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April 5, 2026International Journal of Obesity0 citationsOpen Access

Central amygdala neuropeptide Y neurons drive hedonic ingestive behaviour independent of energy homeostasis

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NRNeda RafieiThe University of SydneyCMCaitlin S. MitchellUniversity of Newcastle AustraliaPJPhilip Jean-Richard-dit-BresselUniversity of Newcastle Australia

Key Points

  • This research explores how NPY neurons in the central amygdala influence ingestive behavior under standard conditions.
  • Used chemogenetic techniques to activate NPY-expressing neurons in the central amygdala.
  • Conducted experiments on NPY Cre/+ transgenic mice in a freely behaving setting.
  • Measured consumption of caloric and non-caloric palatable solutions.
  • Activation of CeA NPY neurons significantly increased consumption of palatable solutions.
  • Overall macronutrient preference remained unaffected.
  • Consumption was driven by reward value rather than metabolic needs.

Abstract

Abstract Background/objectives Neuropeptide Y (NPY), a key orexigenic neurotransmitter, is widely expressed in the central nervous system, including in a distinct subpopulation of neurons within the central nucleus of the amygdala (CeA). While CeA NPY neurons contribute to energy regulation during chronic stress or high-fat diet exposure, the role of these neurons in modulating ingestive behaviour under standard conditions, particularly in response to caloric and non-caloric cues remains poorly understood. Subjects/methods Using state-of-the-art chemogenetic techniques, we selectively activate NPY-expressing neurons in the CeA of NPY Cre/+ transgenic mice, enabling precise control of their activity in freely behaving animals. Results Our experiments revealed that activation of these neurons significantly increased the consumption of both caloric and non-caloric palatable solutions, without affecting overall macronutrient preference. These findings indicate that CeA NPY neurons drive reward-related ingestive behaviour, promoting excess consumption beyond homoeostatic energy needs, regardless of the nutritional value of food. Importantly, this effect was observed independently of metabolic stress or dietary manipulation, suggesting that CeA NPY neurons engage a neural pathway that prioritizes food consumption based on reward value alone. Conclusion This study provides novel insights into the neurobiological mechanisms underlying reward-driven consumption and identifies CeA NPY neurons as a key node in the neural circuitry mediating hedonic appetite. These findings have potential implications for understanding the pathophysiology of overeating and for developing targeted interventions for disorders characterized by dysregulated reward-based consumption.

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Cite This Study

Rafiei et al. (2026) studied this question.

synapsesocial.com/papers/69d1fceba79560c99a0a29adhttps://doi.org/10.1038/s41366-026-02060-z
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