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Longitudinal Evidence of a Vicious Cycle Between Nucleus Accumbens Microstructure and Childhood Weight Gain
Kristina M Rapuano1, Nia Berrian1, Arielle Baskin-Sommers1
1Department of Psychology, Yale University, New Haven, Connecticut.
Insights
Pediatric obesity involves a cycle where nucleus accumbens (NAcc) inflammation and waist circumference influence each other. Diet, particularly fat intake, may drive this vicious cycle in children.
Area of Science:
- Neuroscience
- Public Health
- Pediatric Research
Background:
- Pediatric obesity is a significant public health issue.
- Diet impacts nucleus accumbens (NAcc) inflammation in rodents.
- Human studies link NAcc cell density (neuroinflammation proxy) to youth weight gain, but directionality and diet association are unclear.
Purpose of the Study:
- Investigate the bidirectional relationship between NAcc cell density and waist circumference (WC) changes in children.
- Examine NAcc cell density's role in mediating the diet-weight gain association in youth.
Main Methods:
- Utilized latent change score modeling (LCSM) on data from over 2,000 children (ages 9-12) in the ABCD Study.
- Assessed baseline and 2-year changes in WC percentile and NAcc cellularity.
- Analyzed dietary intake data to evaluate mediation by NAcc cellularity.
Main Results:
- Baseline WC percentile predicted changes in NAcc cellularity, and baseline NAcc cell density predicted changes in WC percentile.
- NAcc cellularity at Year 2 was significantly associated with WC percentile.
- NAcc cellularity mediated the link between dietary fat consumption and WC percentile.
Conclusions:
- A reciprocal relationship exists between NAcc cell density and WC percentile, forming a potential vicious cycle in youth.
- NAcc cell density may mediate diet's effect on weight gain, suggesting diet-induced reward circuitry inflammation contributes to behavioral changes and further weight gain.
Purpose:
Pediatric obesity is a growing public health concern. Previous work has observed diet to impact nucleus accumbens (NAcc) inflammation in rodents, measured by the reactive proliferation of glial cells. Recent work in humans has demonstrated a relationship between NAcc cell density-a proxy for neuroinflammation-and weight gain in youth; however, the directionality of this relationship in the developing brain and association with diet remains unknown.
Methods:
Waist circumference (WC) and NAcc cell density were collected in a large cohort of children (n > 2,000) participating in the Adolescent Brain Cognitive Development (ABCD) Study (release 3.0) at baseline (9-10 y) and at a Year 2 follow-up (11-12 y). Latent change score modeling (LCSM) was used to disentangle contributions of baseline measures to two-year changes in WC percentile and NAcc cellularity. In addition, the role of NAcc cellularity in mediating the relationship between diet and WC percentile was assessed using dietary intake data collected at Year 2.
Results:
LCSM indicates that baseline WC percentile influences change in NAcc cellularity and that baseline NAcc cell density influences change in WC percentile. NAcc cellularity was significantly associated with WC percentile at Year 2 and mediated the relationship between dietary fat consumption and WC percentile.
Conclusions:
These results implicate a vicious cycle whereby NAcc cell density biases longitudinal changes in WC percentile and vice versa. Moreover, NAcc cell density may mediate the relationship between diet and weight gain in youth. These findings suggest that diet-induced inflammation of reward circuitry may lead to behavioral changes that further contribute to weight gain.
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