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Chi-Hua Chen

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Open access Sep 2026

The effect of prenatal maternal stress on adolescent internalizing symptoms and the genetic moderation of executive functioning and prefrontal cortex

Abstract Background Prenatal maternal stress is a known risk factor for later emotional problems, yet not all exposed offspring develop psychopathology. Executive functioning and prefrontal cortex structure and activity may buffer these effects, but it remains unclear whether genetic predispositions in these domains moderate associations with adolescent internalizing symptoms. Methods We examined 3,111 adolescents (1,881 females, 1,230 males). Prenatal stress was measured via a cumulative index across four domains. Internalizing symptoms were self-reported at ages 14 and 16. Genetic predisposition for executive functioning was indexed using a polygenic score (PGS) derived from adult samples, applied here to estimate genetic predisposition for executive functioning in adolescence. We also estimated a prefrontal cortex PGS based on cortical thickness and activation in six prefrontal regions, with a composite index derived from the first principal axis summarizing these measures. Results Higher prenatal stress was significantly associated with more internalizing symptoms in adolescence. Female sex and maternal genetic risk for internalizing symptoms were also associated with higher symptom levels. Neither genetic disposition for executive functioning nor prefrontal cortex moderated this association overall. However, a weak interaction emerged at age 16, indicating that a genetic disposition for higher executive functioning was associated with greater internalizing symptoms under high stress exposure. Conclusions Prenatal maternal stress predicted increased adolescent internalizing symptoms, with limited evidence for moderation by genetic predisposition for executive functioning. Higher genetic potential for executive functioning may confer increased sensitivity to early stress under certain developmental conditions.

B. Kraft, N. MacSweeney, Christian M. Page et al. · 0 citations
Open access Aug 2026

Cerebral Cortical Structural Variation and General Cognitive Ability: Evidence From Mendelian Randomization

Understanding the cortical architecture underlying individual differences in general cognitive ability (GCA) remains a central question in cognitive neuroscience. Prior work has established associations between global brain size and GCA, yet the regional effects and directionality of these relationships remain debated. Using a genetically informed cortical parcellation in 11,289 UK Biobank participants, we examined associations between cortical surface area (SA), cortical thickness (CT), and GCA measured via verbal–numerical reasoning. Total SA showed a robust positive association with GCA. At the regional level, dorsolateral prefrontal and superior temporal SA exhibited the strongest positive associations, which persisted after adjustment for global SA. In contrast, CT showed comparatively modest associations. Using Mendelian randomization (MR) with genome‐wide significant genetic instruments, we observed evidence consistent with a bidirectional relationship between total SA and GCA. At the regional level, dorsolateral prefrontal and temporal SA demonstrated evidence of MR‐inferred directional effects on GCA, while GCA showed evidence of MR‐inferred directional effects on total SA and perisylvian thickness. These findings support a polyregional SA architecture underlying GCA, with prominent contributions from prefrontal and temporal association cortices. Our results refine global brain–GCA models and highlight the value of genetically informed parcellation for identifying regional cortical contributions.

Chun-Ju Chou, M. Fiecas, E. D. del Re et al. · 0 citations

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