ArticleBiological psychiatry2024
Amylin Modulates a Ventral Tegmental Area-to-Medial Prefrontal Cortex Circuit to Suppress Food Intake and Impulsive Food-Directed Behavior.
Article in Biological psychiatry, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 16 citations in OpenAlex.
- The locus coeruleus calcitonin receptor can Be engaged by amylin and calcitonin gene-related peptide to suppress feeding without inducing nausea.Molecular metabolism · 2026Article
- Not only gut feelings: pancreatic hormone, amylin, controls emotionality and sociability, in a sex divergent manner.Translational psychiatry · 2026Article
- Brain Amylin Signaling, Feeding, and Reward.Comprehensive Physiology · 2026Review
- The story of amylin: from physiology to therapy.Nature metabolism · 2026Review
- Amylin: From Mode of Action to Future Clinical Potential in Diabetes and Obesity.Diabetes therapy : research, treatment and education of diabetes and related disorders · 2025Review
- Sex-specific signatures of GLP-1 and amylin on resting state brain activity and functional connectivity in awake rats.Neuropharmacology · 2025Article
- Regulation of PVT-CeA Circuit in Deoxynivalenol-Induced Anorexia and Aversive-Like Emotions.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2025Article
- Ventral tegmental area amylin / calcitonin receptor signaling suppresses feeding and weight gain in female rats.Neuroscience research · 2025Article
- An endogenous GLP-1 circuit engages VTA GABA neurons to regulate mesolimbic dopamine neurons and attenuate cocaine seeking.Science advances · 2025Article
- Rodent islet amyloid polypeptide (IAPP) selectively enhances GABAFrontiers in cellular neuroscience · 2025Article
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Authors and funding
12 authors at 4 institutions in 1 country.
Funding
Abstract
backgroundA better understanding of the neural mechanisms regulating impaired satiety to palatable foods is essential to treat hyperphagia linked with obesity. The satiation hormone amylin signals centrally at multiple nuclei including the ventral tegmental area (VTA). VTA-to-medial prefrontal cortex (mPFC) projections encode food reward information to influence behaviors including impulsivity. We hypothesized that modulation of VTA-to-mPFC neurons underlies amylin-mediated decreases in palatable food-motivated behaviors.
methodsWe used a variety of pharmacological, behavioral, genetic, and viral approaches (n = 4-16/experiment) to investigate the anatomical and functional circuitry of amylin-controlled VTA-to-mPFC signaling in rats.
resultsTo first establish that VTA amylin receptor (calcitonin receptor) activation can modulate mPFC activity, we showed that intra-VTA amylin decreased food-evoked mPFC cFos. VTA amylin delivery also attenuated food-directed impulsive behavior, implicating VTA amylin signaling as a regulator of mPFC functions. Palatable food activates VTA dopamine and mPFC neurons. Accordingly, dopamine receptor agonism in the mPFC blocked the hypophagic effect of intra-VTA amylin, and VTA amylin injection reduced food-evoked phasic dopamine levels in the mPFC, supporting the idea that VTA calcitonin receptor activation decreases dopamine release in the mPFC. Surprisingly, calcitonin receptor expression was not found on VTA-to-mPFC projecting neurons but was instead found on GABAergic (gamma-aminobutyric acidergic) interneurons in the VTA that provide monosynaptic inputs to this pathway. Blocking intra-VTA GABA signaling, through GABA receptor antagonists and DREADD (designer receptor exclusively activated by designer drugs)-mediated GABAergic neuronal silencing, attenuated intra-VTA amylin-induced hypophagia.
conclusionsThese results indicate that VTA amylin signaling stimulates GABA-mediated inhibition of dopaminergic projections to the mPFC to mitigate impulsive consumption of palatable foods.
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