Skip to main content
OpenTrials
Completed

NCT Number: NCT05318924

Effects of Ghrelin Administration on Dopamine and Effort

Ghrelin is a stomach-derived hormone and the only known circulating peptide that stimulates appetite. Animal studies have conclusively shown that ghrelin increases dopaminergic neurotransmission and, thereby, enhances effort. However, similar evidence on the putative role of ghrelin in humans is still lacking. Here, the investigators propose to conduct a [11C]-raclopride PET/MR study after intravenous administration of ghrelin vs. saline in healthy individuals. First, during an intake visit, the investigators will assess fasting blood levels of hormones involved in appetitive behavior such as ghrelin, leptin, and insulin. In addition, the investigators will conduct a set of tasks that have been associated with dopamine function (i.e., effort and reinforcement learning). Second, the investigators will assess the effects of intravenous administration of ghrelin on dopamine signaling using a double-blind randomized cross-over design. To this end, participants will be infused with ghrelin (vs. saline) while we determine dopamine release (via PET imaging) and assess cerebral blood flow and functional connectivity at rest (via concurrent MR imaging). Furthermore, the investigators will conduct an instrumental motivation task (IMT) where participants have to exert physical effort to obtain rewards. Based on preclinical studies and indirect evidence from human studies, the investigators hypothesize that ghrelin will increase dopamine release in the striatum and that this will, in turn, lead to an increase in the willingness to work for rewards. Moreover, the investigators expect that ghrelin-induced dopamine release will be associated with an elevated tracking of reward utility in the mesolimbic circuit during the IMT, which is known to be associated with response vigor. Collectively, the proposed project would provide a unique resource to test an important link between the gut and the brain in the regulation of appetitive behavior. If ghrelin were to enhance effort expenditure for rewards via dopamine signaling in humans, then restoring sensitivity to ghrelin might be the more promising therapeutic approach compared to antagonizing the ghrelin receptor.

Completed

Looking for future studies?

Notify Me

Key information

Age range

20 year–50 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Department of Psychiatry & Psychotherapy, University of Tübingen

Tübingen, Baden-Wurttemberg, 72076, Germany

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Healthy control participants: never fulfilled the criteria of any mood or anxiety disorder (except specific phobia)
  • Patients with major depressive disorder: diagnosis according to DSM-5 within 12 months before enrollment and presence of at least mild symptoms at enrollment (BDI II >= 14)

Exclusion criteria

  • lifetime history of a brain injury, schizophrenia, bipolar disorder, and a severe substance use disorder according to DSM-5
  • obsessive-compulsive disorder, trauma- and stressor-related disorder, somatic symptom disorder, and eating disorder within a 12-month interval before the test day.
  • Neuroimaging Study involving ghrelin infusion: contraindication for PET/MR (e.g., metal implants or prostheses, pregnancy, claustrophobia)

Treatment and study plan

Ghrelin

Drug

Participants will receive an infusion that is intended to raise ghrelin level up to a steady plateau.

Placebo

Other

Participants will receive a saline infusion as the placebo control condition.

Primary outcomes

  1. Ghrelin-induced changes in dopamine release

    Time frame: During the infusion (up to 90 min)

    [11C]raclopride binding potential after ghrelin infusion vs. saline infusion

  2. Ghrelin-induced changes in motivation

    Time frame: During the infusion (60-90 min after start of the infusion)

    Force exerted on grip force controller to obtain rewards after ghrelin infusion vs. saline infusion

  3. Ghrelin-induced changes in functional connectivity and perfusion

    Time frame: During the infusion (up to 90 min)

    Functional connectivity and perfusion of regions of the reward circuit (i.e., Nucleus Accumbens and Ventral Tegmental Area/Substantia Nigra) after ghrelin infusion vs. saline infusion

  4. Changes (Ghrelin-induced) in hunger and satiety from baseline

    Time frame: Pre infusion and 20 minutes post infusion (compared to saline)

    Change in visual analogue scale (0-100) measures of subjective hunger and satiety after ghrelin infusion vs. saline infusion

Secondary outcomes

  1. Ghrelin-induced changes in mood

    Time frame: Pre infusion and 20 minutes post infusion (compared to saline)

    Changes operationalized via visual analogue ratings (0-100) of positive and negative affect schedule mood items after ghrelin infusion vs. saline infusion

Sponsors and collaborators

Lead sponsor

University Hospital Tuebingen

Other

Collaborators

  • German Research Foundation

Registry information

Official study title

Will Work for Reward: Effects of Ghrelin Administration on Dopamine and Effort

Important dates

Study start
2022
Primary completion
2024
Study completion
2024
First posted
Apr 8, 2022
Registry last updated
Dec 22, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

Published trials that share one or more normalized conditions with this study.