Antioxidative Defense Genes and Brain Structure in Youth Bipolar Disorder

Author:

Zou Yi1,Kennedy Kody G1,Grigorian Anahit2,Fiksenbaum Lisa2,Freeman Natalie3,Zai Clement C34,Kennedy James L34,MacIntosh Bradley J567,Goldstein Benjamin I124

Affiliation:

1. Department of Pharmacology, University of Toronto, Toronto, ON, Canada

2. Centre for Youth Bipolar Disorder, Centre for Addiction and Mental Health, Toronto, ON, Canada

3. Psychiatric Neurogenetics Section, Campbell Family Mental Health Research Institute, Centre for Addiction and Mental Health, Toronto, ON, Canada

4. Department of Psychiatry, University of Toronto, Toronto, ON, Canada

5. Heart and Stroke Foundation, Canadian Partnership for Stroke Recovery, Sunnybrook Research Institute, Toronto, ON, Canada

6. Department of Medical Biophysics, University of Toronto, Toronto, ON, Canada

7. Hurvitz Brain Sciences Program, Sunnybrook Research Institute, Toronto, ON, Canada

Abstract

Abstract Background Oxidative stress is implicated in the neuropathology of bipolar disorder (BD). We investigated the association of single-nucleotide polymorphisms (SNPs) in the antioxidative genes superoxide dismutase 2 (SOD2) and glutathione peroxidase 3 (GPX3) with structural neuroimaging phenotypes in youth BD. Methods SOD2 rs4880 and GPX3 rs3792797 SNP genotypes, along with structural magnetic resonance imaging, were obtained from 147 youth (BD = 75; healthy controls = 72). Images were processed using FreeSurfer, yielding surface area, volume, and thickness values for regions of interest (prefrontal cortex [PFC], caudal anterior cingulate cortex, hippocampus) and for vertex-wise whole-brain analysis. Analyses controlled for age, sex, race, and intracranial volume for volume, area, and thickness analyses. Result Regions of interest analyses revealed diagnosis-by-SOD2 rs4880 interaction effects for caudal anterior cingulate cortex volume and surface area as well as PFC volume; in each case, there was lower volume/area in the BD GG genotype group vs the healthy controls GG genotype group. There was a significant BD diagnosis × GPX3 rs3793797 interaction effect for PFC surface area, where area was lower in the BD A-allele carrier group vs the other genotype groups. Vertex-wise analyses revealed significant interaction effects in frontal, temporal, and parietal regions related to smaller brain structure in the BD SOD2 rs4880 GG group and BD GPX3 rs3793797 A-allele carrier group. Conclusion We found preliminary evidence that SOD2 rs4880 and GPX3 rs3792797 are differentially associated with brain structures in youth with BD in regions that are relevant to BD. Further studies incorporating additional neuroimaging phenotypes and blood levels of oxidative stress markers are warranted.

Funder

Ontario Mental Health Foundation

Canadian Institutes of Health Research

Publisher

Oxford University Press (OUP)

Subject

Pharmacology (medical),Psychiatry and Mental health,Pharmacology

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