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Cortical profiles of numerous psychiatric disorders and normal development share a common pattern.

Authors :
Cao Z
Cupertino RB
Ottino-Gonzalez J
Murphy A
Pancholi D
Juliano A
Chaarani B
Albaugh M
Yuan D
Schwab N
Stafford J
Goudriaan AE
Hutchison K
Li CR
Luijten M
Groefsema M
Momenan R
Schmaal L
Sinha R
van Holst RJ
Veltman DJ
Wiers RW
Porjesz B
Lett T
Banaschewski T
Bokde ALW
Desrivières S
Flor H
Grigis A
Gowland P
Heinz A
Brühl R
Martinot JL
Martinot MP
Artiges E
Nees F
Orfanos DP
Paus T
Poustka L
Hohmann S
Millenet S
Fröhner JH
Robinson L
Smolka MN
Walter H
Winterer J
Schumann G
Whelan R
Bhatt RR
Zhu A
Conrod P
Jahanshad N
Thompson PM
Mackey S
Garavan H
Source :
Molecular psychiatry [Mol Psychiatry] 2023 Feb; Vol. 28 (2), pp. 698-709. Date of Electronic Publication: 2022 Nov 15.
Publication Year :
2023

Abstract

The neurobiological bases of the association between development and psychopathology remain poorly understood. Here, we identify a shared spatial pattern of cortical thickness (CT) in normative development and several psychiatric and neurological disorders. Principal component analysis (PCA) was applied to CT of 68 regions in the Desikan-Killiany atlas derived from three large-scale datasets comprising a total of 41,075 neurotypical participants. PCA produced a spatially broad first principal component (PC1) that was reproducible across datasets. Then PC1 derived from healthy adult participants was compared to the pattern of CT differences associated with psychiatric and neurological disorders comprising a total of 14,886 cases and 20,962 controls from seven ENIGMA disease-related working groups, normative maturation and aging comprising a total of 17,697 scans from the ABCD Study® and the IMAGEN developmental study, and 17,075 participants from the ENIGMA Lifespan working group, as well as gene expression maps from the Allen Human Brain Atlas. Results revealed substantial spatial correspondences between PC1 and widespread lower CT observed in numerous psychiatric disorders. Moreover, the PC1 pattern was also correlated with the spatial pattern of normative maturation and aging. The transcriptional analysis identified a set of genes including KCNA2, KCNS1 and KCNS2 with expression patterns closely related to the spatial pattern of PC1. The gene category enrichment analysis indicated that the transcriptional correlations of PC1 were enriched to multiple gene ontology categories and were specifically over-represented starting at late childhood, coinciding with the onset of significant cortical maturation and emergence of psychopathology during the prepubertal-to-pubertal transition. Collectively, the present study reports a reproducible latent pattern of CT that captures interregional profiles of cortical changes in both normative brain maturation and a spectrum of psychiatric disorders. The pubertal timing of the expression of PC1-related genes implicates disrupted neurodevelopment in the pathogenesis of the spectrum of psychiatric diseases emerging during adolescence.<br /> (© 2022. The Author(s), under exclusive licence to Springer Nature Limited.)

Details

Language :
English
ISSN :
1476-5578
Volume :
28
Issue :
2
Database :
MEDLINE
Journal :
Molecular psychiatry
Publication Type :
Academic Journal
Accession number :
36380235
Full Text :
https://doi.org/10.1038/s41380-022-01855-6