A hypothalamic circuit links high-fat diet exposure to anxiety-like behavior and anxiety-associated hyperphagia

Obesity and anxiety disorders are frequently comorbid, yet the neural circuit mechanisms linking metabolic and affective states remain incompletely understood. Here, in male mice exposed to long-term high-fat diet, we identify a hypothalamic circuit comprising arcuate nucleus agouti-related protein neurons and paraventricular nucleus corticotropin-releasing hormone neurons that regulates anxiety-like behavior under metabolic stress, with downstream recruitment of lateral hypothalamic area glutamatergic neurons to modulate feeding in a state-dependent manner. In vivo fiber photometry and ex vivo electrophysiology show that high-fat diet enhances activity and feeding-locked recruitment of this circuit, associated with increased anxiety-like behavior and feeding. Circuit-specific inhibition attenuates both phenotypes, whereas corticotropin-releasing hormone receptor 2 signaling in the lateral hypothalamic area selectively mediates high-fat diet-associated hyperphagia without affecting anxiety-like behavior. In this work, we show a disease-state-dependent hypothalamic circuit differentially recruited under chronic high-fat diet to coordinate anxiety-related behavior and feeding output, providing a framework for metabolic-affective interactions. Obesity and anxiety often co-occur, but their neural link is unclear. Here, authors show that an Arc-PVN-LHA hypothalamic circuit coordinates HFD-associated anxiety-like behavior and feeding in a state-dependent manner.

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Publication Details

Journal
Nature Communications
Published
2026-09-16
DOI
https://doi.org/10.1038/s41467-026-77749-w
Primary Topic
Regulation of Appetite and Obesity
Type
article
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article

A hypothalamic circuit links high-fat diet exposure to anxiety-like behavior and anxiety-associated hyperphagia

Zhilai Yang, Jiqian Zhang, Shaohua Hu, Dijia Wang et al.
Nature Communications
Regulation of Appetite and Obesity
article

A hypothalamic circuit links high-fat diet exposure to anxiety-like behavior and anxiety-associated hyperphagia

Zhilai Yang, Jiqian Zhang, Shaohua Hu, Dijia Wang, Bin Mei, Xuesheng Liu, Hu Liu, Zhengyu Li, Gaolin Qiu, Jun Li, Wei Chen, Zheng Fang, Xin Cheng, Xin Qing, Peng Wang
article en

Abstract

Obesity and anxiety disorders are frequently comorbid, yet the neural circuit mechanisms linking metabolic and affective states remain incompletely understood. Here, in male mice exposed to long-term high-fat diet, we identify a hypothalamic circuit comprising arcuate nucleus agouti-related protein neurons and paraventricular nucleus corticotropin-releasing hormone neurons that regulates anxiety-like behavior under metabolic stress, with downstream recruitment of lateral hypothalamic area glutamatergic neurons to modulate feeding in a state-dependent manner. In vivo fiber photometry and ex vivo electrophysiology show that high-fat diet enhances activity and feeding-locked recruitment of this circuit, associated with increased anxiety-like behavior and feeding. Circuit-specific inhibition attenuates both phenotypes, whereas corticotropin-releasing hormone receptor 2 signaling in the lateral hypothalamic area selectively mediates high-fat diet-associated hyperphagia without affecting anxiety-like behavior. In this work, we show a disease-state-dependent hypothalamic circuit differentially recruited under chronic high-fat diet to coordinate anxiety-related behavior and feeding output, providing a framework for metabolic-affective interactions. Obesity and anxiety often co-occur, but their neural link is unclear. Here, authors show that an Arc-PVN-LHA hypothalamic circuit coordinates HFD-associated anxiety-like behavior and feeding in a state-dependent manner.

Nature Communications
Anhui Medical University (CN), First Affiliated Hospital of Anhui Medical University (CN)
Zero hunger
Openalex Percentile: Top 15%
Regulation of Appetite and Obesity
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