ArticleTranslational psychiatry2024
Des-acyl ghrelin reduces alcohol intake and alcohol-induced reward in rodents.
Article in Translational psychiatry, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- LEAP2 as a therapeutic target in obesity and cardiometabolic disorders.Reviews in endocrine & metabolic disorders · 2026Review
- Engaging Gut-to-Brain Signalling to Treat Alcohol Use Disorder.Addiction biology · 2026Article
- Neural mechanisms of food preference and reward processing: a review of multifaceted influencing factors and intervention strategies.Frontiers in nutrition · 2026Review
- Beyond Hunger: The Structure, Signaling, and Systemic Roles of Ghrelin.International journal of molecular sciences · 2025Review
- Neuroendocrinology meets addiction: Emerging pharmacotherapies on the horizon.Journal of internal medicine · 2025Review
- Evidence for independent actions of the CRF and ghrelin systems in binge-like alcohol drinking in mice.Progress in neuro-psychopharmacology & biological psychiatry · 2025Article
- The Connection Between the Appetite-Regulatory Peptides Ghrelin and GLP-1 and Alcohol Use Disorder.Advances in experimental medicine and biology · 2025Review
- Divergent transcriptomic profiles in depressed individuals with hyper- and hypophagia implicating inflammatory status.Journal of psychiatric research · 2024Article
- Human risk taking and metabolic state: No credible evidence for desacyl-ghrelin modulation of neural or behavioural effects.Imaging neuroscience (Cambridge, Mass.)Article
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Authors and funding
8 authors.
Funding
Abstract
The mechanisms contributing to alcohol use disorder (AUD) are complex and the orexigenic peptide ghrelin, which enhances alcohol reward, is implied as a crucial modulator. The major proportion of circulating ghrelin is however the non-octanoylated form of ghrelin, des-acyl ghrelin (DAG), whose role in reward processes is unknown. As recent studies show that DAG decreases food intake, we hypothesize that DAG attenuates alcohol-related responses in animal models. Acute and repeated DAG treatment dose-dependently decreased alcohol drinking in male and female rats. In these alcohol-consuming male rats, repeated DAG treatment causes higher levels of dopamine metabolites in the ventral tegmental area, an area central to reward processing. The role of DAG in reward processing is further supported as DAG prevents alcohol-induced locomotor stimulation, reward in the conditioned place preference paradigm, and dopamine release in the nucleus accumbens in male rodents. On the contrary, DAG does not alter the memory of alcohol reward or affect neurotransmission in the hippocampus, an area central to memory. Further, circulating DAG levels are positively correlated with alcohol drinking in female but not male rats. Studies were conducted in attempts to identify tentative targets of DAG, which currently are unknown. Data from these recombinant cell system revealed that DAG does not bind to either of the monoamine transporters, 5HT2A, CB1, or µ-opioid receptors. Collectively, our data show that DAG attenuates alcohol-related responses in rodents, an effect opposite to that of ghrelin, and contributes towards a deeper insight into behaviors regulated by the ghrelinergic signaling pathway.
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