ArticleMolecular metabolism2023
AgRP neuron activity promotes associations between sensory and nutritive signals to guide flavor preference.
Article in Molecular metabolism, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 6 papers.
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Who cites it
6 citing papers in PubMed, 13 citations in OpenAlex.
- Emerging role of AgRP neurons as integrators of metabolic, sensory and environmental cues in the control of energy homeostasis.Reviews in endocrine & metabolic disorders · 2026Review
- Apelin Regulates PVN Dopaminergic Activity and Limits Weight Gain in Mice: An Effect Attenuated by High-Fat Diet.Molecular neurobiology · 2025Article
- Complex carbohydrate utilization by gut bacteria modulates host food consumption.Nature communications · 2025Article
- What's the occasion? Phasic dopamine signaling and interoception.Current opinion in neurobiology · 2025Review
- Chemogenetic suppression of NST GABA neurons reveals inhibition of behavioral responses to sucrose and quinine.Physiology & behavior · 2025Article
- Prostaglandin synthesis mediates the suppression of arcuate Kiss1 neuron activation and pulsatile luteinizing hormone secretion during immune/inflammatory stress in female mice.Journal of neuroendocrinology · 2025Article
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Authors and funding
7 authors at 3 institutions in 1 country.
Funding
Abstract
objectiveThe learned associations between sensory cues (e.g., taste, smell) and nutritive value (e.g., calories, post-ingestive signaling) of foods powerfully influences our eating behavior [1], but the neural circuits that mediate these associations are not well understood. Here, we examined the role of agouti-related protein (AgRP)-expressing neurons - neurons which are critical drivers of feeding behavior [2; 3] - in mediating flavor-nutrient learning (FNL).
methodsBecause mice prefer flavors associated with AgRP neuron activity suppression [4], we examined how optogenetic stimulation of AgRP neurons during intake influences FNL, and used fiber photometry to determine how endogenous AgRP neuron activity tracks associations between flavors and nutrients.
resultsWe unexpectedly found that tonic activity in AgRP neurons during FNL potentiated, rather than prevented, the development of flavor preferences. There were notable sex differences in the mechanisms for this potentiation. Specifically, in male mice, AgRP neuron activity increased flavor consumption during FNL training, thereby strengthening the association between flavors and nutrients. In female mice, AgRP neuron activity enhanced flavor-nutrient preferences independently of consumption during training, suggesting that AgRP neuron activity enhances the reward value of the nutrient-paired flavor. Finally, in vivo neural activity analyses demonstrated that acute AgRP neuron dynamics track the association between flavors and nutrients in both sexes.
conclusionsOverall, these data (1) demonstrate that AgRP neuron activity enhances associations between flavors and nutrients in a sex-dependent manner and (2) reveal that AgRP neurons track and rapidly update these associations. Taken together, our findings provide new insight into the role of AgRP neurons in assimilating sensory and nutritive signals for food reinforcement.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.