Related Experiment Video
Updated: Apr 19, 2026

Optimized Analysis of DNA Methylation and Gene Expression from Small, Anatomically-defined Areas of the Brain
Published on: July 12, 2012
Maternal stress, preterm birth, and DNA methylation at imprint regulatory sequences in humans
Adriana C Vidal1, Sara E Benjamin Neelon2, Ying Liu3
1Department of Obstetrics and Gynecology, Division of Epidemiology, Duke University School of Medicine, Durham, NC, USA.
Insights
Maternal stress during pregnancy did not increase preterm birth risk. However, elevated stress was linked to epigenetic changes in infants, specifically at the MEST gene, impacting infant epigenomic profiles.
Area of Science:
- Reproductive biology
- Epigenetics
- Developmental origins of health and disease
Background:
- Maternal stress in utero is linked to adverse infant outcomes.
- Epigenetic mechanisms, like DNA methylation, may mediate these effects.
- Preterm birth (PTB) is associated with long-term health risks.
Purpose of the Study:
- To investigate the association between prenatal maternal stress and PTB.
- To evaluate the role of DNA methylation at imprinted regulatory regions in this association.
- To explore differences in DNA methylation by maternal stress levels.
Main Methods:
- 537 pregnant women completed the Perceived Stress Scale at 12 weeks gestation.
- DNA methylation was measured using bisulfite pyrosequencing in 79 mother-infant pairs.
- Analysis focused on differentially methylated regions (DMRs) of imprinted genes including H19, IGF2, and MEST.
Main Results:
- Maternal stress was not significantly associated with preterm birth after adjusting for confounders.
- Elevated maternal stress was associated with increased infant DNA methylation at the MEST DMR (2.8% difference, P < 0.01).
- No significant association was found between maternal stress and PTB.
Conclusions:
- Prenatal maternal stress may influence infant epigenomic profiles, specifically at the MEST gene.
- MEST gene methylation is relevant to maternal care and obesity.
- Reducing prenatal stress may promote a healthy epigenomic profile in infants.
Abstract:
In infants exposed to maternal stress in utero, phenotypic plasticity through epigenetic events may mechanistically explain increased risk of preterm birth (PTB), which confers increased risk for neurodevelopmental disorders, cardiovascular disease, and cancers in adulthood. We examined associations between prenatal maternal stress and PTB, evaluating the role of DNA methylation at imprint regulatory regions. We enrolled women from prenatal clinics in Durham, NC. Stress was measured in 537 women at 12 weeks of gestation using the Perceived Stress Scale. DNA methylation at differentially methylated regions (DMRs) associated with H19, IGF2, MEG3, MEST, SGCE/PEG10, PEG3, NNAT, and PLAGL1 was measured from peripheral and cord blood using bisulfite pyrosequencing in a sub-sample of 79 mother-infant pairs. We examined associations between PTB and stress and evaluated differences in DNA methylation at each DMR by stress. Maternal stress was not associated with PTB (OR = 0.98; 95% CI, 0.40-2.40; P = 0.96), after adjustment for maternal body mass index (BMI), income, and raised blood pressure. However, elevated stress was associated with higher infant DNA methylation at the MEST DMR (2.8% difference, P < 0.01) after adjusting for PTB. Maternal stress may be associated with epigenetic changes at MEST, a gene relevant to maternal care and obesity. Reduced prenatal stress may support the epigenomic profile of a healthy infant.
More Related Videos
Related Concept Videos
Genomic Imprinting and Inheritance
The expression of some genes depends on which parent passed the gene to the offspring, through a phenomenon known as...
Epigenetic Regulation
X-chromosome...
Epigenetic Regulation

