Related Experiment Video
Updated: Jun 11, 2025

Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats
Published on: November 20, 2015
MICROBIOME: The trials and errors of developing an experimental model to study the impact of maternal gut microbiome
Mara Ioana Ionescu1,2, Ana Maria Catrina3, Ioana Alexandra Dogaru1
1Division of Physiology II - Neuroscience, Department of Functional Sciences, Faculty of Medicine, Carol Davila University of Medicine and Pharmacy, Bucharest, Romania.
Insights
Maternal antibiotic use and perinatal asphyxia (PA) negatively impact offspring neurodevelopment and increase neuroinflammation. Even pregnancy-safe antibiotics disrupt the gut microbiome, worsening PA effects on infant rats.
Area of Science:
- Neuroscience
- Microbiology
- Developmental Biology
Background:
- Maternal gut microbiome alterations are linked to offspring neurodevelopmental issues, particularly with brain vulnerability factors like perinatal asphyxia (PA).
- The interplay between the maternal microbiome and the fetal brain is crucial for healthy offspring neurodevelopment.
Purpose of the Study:
- To model the impact of maternal gut dysbiosis, induced by gestational antibiotics and PA, on offspring neurodevelopment.
- To investigate the effects of different antibiotic regimens on maternal health and offspring neurodevelopment.
Main Methods:
- Wistar rats received antibiotics during gestation, followed by perinatal asphyxia (PA) or normoxia on postnatal day 6.
- Maternal gut microbiome composition, pregnancy outcomes, offspring weight, neurodevelopmental reflexes, and hippocampal neuroinflammation were assessed.
- Two antibiotic cocktails were tested: one causing significant pregnancy complications and another designed to be more pregnancy-safe.
Main Results:
- The initial antibiotic cocktail increased miscarriages, reduced maternal weight gain and offspring weight, and altered the maternal gut microbiome.
- Both PA and antibiotic exposure impaired offspring neurodevelopmental reflexes and increased hippocampal neuroinflammation.
- A second, more pregnancy-safe antibiotic cocktail still disrupted the maternal gut microbiome, and PA effects were amplified by antibiotic administration.
Conclusions:
- Maternal dysbiosis and PA have cumulative detrimental effects on offspring neurodevelopment.
- Caution is advised regarding gestational antimicrobial use due to potential neurodevelopmental impacts.
- Further research is needed on long-term effects, maternal behavior, and probiotic interventions.
Abstract:
Maternal gut microbiome impairment has garnered attention for its potential role in influencing neurodevelopmental outcomes in offspring, especially in situations that increase brain vulnerability such as perinatal asphyxia (PA). Maternal microbiome and fetal brain interplay emerge as a critical link between maternal health and offspring neurodevelopment. This study aims to generate a model to assess the impact of maternal dysbiosis triggered by gestational antibiotic administration and PA on offspring neurodevelopment. Wistar rats were subjected to antibiotics in drinking water from the 11th gestational day until birth. On the 6th postnatal day, pups were subjected to PA/normoxia, resulting in four experimental groups: control-normoxia, antibiotics-normoxia, control-asphyxia, and antibiotics-asphyxia. Early-life behavioral tests were conducted between postnatal days 7 and 9. The initial antimicrobial cocktail (ampicillin, vancomycin, neomycin, clindamycin, amphotericin-B) led to an increased number of miscarriages, poor weight gain during pregnancy, reduced offspring weight, and changes in the maternal gut microbiome compared to control. Offspring presented impaired neurodevelopmental reflexes in both PA and antibiotic groups and increased hippocampal neuroinflammation. Due to these detrimental effects, a more pregnancy-safe antibiotic cocktail was used for a second experiment (ampicillin, vancomycin, neomycin, meropenem). This resulted in no miscarriages or pregnancy-weight loss but was still linked to gut microbiome disruption. PA impaired neurodevelopmental reflexes and increased neuroinflammation, effects amplified by antibiotic administration. These preliminary findings reveal the cumulative potential of maternal dysbiosis and PA on neurodevelopment impairment, emphasizing caution in gestational antimicrobial use. Further investigations should include offspring long-term follow-up and maternal behavior and integrate probiotics to counteract antibiotic effects.
Lay Summary:
This study investigates the impact of maternal gut microbiome disruptions caused by gestational antibiotic treatment and low oxygen exposure shortly after birth on the development of the rats' babies. We found that both antibiotic exposure and reduced oxygen levels led to changes in early behavior and increased inflammation of the nervous tissue in the baby rats. Although using a different, potentially safer antibiotic combination reduced pregnancy complications, it still changed the bacteria in the mother's gut and worsened early behavior. These findings show that antibiotics during pregnancy can affect the developing brain of baby rats and careful consideration should be used before prescribing them. Future research will explore longer-term effects and potential medicines.
More Related Videos
08:50A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
06:39Using 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
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...
Teratogenicity