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Early life stress modulates the genetic influence on brain structure and cognitive function in children

Cited 1 time in Web of Science Cited 3 time in Scopus
Authors

Wang, Hee-Hwan; Moon, Seo-Yoon; Kim, Hyeonjin; Kim, Gakyung; Ahn, Woo-Young; Joo, Yoonjung Yoonie; Cha, Jiook

Issue Date
2024-01
Publisher
Elsevier Ltd
Citation
Heliyon, Vol.10 No.1, p. e23345
Abstract
The enduring influence of early life stress (ELS) on brain and cognitive development has been widely acknowledged, yet the precise mechanisms underlying this association remain elusive. We hypothesize that ELS might disrupt the genome-wide influence on brain morphology and connectivity development, consequently exerting a detrimental impact on children's cognitive ability. We analyzed the multimodal data of DNA genotypes, brain imaging (structural and diffusion MRI), and neurocognitive battery (NIH Toolbox) of 4276 children (ages 9-10 years, European ancestry) from the Adolescent Brain Cognitive Development (ABCD) study. The genome-wide influence on cognitive function was estimated using the polygenic score (GPS). By using brain morphometry and tractography, we identified the brain correlates of the cognition GPSs. Statis-tical analyses revealed relationships for the gene-brain-cognition pathway. The brain structural variance significantly mediated the genetic influence on cognition (indirect effect = 0.016, P-FDR < 0.001). Of note, this gene-brain relationship was significantly modulated by abuse, resulting in diminished cognitive capacity (Index of Moderated Mediation = -0.007; 95 % CI = -0.012 similar to -0.002). Our results support a novel gene-brain-cognition model likely elucidating the longlasting negative impact of ELS on children's cognitive development.
ISSN
2405-8440
URI
https://hdl.handle.net/10371/211327
DOI
https://doi.org/10.1016/j.heliyon.2023.e23345
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  • College of Social Sciences
  • Department of Psychology
Research Area Addiction, computational neuroscience, decision neuroscience, 계산 신경과학, 의사결정 신경과학, 중독

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