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Updated: Jul 2, 2026

Induction of Maternal Immune Activation in Mice at Mid-gestation Stage with Viral Mimic PolyI:C
Published on: March 25, 2016
Maternal antibiotics disrupt microbiome, behavior, and temperature regulation in unexposed infant mice
Christopher Harshaw1, Sayuri Kojima2, Cara L Wellman2
1Department of Psychology, University of New Orleans, New Orleans, Louisiana, USA.
Insights
Maternal antibiotic exposure disrupts offspring gut microbiota and thermoregulation, impacting early autism spectrum disorder (ASD)-relevant behaviors. These disruptions suggest potential metabolic confounders in early-life antibiotic studies.
Area of Science:
- Microbiology
- Neuroscience
- Developmental Biology
Background:
- Maternal antibiotic exposure can alter the maternal-offspring microbiome transfer.
- Early-life dysbiosis is linked to neurodevelopmental disorders, including autism spectrum disorder (ASD).
- Limited research exists on the preweaning behavioral effects of maternal antibiotic exposure in rodent models.
Purpose of the Study:
- To investigate the impact of maternal antibiotic exposure on ASD-relevant behaviors in preweaning mice.
- To assess thermoregulatory competence in offspring exposed to maternal antibiotics.
- To explore potential links between thermoregulation, microbiome disruption, and behavioral changes.
Main Methods:
- Antibiotic treatment of C57BL/6J mouse dams during gestation and early lactation.
- Assay of offspring behaviors: ultrasonic vocalizations (USVs) during maternal separation, huddling, and home orientation.
- Measurement of pup thermoregulatory competence.
Main Results:
- Offspring of antibiotic-treated dams exhibited altered USV production and huddling behavior.
- Thermoregulatory deficiencies were observed in pups from antibiotic-exposed dams, particularly at younger ages.
- Behavioral differences were partially attributable to thermoregulatory deficits.
Conclusions:
- Early-life maternal antibiotic exposure disrupts the microbiome, thermoregulation, and behavior in offspring.
- Thermoregulatory impairments may underlie some observed behavioral alterations.
- Metabolic effects could confound the interpretation of behavioral changes following early-life antibiotic exposure.
Abstract:
Maternal antibiotic (ABx) exposure can significantly perturb the transfer of microbiota from mother to offspring, resulting in dysbiosis of potential relevance to neurodevelopmental disorders such as autism spectrum disorder (ASD). Studies in rodent models have found long-term neurobehavioral effects in offspring of ABx-treated dams, but ASD-relevant behavior during the early preweaning period has thus far been neglected. Here, we exposed C57BL/6J mouse dams to ABx (5 mg/ml neomycin, 1.25 μg/ml pimaricin, .075% v/v acetic acid) dissolved in drinking water from gestational day 12 through offspring postnatal day 14. A number of ASD-relevant behaviors were assayed in offspring, including ultrasonic vocalization (USV) production during maternal separation, group huddling in response to cold challenge, and olfactory-guided home orientation. In addition, we obtained measures of thermoregulatory competence in pups during and following behavioral testing. We found a number of behavioral differences in offspring of ABx-treated dams (e.g., modulation of USVs by pup weight, activity while huddling) and provide evidence that some of these behavioral effects can be related to thermoregulatory deficiencies, particularly at younger ages. Our results suggest not only that ABx can disrupt microbiomes, thermoregulation, and behavior, but that metabolic effects may confound the interpretation of behavioral differences observed after early-life ABx exposure.
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