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This systematic review and meta-analysis examined the relationship between childhood adversity and brain structure in 3,056 patients with psychotic disorder and bipolar disorder. While most studies reported reduced gray matter volume in prefrontal brain regions associated with childhood adversity, the commonly hypothesized reductions in hippocampus and amygdala volumes were not consistently found. The findings suggest that the neurobiological impact of childhood adversity in these psychiatric conditions may be more reliably detected in cortical regions rather than in subcortical structures.
Why it matters
Understanding which brain regions are affected by childhood adversity in severe mental illness could help identify biological markers for early intervention and inform targeted treatment approaches. The findings challenge previous assumptions about stress-sensitive brain regions and suggest researchers and clinicians should focus more on prefrontal cortex alterations when studying the long-term neurobiological effects of early-life trauma.
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⚠️ Preprint – Noch nicht peer-reviewed
Dieser Artikel wurde noch nicht von unabhängigen Experten begutachtet. Die Ergebnisse sind vorläufig und sollten mit Vorsicht interpretiert werden.
Background Brain abnormalities related to childhood adversity (CA) have been reported across clinical presentations in psychotic disorder (PD) and bipolar disorder (BD). This systematic review and meta-analysis examined gray matter volume (GMV) alterations linked to CA in PD and BD. Methods A PRISMA-compliant systematic review was conducted (PROSPERO ID: CRD42022351133). The EMBASE, MEDLINE, and PsycINFO databases were searched from inception to June 2024 for studies investigating CA and structural brain imaging in PD and BD. Study quality was assessed with the Newcastle Ottawa Scale (NOS). Data were extracted and synthesized accounting for sex differences and CA subtypes with brain findings categorized by the presence and direction of associations. Meta-analyses were performed for hippocampal and amygdala volumes. Results In the systematic review (k = 29), 3,056 participants with PD and BD (mean age = 36.6; SD =16.1; 47% female), published between 2011 and 2023, were included. Study quality was fair, with high heterogeneity. Most studies reported significant negative associations between CA and GMV, especially in prefrontal regions, while findings for the hippocampus and amygdala were largely null or inconsistent. Meta-analyses of a study subset identified no significant association between CA and hemisphere-specific and combined volumes of the hippocampus (k = 5; p [≥] 8805; 0.66) or amygdala (k = 4; p [≥] 8805; 0.87). Conclusion CA was not consistently associated with hippocampal or amygdala volume alterations in PD and BD. More consistent evidence emerged for reduced GMV in prefrontal regions, suggesting that neurobiological impact of CA may be more robustly captured at the cortical level.