Literature DB >> 30185937

Cortical surface area alterations shaped by genetic load for neuroticism.

Bernhard T Baune1,2, Udo Dannlowski3, Nils Opel4, Azmeraw T Amare1,5, Ronny Redlich4, Jonathan Repple4, Claas Kaehler4,6, Dominik Grotegerd4, Katharina Dohm4, Dario Zaremba4, Elisabeth J Leehr4, Joscha Böhnlein4, Katharina Förster4, Christian Bürger4, Susanne Meinert4, Verena Enneking4, Daniel Emden4, Ramona Leenings4, Nils Winter4, Tim Hahn4, Walter Heindel7, Jochen Bauer7, David Wilhelms8, Simon Schmitt8, Andreas Jansen8, Axel Krug8, Igor Nenadic8, Marcella Rietschel9, Stephanie Witt9, Andreas J Forstner10, Markus M Nöthen10, Tilo Kircher8, Volker Arolt4.   

Abstract

Neuroticism has been shown to act as an important risk factor for major depressive disorder (MDD). Genetic and neuroimaging research has independently revealed biological correlates of neurotic personality including cortical alterations in brain regions of high relevance for affective disorders. Here we investigated the influence of a polygenic score for neuroticism (PGS) on cortical brain structure in a joint discovery sample of n = 746 healthy controls (HC) and n = 268 MDD patients. Findings were validated in an independent replication sample (n = 341 HC and n = 263 MDD). Subgroup analyses stratified for case-control status and analyses of associations between neurotic phenotype and cortical measures were carried out. PGS for neuroticism was significantly associated with a decreased cortical surface area of the inferior parietal cortex, the precuneus, the rostral cingulate cortex and the inferior frontal gyrus in the discovery sample. Similar associations between PGS and surface area of the inferior parietal cortex and the precuneus were demonstrated in the replication sample. Subgroup analyses revealed negative associations in the latter regions between PGS and surface area in both HC and MDD subjects. Neurotic phenotype was negatively correlated with surface area in similar cortical regions including the inferior parietal cortex and the precuneus. No significant associations between PGS and cortical thickness were detected. The morphometric overlap of associations between both PGS and neurotic phenotype in similar cortical regions closely related to internally focused cognition points to the potential relevance of genetically shaped cortical alterations in the development of neuroticism.

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Year:  2018        PMID: 30185937     DOI: 10.1038/s41380-018-0236-9

Source DB:  PubMed          Journal:  Mol Psychiatry        ISSN: 1359-4184            Impact factor:   15.992


  3 in total

1.  Functional clustering of the human inferior parietal lobule by whole-brain connectivity mapping of resting-state functional magnetic resonance imaging signals.

Authors:  Sheng Zhang; Chiang-Shan R Li
Journal:  Brain Connect       Date:  2014-01-30

2.  Motivation but not valence modulates neuroticism-dependent cingulate cortex and insula activity.

Authors:  Yaling Deng; Shijia Li; Renlai Zhou; Martin Walter
Journal:  Hum Brain Mapp       Date:  2018-01-04       Impact factor: 5.038

3.  Neuroticism and Individual Differences in Neural Function in Unmedicated Major Depression: Findings from the EMBARC Study.

Authors:  Jay C Fournier; Henry W Chase; Tsafrir Greenberg; Amit Etkin; Jorge R Almeida; Richelle Stiffler; Thilo Deckersbach; Sarah Weyandt; Crystal Cooper; Marisa Toups; Tom Carmody; Benji Kurian; Scott Peltier; Phillip Adams; Melvin G McInnis; Maria A Oquendo; Patrick J McGrath; Maurizio Fava; Myrna Weissman; Ramin Parsey; Madhukar H Trivedi; Mary L Phillips
Journal:  Biol Psychiatry Cogn Neurosci Neuroimaging       Date:  2016-12-06
  3 in total
  3 in total

1.  Borderline Personality Traits Are Not Correlated With Brain Structure in Two Large Samples.

Authors:  David A A Baranger; Lauren R Few; Daniel H Sheinbein; Arpana Agrawal; Thomas F Oltmanns; Annchen R Knodt; Deanna M Barch; Ahmad R Hariri; Ryan Bogdan
Journal:  Biol Psychiatry Cogn Neurosci Neuroimaging       Date:  2020-02-24

2.  Gray matter structures associated with neuroticism: A meta-analysis of whole-brain voxel-based morphometry studies.

Authors:  Xiqin Liu; Han Lai; Jingguang Li; Benjamin Becker; Yajun Zhao; Bochao Cheng; Song Wang
Journal:  Hum Brain Mapp       Date:  2021-03-11       Impact factor: 5.038

3.  Apolipoprotein E Homozygous ε4 Allele Status: A Deteriorating Effect on Visuospatial Working Memory and Global Brain Structure.

Authors:  Janik Goltermann; Ronny Redlich; Katharina Dohm; Dario Zaremba; Jonathan Repple; Claas Kaehler; Dominik Grotegerd; Katharina Förster; Susanne Meinert; Verena Enneking; Emily Schlaghecken; Lara Fleischer; Tim Hahn; Harald Kugel; Andreas Jansen; Axel Krug; Katharina Brosch; Igor Nenadic; Simon Schmitt; Frederike Stein; Tina Meller; Dilara Yüksel; Elena Fischer; Marcella Rietschel; Stephanie H Witt; Andreas J Forstner; Markus M Nöthen; Tilo Kircher; Anbupalam Thalamuthu; Bernhard T Baune; Udo Dannlowski; Nils Opel
Journal:  Front Neurol       Date:  2019-05-27       Impact factor: 4.003

  3 in total

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