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Updated: Nov 9, 2025

Optimized Analysis of DNA Methylation and Gene Expression from Small, Anatomically-defined Areas of the Brain
Published on: July 12, 2012
DNA methylation in cord blood in association with prenatal depressive symptoms
Theodora Kunovac Kallak1, Emma Bränn2, Emma Fransson2
1Department of Women's and Children's Health, Uppsala University, Uppsala, Sweden. theodora.kunovac_kallak@kbh.uu.se.
Insights
Maternal prenatal depression and anxiety can alter infant DNA methylation. Treatment with SSRIs may lead to different epigenetic changes in children compared to untreated prenatal depression.
Area of Science:
- Epigenetics
- Perinatal Mental Health
- Developmental Biology
Background:
- Prenatal depression and anxiety (PND) affect a significant portion of pregnancies.
- Maternal mental health issues pose developmental risks to children, potentially via epigenetic pathways.
- Investigating DNA methylation in newborns can offer insights into these risks.
Purpose of the Study:
- To examine DNA methylation patterns in cord blood related to maternal PND.
- To explore the influence of comorbid anxiety and SSRI treatment on these methylation patterns.
- To assess potential sex-specific differences in methylation.
Main Methods:
- Prospective cohort study with 373 mothers.
- Web-based questionnaires for mood symptoms and SSRI use during pregnancy.
- Illumina MethylationEPIC array used for genome-wide DNA methylation analysis in cord blood.
Main Results:
- No significant DNA methylation changes were linked to PND alone.
- Comorbid PND with anxiety showed differential methylation in ABCF1.
- Maternal SSRI treatment was associated with distinct methylation patterns compared to no treatment, including changes in CRBN and MDFIC.
Conclusions:
- Maternal PND, especially when treated with SSRIs, may have distinct biological consequences for the child.
- Observed methylation differences highlight potential epigenetic impacts of maternal mental health and its treatment.
- Further research is needed to differentiate effects of SSRI treatment versus depression severity.
Background:
Prenatal symptoms of depression (PND) and anxiety affect up to every third pregnancy. Children of mothers with mental health problems are at higher risk of developmental problems, possibly through epigenetic mechanisms together with other factors such as genetic and environmental. We investigated DNA methylation in cord blood in relation to PND, taking into consideration a history of depression, co-morbidity with anxiety and selective serotonin reuptake inhibitors (SSRI) use, and stratified by sex of the child. Mothers (N = 373) prospectively filled out web-based questionnaires regarding mood symptoms and SSRI use throughout pregnancy. Cord blood was collected at birth and DNA methylation was measured using Illumina MethylationEPIC array at 850 000 CpG sites throughout the genome. Differentially methylated regions were identified using Kruskal-Wallis test, and Benjamini-Hochberg adjusted p-values < 0.05 were considered significant.
Results:
No differential DNA methylation was associated with PND alone; however, differential DNA methylation was observed in children exposed to comorbid PND with anxiety symptoms compared with healthy controls in ABCF1 (log twofold change - 0.2), but not after stratification by sex of the child. DNA methylation in children exposed to PND without SSRI treatment and healthy controls both differed in comparison with SSRI exposed children at several sites and regions, among which hypomethylation was observed in CpGs in the promoter region of CRBN (log2 fold change - 0.57), involved in brain development, and hypermethylation in MDFIC (log2 fold change 0.45), associated with the glucocorticoid stress response.
Conclusion:
Although it is not possible to assess if these methylation differences are due to SSRI treatment itself or to more severe depression, our findings add on to existing knowledge that there might be different biological consequences for the child depending on whether maternal PND was treated with SSRIs or not.
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