Divergent epigenetic responses to perinatal asphyxia in severe mental disorders
Laura A Wortinger1,2, Anne-Kristin Stavrum3,4, Alexey A Shadrin5,6,7
1Department of Psychiatric Research, Diakonhjemmet Hospital, Oslo, Norway. l.a.w.bakke@medisin.uio.no.
Insights
Perinatal asphyxia, a birth complication, alters DNA methylation differently in individuals with schizophrenia or bipolar disorder compared to healthy controls. This opposite epigenetic response may contribute to the risk of these psychiatric disorders.
Area of Science:
- Neuroscience
- Psychiatry
- Epigenetics
Background:
- Environmental exposures, like perinatal asphyxia, can cause epigenetic changes contributing to schizophrenia and bipolar disorder.
- Perinatal asphyxia, reduced oxygen to the brain at birth, is linked to increased risk of psychiatric disorders.
Purpose of the Study:
- Investigate DNA methylation differences associated with perinatal asphyxia in individuals with schizophrenia or bipolar disorder.
- Explore the role of epigenetic modifications in the shared etiopathogenesis of schizophrenia and bipolar disorder.
Main Methods:
- Epigenome-wide association study (EWAS) on DNA methylation in blood cells.
- Prospective data from the Medical Birth Registry of Norway.
- Analysis of 643 patients (schizophrenia/bipolar disorder) and 676 controls.
Main Results:
- Found an interaction between perinatal asphyxia exposure and DNA methylation levels.
- Healthy controls showed increased methylation, while patients showed decreased methylation in specific DNA regions.
- Differentially methylated regions involve genes crucial for brain development, myelination, and neural plasticity (LINGO3, BLCAP, NNAT, NANOS2, SLC2A14).
Conclusions:
- An opposing epigenetic response to perinatal asphyxia in patients versus controls suggests a molecular mechanism for psychiatric disorder risk.
- Findings support the role of epigenetic modifications in the shared pathways of schizophrenia and bipolar disorder.
Abstract:
Epigenetic modifications influenced by environmental exposures are molecular sources of phenotypic heterogeneity found in schizophrenia and bipolar disorder and may contribute to shared etiopathogenetic mechanisms of these two disorders. Newborns who experienced perinatal asphyxia have suffered reduced oxygen delivery to the brain around the time of birth, which increases the risk of later psychiatric diagnosis. This study aimed to investigate DNA methylation in blood cells for associations with a history of perinatal asphyxia, a neurologically harmful condition occurring within the biological environment of birth. We utilized prospective data from the Medical Birth Registry of Norway to identify incidents of perinatal asphyxia in 643 individuals with schizophrenia or bipolar disorder and 676 healthy controls. We performed an epigenome wide association study to distinguish differentially methylated positions associated with perinatal asphyxia. We found an interaction between methylation and exposure to perinatal asphyxia on case-control status, wherein having a history of perinatal asphyxia was associated with an increase of methylation in healthy controls and a decrease of methylation in patients on 4 regions of DNA important for brain development and function. The differentially methylated regions were observed in genes involved in oligodendrocyte survival and axonal myelination and functional recovery (LINGO3); assembly, maturation and maintenance of the brain (BLCAP;NNAT and NANOS2) and axonal transport processes and neural plasticity (SLC2A14). These findings are consistent with the notion that an opposite epigenetic response to perinatal asphyxia, in patients compared with controls, may contribute to molecular mechanisms of risk for schizophrenia and bipolar disorder.
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