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Updated: Apr 25, 2026

Intracerebroventricular Delivery of Gut-Derived Microbial Metabolites in Freely Moving Mice
Published on: June 2, 2022
Obese-type gut microbiota induce neurobehavioral changes in the absence of obesity
Annadora J Bruce-Keller1, J Michael Salbaum1, Meng Luo2
1Pennington Biomedical Research Center, Louisiana State University System, Baton Rouge.
Background:
The prevalence of mental illness, particularly depression and dementia, is increased by obesity. Here, we test the hypothesis that obesity-associated changes in gut microbiota are intrinsically able to impair neurocognitive behavior in mice.
Methods:
Conventionally housed, nonobese, adult male C57BL/6 mice maintained on a normal chow diet were subjected to a microbiome depletion/transplantation paradigm using microbiota isolated from donors on either a high-fat diet (HFD) or control diet. Following re-colonization, mice were subjected to comprehensive behavioral and biochemical analyses.
Results:
The mice given HFD microbiota had significant and selective disruptions in exploratory, cognitive, and stereotypical behavior compared with mice with control diet microbiota in the absence of significant differences in body weight. Sequencing-based phylogenetic analysis confirmed the presence of distinct core microbiota between groups, with alterations in α- and β-diversity, modulation in taxonomic distribution, and statistically significant alterations to metabolically active taxa. HFD microbiota also disrupted markers of intestinal barrier function, increased circulating endotoxin, and increased lymphocyte expression of ionized calcium-binding adapter molecule 1, toll-like receptor 2, and toll-like receptor 4. Finally, evaluation of brain homogenates revealed that HFD-shaped microbiota increased neuroinflammation and disrupted cerebrovascular homeostasis.
Conclusions:
Collectively, these data reinforce the link between gut dysbiosis and neurologic dysfunction and suggest that dietary and/or pharmacologic manipulation of gut microbiota could attenuate the neurologic complications of obesity.
Insights
Obesity-linked gut bacteria can impair brain function, causing cognitive and behavioral issues in mice. Modifying gut microbiota may help prevent obesity-related neurological problems.
Area of Science:
- Neuroscience
- Microbiology
- Gastroenterology
Background:
- Obesity is linked to increased prevalence of mental illnesses like depression and dementia.
- This study investigates if obesity-induced gut microbiota changes directly cause neurocognitive deficits.
Purpose of the Study:
- To determine if gut microbiota from obese mice can impair neurocognitive behavior in recipient mice.
Main Methods:
- Mice received gut microbiota from donors on high-fat diet (HFD) or control diet.
- Behavioral and biochemical analyses were performed post-recolonization.
Main Results:
- Mice with HFD microbiota showed cognitive and behavioral disruptions without weight change.
- HFD microbiota altered gut barrier function, increased endotoxin, and promoted neuroinflammation.
- Distinct microbial communities and diversity changes were observed between groups.
Conclusions:
- Gut dysbiosis is linked to neurological dysfunction.
- Targeting gut microbiota may mitigate obesity-related neurological complications.
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