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NCT Number: NCT06861868

Brain and Behavior Influences on Obesity Development From Infancy Through Childhood

The investigators project, RESONATE, aims to investigate why some children develop obesity. To do this it uses data on eating and eating-related behaviors, genetic and environmental factors, and brain structure and function. This data is collected in a sub-sample of RESONANCE, a large study of families of children from infancy through childhood. The results will lay foundations for the development of early interventions to prevent or treat obesity.

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Key information

Age range

7 year–12 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Hugo W. Moser Research Institute at Kennedy Krieger, Inc., Baltimore, Maryland, United States

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About this study

Obesity risk shows individual variation such that some children are more likely than others to gain excess weight. One potential reason is that, due to genetic and environmental factors, individuals vary in appetitive behaviors that drive food intake and weight. However, the neurodevelopmental mechanisms underpinning variation in appetite and weight, and effects of risk and protective factors on those outcomes, are not understood. Preliminary data from RESONANCE, the investigators large MRI cohort, suggests obesity risk factors such as maternal pre-pregnancy obesity and obesity-associated genetic variants are associated with not just heightened parent-reported child appetite and adiposity, but with altered patterns of brain structure development from infancy through early childhood. However the relevance of these findings to appetitive behaviors and development of obesity in middle childhood is unknown. This is important because obesity rates and metabolic complications increase through development, adiposity and eating habits measured in later childhood track into adulthood, and obesity is harder to treat later in development, making middle childhood a key stage for capturing outcomes with relevance for lifetime metabolic health. Further, although functional magnetic resonance imaging (MRI) studies have identified altered patterns of activation in brain appetite circuits in association with pediatric obesity and early risk factors for obesity, the predictors of altered functioning of brain appetite circuits in middle childhood are unknown. Identifying the patterns of brain development that predict obesity-promoting behaviors and brain functioning in middle childhood is essential to understand the neural mechanisms by which early obesity risk factors drive excess intake and obesity, and may help pinpoint neurobehavioral targets for early obesity prevention. Finally, although preclinical research and MRI studies of children under 9 years of age support that hypothalamic gliosis, a cellular inflammatory response, plays a role in obesity pathogenesis, it is unclear whether it occurs or impacts appetite in earlier life. For the proposed study, RESONATE, the investigators will address the above research gaps by extending the RESONANCE study to administer meal tests, behavioral and functional magnetic resonance imaging (fMRI) tasks assessing food and non-food reward and cognitive control, and weight/ adiposity measures in middle childhood, and examining hypothalamic gliosis, in a sub-sample of RESONANCE children. By combining this data with extant MRI data and extant or newly-collected data on obesity risk and protective factors, the investigators will test a multi-faceted hypothesis that prenatal, genetic and postnatal factors lead to differential early development of brain appetite circuits, which in turn gives rise to variation in appetitive behaviors and behaviors involving reward processing and cognitive control as well as altered function of brain appetite circuits, that act to influence the development of obesity into middle childhood. The investigator's long-term goal is to lay foundations for developmentally-appropriate, neurobehaviorally-informed interventions to address child obesity.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

  • Participants from the RESONANCE cohort are eligible if the participant will reach 7-12 years of age during the proposed project period and have no food allergies.

Exclusion criteria

  • Exclusion criteria for RESONANCE include:
  • In utero exposure to alcohol, cigarette, or illicit substances;
  • First trimester fetal US abnormalities;
  • Complicated pregnancy (e.g., pre-eclampsia);
  • Complicated delivery, including APGAR scores less than 8 and/or neonatal intensive care unit (NICU) admission;
  • History of neurological (e.g., epilepsy), psychiatric (e.g., anxiety or depression requiring treatment with medication) or developmental disorder (e.g., autism spectrum disorder (ASD), dyslexia);
  • Contraindications for MRI including metal in the body, claustrophobia.

Treatment and study plan

fMRI cue reactivity task

Other

Measures effect of food and non-food cues on brain activation

fMRI go no go task

Other

Measures effect of food and non-food cues on inhibitory responses and brain activation

Ad libitum meal test

Other

Measures effect of exposure to multi-item buffet meal on food intake

Eating in the absence of hunger test

Other

Measures effect of exposure to palatable snacks on food intake

Primary outcomes

  1. Meal test intake as assessed by total kilocalories consumed

    Time frame: Day 1

    Total kilocalories consumed. Once at the first study visit (lab visit)

  2. Weight/adiposity as assessed by BMI

    Time frame: Day 1

    Body Mass Index z-score. Once at the first study visit (lab visit)

  3. Food-related reward as assessed by food-related delay discounting task

    Time frame: Day 1

    Number of trials the child passes. Once, at the first study visit (lab visit)

  4. Food-related cognitive control as assessed by food-related go/no-go task

    Time frame: Day 1

    Commission error rate. Once, at the first study visit (lab visit)

  5. Functioning in brain appetite circuits as assessed by cue reactivity task

    Time frame: During MRI procedure

    Activation of striatal reward regions and fronto-cingulate control circuits during task assessing food-related reward (cue reactivity). Once, at the second study visit (MRI visit).

  6. Functioning in brain appetite circuits as assessed by cognitive control task

    Time frame: During MRI procedure

    Activation of striatal reward regions and fronto-cingulate control circuits during task assessing food-related cognitive control (go/no go). Once, at the second study visit (MRI visit).

Study contacts

Contact information is provided by the study sponsor or research team.

Susan Carnell, PhD

CONTACT

[email protected]

410-955-7192

Viren D'Sa, MD

CONTACT

[email protected]

312-371-4178

Sponsors and collaborators

Lead sponsor

Johns Hopkins University

Other

Collaborators

  • Hugo W. Moser Research Institute at Kennedy Krieger, Inc.
  • National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
  • Rhode Island Hospital
  • University of Washington

Registry information

Official study title

Early Brain Development and Child Nutrition and Obesity

Acronym: RESONATE

Important dates

Study start
2024
Primary completion
2029
Study completion
2029
First posted
Mar 6, 2025
Registry last updated
May 7, 2026

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.

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