Appetitive Behavior

6

Review clinical trials related to Appetitive Behavior. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Validation of a Novel Cerebellar-striatal Satiety Circuit in Humans

This study uses a noninvasive technique called transcranial magnetic stimulation (TMS) to study satiety in healthy individuals. TMS is a noninvasive way of stimulating the brain, using a magnetic field to change activity in the brain. The magnetic field is produced by a coil that is held next to the scalp. In this study, the investigators will be stimulating the brain to learn more about the role of the cerebellum in satiety.

Participants needed: 150
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Brigham and Women's HospitalUpdated: Dec 5, 2025Locations: 2
Eligibility criteria

Healthy individuals aged 18 to 65 [+4]

Current and/or past medical conditions [+8]

Status: Recruiting

Exercise, Brain Activity, and Weight Maintenance

This study aims to explore how HIIT influences brain function, neural and molecular pathways related to weight control, setting the stage for future obesity intervention research.

Participants needed: 15
Trial details
Age: 18-70Biological sex: AllType: InterventionalSponsor: Joslin Diabetes CenterUpdated: Sep 4, 2025Locations: 1
Eligibility criteria

Age 18-70 years [+4]

Type 1 diabetes mellitus [+20]

Status: Recruiting

Food for Thought: Executive Functioning Around Eating Among Children

Scientific knowledge of the cognitive-developmental processes that serve to support children's appetite self-regulation are surprisingly limited. This investigation will provide new scientific directions for obesity prevention by elucidating cognitive-developmental influences on young children's ability to make healthy food choices and eat in moderation.

Participants needed: 125
Trial details
Age: 4-6Biological sex: AllType: InterventionalSponsor: Temple UniversityUpdated: Apr 10, 2025Locations: 1
Eligibility criteria

Child ages 4 to 6 years of age [+2]

Caregiver <18 years of age [+3]

Status: Not yet recruiting

Timing and Resistance Exercise: Impact on Eating and Metabolism

Exercise timing (morning or evening) for optimal weight control is a research topic urgently addressed by scholars in the relevant field. Due to the better control of energy metabolism and physical activity levels in the morning, existing research on resistance exercise and eating behavior primarily focuses on experiments conducted in the morning, with only one study in the afternoon. No research has yet compared the potential differences between morning and evening resistance exercise. A one-year study aims to investigate the impact of morning and evening resistance exercise on physiological metabolism and eating behavior. Eighteen healthy male participants will be randomly assigned to a crossover design study, including AM exercise, PM exercise, and control (rest condition) trials. Variables including subjective appetite, appetite hormones (ghrelin, peptide YY), food preferences, ad libitum eating, dietary records, energy expenditure, and PBMCs circadian rhythm genes will be measured. This preliminary study through a multidimensional observation, the results will contribute to understanding the potential differences and mechanisms of morning and evening resistance exercise on physiological metabolism and eating behavior. In practical applications, conducting resistance exercise in the evening or at night aligns better with current lifestyles. The findings of this study can support the optimization of exercise benefits by validating the choice of exercise timing.

Participants needed: 18
Trial details
Age: 20-30Biological sex: MaleType: InterventionalSponsor: National Taiwan Normal UniversityUpdated: Aug 12, 2024Locations: 1
Eligibility criteria

Age: 20-30 [+1]

Obesity (BMI > 30 kg/m² or body fat percentage > 25%) [+5]

Status: Recruiting

Investigating the Glycaemic and Satiating Capacity of PulseOn® Enriched Foods

The purpose of this randomised control trial is to determine whether consuming PulseOn enriched crackers for breakfast influences post-prandial glycaemic response and markers of appetite (hunger, fullness, desire to eat) over 4 hours, and energy intake at an ad libitum lunch meal on the same day. Healthy individuals with no underlying metabolic disease will be recruited to take part in this study.

Participants needed: 50
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Sheffield Hallam UniversityUpdated: Jul 18, 2024Locations: 1
Eligibility criteria

over the age of 18y

smoker / recreational drug user [+11]

Status: Recruiting

Gut Hormone LEAP2 in Metabolism and Eating Behaviour: Fixed Meal Testing

The goal of this interventional study is to measure the blood levels of the gut hormones LEAP2 and acyl ghrelin (AG), appetite and food intake after consuming liquid meals of different caloric sizes, in healthy adults with and without obesity. AG is a stomach-derived homone that increases appetite, and LEAP2 a liver-gut derived hormone that decreases appetite, which interferes the action of AG ant its receptor in the brain called the growth hormone secretagogue receptor (GHSR). Blood levels of AG and LEAP2 change in opposite directions after food intake (AG decreasing, LEAP2 increasing). AG is formed from an inactive version of hormone called desacyl ghrelin (DAG). Previous studies have shown that greater food intake leads to a greater decrease in blood levels of total ghrelin (AG + DAG), but this has not been studied for changes in blood AG or LEAP2 after eating. Blood levels of AG and total ghrelin when fasted and after food intake are lower, while blood levels of LEAP2 are higher, in adults with than those without obesity. The main study questions are: 1. Are there greater increases in blood levels of LEAP2 and greater decreases in blood levels of AG after consuming larger meals (by amount of calories they contain)? 2. Are greater decreases in appetite after connsuming larger meals related to greater increases in blood levels of LEAP2 and greater decreases in blood levels of AG? 3. Are greater decreases in food intake at a buffet lunch after consuming larger meals eaten a few hours previously related to greater increases in blood levels of LEAP2 and greater decreases in blood levels of AG? 4. Do the above findings differ between adults without obesity and with obesity? At each of 4 study days, healthy adults (without and with obesity) will consume one size of a single liquid meal containing different amounts of calories (0, 600, 900 (group without obesity only), 1200, 1800 (group with obesity only) kilocalories, of identical total volume) after an overnight fast and have measurements of blood LEAP2 and AG and appetite ratings from 0 to 180 min, and have food intake at an ad libitum lunch measured at 180 mins. Food will be weighed and converted into kilocalories. All participants will attend for all 4 study visits in a randomised order to receive one of the meal sizes at each visit, so that all 4 meal zizes are consumed over all 4 study visits: 0, 600, 900 (group without obesity), 1200, 1800 (group with obesity) kcal.

Participants needed: 30
Trial details
Age: 18-60Biological sex: AllType: InterventionalSponsor: Imperial College LondonUpdated: Jun 26, 2024Locations: 1
Eligibility criteria

Male or female between the ages of 18 and 60 years; [+4]

History of, or current abuse or dependence on alcohol or drugs; [+19]