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Updated: Feb 7, 2026

Investigating Alterations in Caecum Microbiota After Traumatic Brain Injury in Mice
Published on: September 19, 2019
Microbiota influence the development of the brain and behaviors in C57BL/6J mice
Jing Lu1, Sylvia Synowiec2, Lei Lu1
1Department of Pediatrics, Neonatology, Pritzker School of Medicine, the University of Chicago, Chicago, Illinois, United States of America.
Abstract:
We investigated the contributions of commensal bacteria to brain structural maturation by magnetic resonance imaging and behavioral tests in four and 12 weeks old C57BL/6J specific pathogen free (SPF) and germ free (GF) mice. SPF mice had increased volumes and fractional anisotropy in major gray and white matter areas and higher levels of myelination in total brain, major white and grey matter structures at either four or 12 weeks of age, demonstrating better brain maturation and organization. In open field test, SPF mice had better mobility and were less anxious than GF at four weeks. In Morris water maze, SPF mice demonstrated better spatial and learning memory than GF mice at 12 weeks. In fear conditioning, SPF mice had better contextual memory than GF mice at 12 weeks. In three chamber social test, SPF mice demonstrated better social novelty than GF mice at 12 weeks. Our data demonstrate numerous significant differences in morphological brain organization and behaviors between SPF and GF mice. This suggests that commensal bacteria are necessary for normal morphological development and maturation in the grey and white matter of the brain regions with implications for behavioral outcomes such as locomotion and cognitive functions.
Insights
Commensal bacteria are essential for normal brain development. Germ-free mice show poorer brain structure and cognitive function compared to specific pathogen-free mice.
Area of Science:
- Neuroscience
- Microbiology
- Developmental Biology
Background:
- The gut microbiome plays a crucial role in host physiology.
- The influence of commensal bacteria on brain development is increasingly recognized.
Purpose of the Study:
- To investigate the impact of commensal bacteria on brain structural maturation and associated behaviors.
- To compare brain development and function in specific pathogen-free (SPF) and germ-free (GF) mice.
Main Methods:
- Magnetic resonance imaging (MRI) was used to assess brain structure.
- Behavioral tests including open field, Morris water maze, fear conditioning, and social interaction tests were performed.
- C57BL/6J mice at four and 12 weeks of age were used.
Main Results:
- SPF mice exhibited increased gray and white matter volumes and myelination compared to GF mice.
- SPF mice demonstrated enhanced mobility, reduced anxiety, and superior spatial learning, memory, and social novelty.
- Significant differences in brain morphology and behavior were observed between SPF and GF mice.
Conclusions:
- Commensal bacteria are necessary for normal morphological development and maturation of brain regions.
- Microbial colonization influences brain organization, impacting cognitive functions and locomotion.
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