A circuit from lateral septum neurotensin neurons to tuberal nucleus controls hedonic feeding

  • Zijun Chen
  • , Gaowei Chen
  • , Jiafeng Zhong
  • , Shaolei Jiang
  • , Shishi Lai
  • , Hua Xu
  • , Xiaofei Deng
  • , Fengling Li
  • , Shanshan Lu
  • , Kuikui Zhou
  • , Changlin Li
  • , Zhongdong Liu
  • , Xu Zhang
  • , Yingjie Zhu

Research output: Contribution to journalArticlepeer-review

37 Scopus citations

Abstract

Feeding behavior is regulated by both the homeostatic needs of the body and hedonic values of the food. Easy access to palatable energy-dense foods and the consequent obesity epidemic stress the urgent need for a better understanding of neural circuits that regulate hedonic feeding. Here, we report that neurotensin-positive neurons in the lateral septum (LSNts) play a crucial role in regulating hedonic feeding. Silencing LSNts specifically promotes feeding of palatable food, whereas activation of LSNts suppresses overall feeding. LSNts neurons project to the tuberal nucleus (TU) via GABA signaling to regulate hedonic feeding, while the neurotensin signal from LSNts→the supramammillary nucleus (SUM) is sufficient to suppress overall feeding. In vivo calcium imaging and optogenetic manipulation reveal two populations of LSNts neurons that are activated and inhibited during feeding, which contribute to food seeking and consumption, respectively. Chronic activation of LSNts or LSNts→TU is sufficient to reduce high-fat diet-induced obesity. Our findings suggest that LSNts→TU is a key pathway in regulating hedonic feeding.

Original languageEnglish
Pages (from-to)4843-4860
Number of pages18
JournalMolecular Psychiatry
Volume27
Issue number12
DOIs
StatePublished - Dec 2022
Externally publishedYes

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