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Published on: February 27, 2014
Stressor-Induced Reduction in Cognitive Behavior is Associated with Impaired Colonic Mucus Layer Integrity and is
Robert M Jaggers1, Damon J DiSabato2,3, Brett R Loman1
1Center for Microbial Pathogenesis, Abigail Wexner Research Institute at Nationwide Children's Hospital, Columbus, OH, 43205, USA.
Purpose:
Commensal microbes are impacted by stressor exposure and are known contributors to cognitive and social behaviors, but the pathways through which gut microbes influence stressor-induced behavioral changes are mostly unknown. A murine social stressor was used to determine whether host-microbe interactions are necessary for stressor-induced inflammation, including neuroinflammation, that leads to reduced cognitive and social behavior.
Methods:
C57BL/6 male mice were exposed to a paired fighting social stressor over a 1 hr period for 6 consecutive days. Y-maze and social interaction behaviors were tested following the last day of the stressor. Serum cytokines and lipopolysaccharide binding protein (LBP) were measured and the number and morphology of hippocampal microglia determined via immunohistochemistry. Intestinal mucous thickness and antimicrobial peptide expression were determined via fluorescent staining and real-time PCR (respectively) and microbial community composition was assessed using 16S rRNA gene amplicon sequencing. To determine whether the microbiota or the LBP receptor (CD14) are necessary for stressor-induced behavioral changes, experiments were performed in mice treated with a broad-spectrum antibiotic cocktail or in CD14-/- mice.
Results:
The stressor reduced Y-maze spontaneous alternations, which was accompanied by increased microglia in the hippocampus, increased circulating cytokines (eg, IL-6, TNF-α) and LBP, and reduced intestinal mucus thickness while increasing antimicrobial peptides and cytokines. These stressor-induced changes were largely prevented in mice given broad-spectrum antibiotics and in CD14-/- mice. In contrast, social stressor-induced alterations of social behavior were not microbe-dependent.
Conclusion:
Stressor-induced cognitive deficits involve enhanced bacterial interaction with the intestine, leading to low-grade, CD14-dependent, inflammation.
Insights
Social stress impacts gut microbes, causing inflammation and cognitive deficits. These changes, driven by bacterial interactions and CD14, were reversed by antibiotics and in CD14 knockout mice.
Area of Science:
- Neuroscience
- Microbiology
- Immunology
Background:
- Commensal microbes influence cognitive and social behaviors.
- Pathways linking gut microbes to stress-induced behavioral changes are largely unknown.
- Stressors can impact host-microbe interactions, potentially leading to inflammation.
Purpose of the Study:
- To investigate if host-microbe interactions are necessary for stressor-induced inflammation, including neuroinflammation.
- To determine the role of gut microbiota in stressor-induced cognitive and social behavioral changes.
- To elucidate the pathways through which gut microbes influence stressor-induced behavioral changes.
Main Methods:
- A social stressor paradigm was applied to C57BL/6 male mice.
- Cognitive (Y-maze) and social interaction behaviors were assessed.
- Microbial composition, gut barrier integrity, serum cytokines, lipopolysaccharide binding protein (LBP), and hippocampal microglia were analyzed.
- Experiments were conducted in antibiotic-treated mice and CD14 knockout mice to assess microbiota and CD14 dependency.
Main Results:
- Social stress reduced cognitive function (Y-maze alternations) and altered hippocampal microglia and circulating cytokines (IL-6, TNF-α).
- Stressor exposure led to decreased intestinal mucus and increased antimicrobial peptides and cytokines.
- Antibiotic treatment and CD14 deficiency largely prevented stressor-induced cognitive deficits and inflammation.
- Social behavior alterations induced by the stressor were not dependent on the microbiota.
Conclusions:
- Stressor-induced cognitive deficits are linked to increased bacterial interaction with the gut.
- This interaction promotes low-grade, CD14-dependent inflammation, contributing to cognitive impairment.
- Host-microbe interactions play a crucial role in mediating stressor-induced cognitive deficits via inflammation.
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