Maternal precarity and HPA axis functioning shape infant gut microbiota and HPA axis development in humans
Johanna R Jahnke1,2, Jeffrey Roach3,4, M Andrea Azcarate-Peril4,5
1Department of Anthropology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, United States of America.
Insights
Maternal stress and precarity impact infant gut microbiome diversity and composition, potentially increasing pathogenic bacteria and decreasing beneficial ones. This may link to infant hypothalamic-pituitary-adrenal (HPA) axis functioning and future health risks.
Area of Science:
- Neuroendocrinology
- Microbiome Research
- Developmental Origins of Health and Disease
Background:
- Early life stress and adverse environments are linked to metabolic and neurobehavioral disorders.
- The hypothalamic-pituitary-adrenal (HPA) axis is a known mediator, but the brain-gut axis and microbiome's role are emerging.
- Research is exploring how maternal factors influence infant health via the gut microbiome and HPA axis.
Purpose of the Study:
- To investigate the relationship between maternal precarity and HPA axis function during the peripartum period.
- To examine the association between maternal factors and infant gut microbiome composition.
- To determine how maternal and infant HPA axis functioning relates to infant gut microbiome characteristics.
Main Methods:
- Study involved 25 mother-infant dyads in Ecuador.
- Maternal surveys assessed precarity (food insecurity, social support, depression, stress); salivary cortisol measured maternal HPA axis activity.
- Infant gut microbiome composition (stool) and HPA axis activity (salivary cortisol) were analyzed postpartum.
Main Results:
- Maternal precarity correlated with reduced gut microbial diversity and altered bacterial abundance (increased Enterobacteriaceae, Streptococcaceae; decreased Bifidobacterium, Lachnospiraceae).
- Infant gut microbiome patterns associated with HPA axis dysregulation mirrored those seen with maternal precarity.
- Maternal HPA axis dysregulation during pregnancy was linked to increased Veillonella in infants.
Conclusions:
- Maternal precarity and HPA axis dysregulation are associated with a less diverse infant gut microbiome.
- These conditions promote an increase in potentially pathogenic bacteria and a decrease in beneficial bacteria.
- Findings highlight the brain-gut axis's role in mediating early life stress impacts on infant health.
Background:
Early life exposure to adverse environments, and maternal stress in particular, has been shown to increase risk for metabolic diseases and neurobehavioral disorders. While many studies have examined the hypothalamic-pituitary-adrenal axis (HPA axis) as the primary mechanism behind these relationships, emerging research on the brain-gut axis suggests that the microbiome may play a role. In this study, we tested the relationships among maternal precarity and HPA axis dysregulation during the peripartum period, infant gut microbiome composition, and infant HPA axis functioning.
Methods:
Data come from 25 mother-infant dyads in the Galápagos, Ecuador. Women completed surveys on precarity measures (food insecurity, low social support, depression, and stress) and gave salivary cortisol samples during and after pregnancy. Infant salivary cortisol and stool were collected in the postpartum. Statistical significance of differences in microbial diversity and relative abundance were assessed with respect to adjusted linear regression models.
Results:
Maternal precarity was associated with lower diversity and higher relative abundance of Enterobacteriaceae and Streptococcaceae and a lower relative abundance of Bifidobacterium and Lachnospiraceae. These patterns of colonization for Enterobacteriaceae and Bifidobacterium mirrored those found in infants with HPA axis dysregulation. Maternal HPA axis dysregulation during pregnancy was also associated with a greater relative abundance of Veillonella.
Conclusions:
Overall, exposures to precarity and HPA axis dysregulation were associated with an increase in groups that include potentially pathogenic bacteria, including Enterobacteriaceae, Streptococcaceae, and Veillonella, and a decrease in potentially protective bacteria, including Bifidobacterium and Lachnospiraceae, as well as a decrease in overall diversity.
More Related Videos
09:09Generating a Reproducible Model of Mid-Gestational Maternal Immune Activation using PolyI:C to Study Susceptibility and Resilience in Offspring
Published on: August 17, 2022
07:13Induction of Maternal Immune Activation in Mice at Mid-gestation Stage with Viral Mimic PolyI:C
Published on: March 25, 2016
Related Concept Videos
Anatomy of the Intestines
Small Intestines
The small intestine is an ~7 meter-long tube with an inner diameter of just 2.5 cm. Since most nutrients are absorbed here, the inner lining of the...
Socioemotional Development during Infancy
Primary Temperament Types
Relationship with Parents: Attachment
Human Genetics
The complex relationship between genetics and psychology is observable through common biological components such...
Hypothalamic-Pituitary Axis
Attachment
