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Updated: Jun 17, 2025

Induction of Maternal Immune Activation in Mice at Mid-gestation Stage with Viral Mimic PolyI:C
Published on: March 25, 2016
Gestational administration of Bifidobacterium dentium results in intergenerational modulation of inflammatory,
Jeffrey D Galley1, Mackenzie K King2, Therese A Rajasekera1
1Department of Psychiatry and Behavioral Health, The Ohio State University Wexner Medical Center, Columbus, OH, USA; Institute for Behavioral Medicine Research, The Ohio State University Wexner Medical Center, Columbus, OH, USA.
Insights
Supplementing pregnant dams with Bifidobacterium dentium combats prenatal stress effects. This probiotic intervention improved maternal and offspring health, reducing inflammation and enhancing social behaviors in offspring.
Area of Science:
- Microbiome research
- Neuroscience
- Maternal-fetal health
Background:
- Prenatal stress (PNS) negatively impacts maternal and offspring health, causing microbiome alterations, neuroinflammation, and behavioral issues.
- PNS disrupts tryptophan metabolism and reduces beneficial gut Bifidobacteria, linked to neurodevelopmental benefits.
- Reduced Bifidobacterium dentium in infants is associated with maternal prenatal mood disorders.
Purpose of the Study:
- To investigate if supplementing PNS-exposed pregnant dams with B. dentium can mitigate PNS-induced health deficits in dams and offspring.
- To assess the impact of B. dentium on inflammatory markers, tryptophan metabolism, and offspring behavior.
Main Methods:
- Pregnant dams exposed to prenatal stress were supplemented with B. dentium.
- Measurements included inflammatory outputs, tryptophan metabolite levels, and gene expression in dams and fetuses.
- Offspring social behavior was assessed in adulthood.
Main Results:
- B. dentium supplementation reduced maternal systemic inflammation and fetal neuroinflammation.
- Tryptophan metabolism was modulated, with increased kynurenic acid and indole-3-propionic acid intergenerationally.
- PNS-induced reductions in litter weight were prevented, and offspring exhibited improved sociability (males) and social novelty (females).
Conclusions:
- B. dentium effectively ameliorates prenatal stress-induced immune, metabolic, and behavioral deficits in both dams and offspring.
- B. dentium demonstrates potential as a preventative strategy against the adverse effects of prenatal stress.
- This study highlights the role of specific probiotics in mediating intergenerational health outcomes.
Abstract:
Prenatal stress (PNS) profoundly impacts maternal and offspring health, with enduring effects including microbiome alterations, neuroinflammation, and behavioral disturbances such as reductions in social behavior. Converging lines of evidence from preclinical and clinical studies suggest that PNS disrupts tryptophan (Trp) metabolic pathways and reduces gut Bifidobacteria, a known beneficial bacterial genus that metabolizes Trp. Specifically, previous work from our lab demonstrated that human prenatal mood disorders in mothers are associated with reduced Bifidobacterium dentium in infants at 13 months. Given that Bifidobacterium has been positively associated with neurodevelopmental and other health benefits and is depleted by PNS, we hypothesized that supplementing PNS-exposed pregnant dams with B. dentium would ameliorate PNS-induced health deficits. We measured inflammatory outputs, Trp metabolite levels and enzymatic gene expression in dams and fetal offspring, and social behavior in adult offspring. We determined that B. dentium reduced maternal systemic inflammation and fetal offspring neuroinflammation, while modulating tryptophan metabolism and increasing kynurenic acid and indole-3-propionic acid intergenerationally. Additional health benefits were demonstrated by the abrogation of PNS-induced reductions in litter weight. Finally, offspring of the B. dentium cohort demonstrated increased sociability in males primarily and increased social novelty primarily in females. Together these data illustrate that B. dentium can orchestrate interrelated host immune, metabolic and behavioral outcomes during and after gestation for both dam and offspring and may be a candidate for prevention of the negative sequelae of stress.
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