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Effects of genomic copy number variants penetrant for schizophrenia on cortical thickness and surface area in healthy individuals: analysis of the UK Biobank.

Authors :
Caseras, Xavier
Kirov, George
Kendall, Kimberley M.
Rees, Elliott
Legge, Sophie E.
Bracher-Smith, Matthew
Escott-Price, Valentina
Murphy, Kevin
Source :
British Journal of Psychiatry; Feb2021, Vol. 218 Issue 2, p104-111, 8p
Publication Year :
2021

Abstract

<bold>Background: </bold>Schizophrenia is a highly heritable disorder with undetermined neurobiological causes. Understanding the impact on brain anatomy of carrying genetic risk for the disorder will contribute to uncovering its neurobiological underpinnings.<bold>Aims: </bold>To examine the effect of rare copy number variants (CNVs) associated with schizophrenia on brain cortical anatomy in a sample of unaffected participants from the UK Biobank.<bold>Method: </bold>We used regression analyses to compare cortical thickness and surface area (total and across gyri) between 120 unaffected carriers of rare CNVs associated with schizophrenia and 16 670 participants without any pathogenic CNV. A measure of cortical thickness and surface area covariance across gyri was also compared between groups.<bold>Results: </bold>Carrier status was associated with reduced surface area (β = -0.020 mm2, P < 0.001) and less robustly with increased cortical thickness (β = 0.015 mm, P = 0.035), and with increased covariance in thickness (carriers z = 0.31 v. non-carriers z = 0.22, P < 0.0005). Associations were mainly present in frontal and parietal areas and driven by a limited number of rare risk alleles included in our analyses (mainly 15q11.2 deletion for surface area and 16p13.11 duplication for thickness covariance).<bold>Conclusions: </bold>Results for surface area conformed with previous clinical findings, supporting surface area reductions as an indicator of genetic liability for schizophrenia. Results for cortical thickness, though, argued against its validity as a potential risk marker. Increased structural thickness covariance across gyri also appears related to risk for schizophrenia. The heterogeneity found across the effects of rare risk alleles suggests potential different neurobiological gateways into schizophrenia's phenotype. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00071250
Volume :
218
Issue :
2
Database :
Complementary Index
Journal :
British Journal of Psychiatry
Publication Type :
Academic Journal
Accession number :
148412506
Full Text :
https://doi.org/10.1192/bjp.2020.139