4.8 Article

Nucleus accumbens cytoarchitecture predicts weight gain in children

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2007918117

关键词

nucleus accumbens; pediatric obesity; brain development; diffusion; MRI; restriction spectrum imaging

资金

  1. NIH
  2. [U01DA041048]
  3. [U01DA050989]
  4. [U01DA051016]
  5. [U01DA041022]
  6. [U01DA051018]
  7. [U01DA051037]
  8. [U01DA050987]
  9. [U01DA041174]
  10. [U01DA041106]
  11. [U01DA041117]
  12. [U01DA041028]
  13. [U01DA041134]
  14. [U01DA050988]
  15. [U01DA051039]
  16. [U01DA041156]
  17. [U01DA041025]
  18. [U01DA041120]
  19. [U01DA051038]
  20. [U01DA041148]
  21. [U01DA041093]
  22. [U01DA041089]
  23. [U24DA041123]
  24. [U24DA041147]
  25. [U01 DA041174]
  26. [U24 DA041123]

向作者/读者索取更多资源

The prevalence of obesity in children and adolescents worldwide has quadrupled since 1975 and is a key predictor of obesity later in life. Previous work has consistently observed relationships between macroscale measures of reward-related brain regions (e.g., the nucleus accumbens [NAcc]) and unhealthy eating behaviors and outcomes; however, the mechanisms underlying these associations remain unclear. Recent work has highlighted a potential role of neuroinflammation in the NAcc in animal models of diet-induced obesity. Here, we leverage a diffusion MRI technique, restriction spectrum imaging, to probe the microstructure (cellular density) of subcortical brain regions. More specifically, we test the hypothesis that the cell density of reward-related regions is associated with obesity-related metrics and early weight gain. In a large cohort of nine- and ten-year-olds enrolled in the Adolescent Brain Cognitive Development (ABCD) study, we demonstrate that cellular density in the NAcc is related to individual differences in waist circumference at baseline and is predictive of increases in waist circumference after 1 y. These findings suggest a neurobiological mechanism for pediatric obesity consistent with rodent work showing that high saturated fat diets increase gliosis and neuroinflammation in reward-related brain regions, which in turn lead to further unhealthy eating and obesity.

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