong, Qingchun
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Sprache:eng
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Zusammenfassung:Feeding is known to be profoundly affected by stress-related emotional states and eating disorders are comorbid with psychiatric symptoms and altered emotional responses. The neural basis underlying feeding regulation by stress-related emotional changes is poorly understood. Here, we identify a novel projection from the paraventricular hypothalamus (PVH) to the ventral lateral septum (LSv) that shows a scalable regulation on feeding and behavioral changes related to emotion. Weak photostimulation of glutamatergic PVH→LSv terminals elicits stress-related self-grooming and strong photostimulation causes fear-related escape jumping associated with respective weak and strong inhibition on feeding. In contrast, inhibition of glutamatergic inputs to LSv increases feeding with signs of reduced anxiety. LSv-projecting neurons are concentrated in rostral PVH. LSv and LSv-projecting PVH neurons are activated by stressors in vivo, whereas feeding bouts were associated with reduced activity of these neurons. Thus, PVH→LSv neurotransmission underlies dynamic feeding by orchestrating emotional states, providing a novel neural circuit substrate underlying comorbidity between eating abnormalities and psychiatric disorders. Eating disorders are often comorbid with emotional and psychiatric symptoms yet the underlying neural circuits are poorly understood. Here, the authors report that projections from the paraventricular hypothalamus to the ventral part of the lateral septum regulates both feeding and behavioral responses to stress.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-11399-z