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Updated: Jul 16, 2025

Using a Murine Model of Psychosocial Stress in Pregnancy as a Translationally Relevant Paradigm for Psychiatric Disorders in Mothers and Infants
Published on: June 13, 2021
Long-term and trimester-specific effects of prenatal stress on the child gut microbiota
Laura Rojas1, Marcel van de Wouw1, Yanan Wang2
1Department of Pediatrics, University of Calgary, Calgary, Alberta, Canada.
Insights
Prenatal stress in mothers impacts children's gut microbiota and metabolites up to preschool age. These findings highlight potential targets for interventions to support child development.
Area of Science:
- Microbiology
- Developmental Psychology
- Human Physiology
Background:
- Prenatal stress is common and linked to infant gut microbiota alterations.
- The persistence of these changes into preschool years, when the gut microbiota matures, is not well understood.
Purpose of the Study:
- To investigate associations between prenatal stress indicators (psychological distress, stress physiology) and children's gut microbiota composition and metabolites at 3-4 years of age.
Main Methods:
- Maternal psychological distress (anxiety, depressed mood) and salivary cortisol were measured during pregnancy.
- Child gut microbiota composition (16S rRNA sequencing) and fecal metabolome (LC-MS/MS) were analyzed at 3-4 years.
- Correlations and Metaboanalyst were used to assess associations between prenatal stress and child gut microbiome/metabolome.
Main Results:
- Maternal depressed mood and anxiety during pregnancy correlated with altered gut microbial diversity and specific bacterial abundances in children.
- Prenatal cortisol levels were associated with changes in gut microbial diversity and the fecal metabolome.
- Specific associations were found between prenatal stress indicators and bacterial taxa (e.g., Eggerthella, Ruminococcaceae) and metabolic pathways.
Conclusions:
- Prenatal psychological distress and cortisol levels are associated with gut microbiota composition and fecal metabolome in preschool-aged children.
- These findings suggest that the gut microbiome may be a pathway through which prenatal stress influences child development.
- Understanding these links could inform the development of microbiota-targeted interventions for children exposed to prenatal stress.
Objective:
Stress is common among pregnant individuals and is associated with an altered gut microbiota composition in infants. It is unknown if these compositional changes persist into the preschool years when the gut microbiota reaches an adult-like composition. This study aimed to investigate if indicators of prenatal stress (i.e., psychological distress and stress-related physiology) are associated with children's gut microbiota composition and metabolites at 3-4 years of age.
Methods:
Maternal-child pairs (n = 131) were from the Alberta Pregnancy Outcomes and Nutrition (APrON) cohort. Each trimester, psychological distress was measured as symptoms of anxiety (Symptom Checklist-90-R) and depressed mood (Edinburgh Postnatal Depression Scale), whereas salivary cortisol was quantified as a measure of stress-related physiology. Child stool samples were collected at 3-4 years to evaluate gut microbiota composition using 16S rRNA gene sequencing and fecal metabolome using liquid chromatography with tandem mass spectrometry (LC-MS/MS). Associations between prenatal distress and cortisol with the gut microbiota were determined using Pearson and Spearman correlations and corrected for multiple testing. Associations between prenatal distress and cortisol with the fecal metabolome were assessed using Metaboanalyst.
Results:
Symptoms of depressed mood during the 2nd and 3rd trimesters and anxiety during the 2nd trimester of pregnancy were associated with increased alpha diversity of the child's gut microbiota. Cortisol levels during the 1st trimester were also associated with increased Faith PD diversity (r = 0.32), whereas cortisol levels during the 2nd trimester were associated with reduced Shannon diversity (r = -0.27). Depression scores during the 2nd and 3rd trimesters were associated with reductions in the relative abundances of Eggerthella, Parasutterella, and increases in Ruminococcaceae (rs = -0.28, rs = -0.32, rs = 0.32, respectively), as well as the fecal metabolome (e.g., branched-chain amino acid metabolism). Cortisol levels during the 2nd trimester correlated with 7 bacterial taxa, whereas 1st-trimester cortisol levels were associated with the child's fecal metabolome.
Conclusions:
Prenatal distress and cortisol were associated with both child gut microbiota composition and fecal metabolome at preschool age. Understanding these associations may allow for the identification of microbiota-targeted interventions to support child developmental outcomes affected by prenatal stress.
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