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Updated: Sep 22, 2025

Animal Models of Depression - Chronic Despair Model CDM
Published on: September 23, 2021
Stress-induced despair behavior develops independently of the Ahr-RORγt axis in CD4 + cells
Courtney R Rivet-Noor1,2,3, Andrea R Merchak1,2,3, Sihan Li2,4
1Center for Brain Immunology and Glia, University of Virginia School of Medicine, Charlottesville, VA, 22908, USA.
Abstract:
Current treatments for major depressive disorder are limited to neuropharmacological approaches and are ineffective for large numbers of patients. Recently, alternative means have been explored to understand the etiology of depression. Specifically, changes in the microbiome and immune system have been observed in both clinical settings and in mouse models. As such, microbial supplements and probiotics have become a target for potential therapeutics. A current hypothesis for the mechanism of action of these supplements is via the aryl hydrocarbon receptor's (Ahr) modulation of the T helper 17 cell (Th17) and T regulatory cell axis. As inflammatory RORγt + CD4 + Th17 T cells and their primary cytokine IL-17 have been implicated in the development of stress-induced depression, the connection between stress, the Ahr, Th17s and depression remains critical to understanding mood disorders. Here, we utilize genetic knockouts to examine the role of the microbial sensor Ahr in the development of stressinduced despair behavior. We observe an Ahr-independent increase in gut-associated Th17s in stressed mice, indicating that the Ahr is not responsible for this communication. Further, we utilized a CD4-specific RAR Related Orphan Receptor C (Rorc) knockout line to disrupt the production of Th17s. Mice lacking Rorc-produced IL-17 did not show any differences in behavior before or after stress when compared to controls. Finally, we utilize an unsupervised machine learning system to examine minute differences in behavior that could not be observed by traditional behavioral assays. Our data demonstrate that neither CD4 specific Ahr nor Rorc are necessary for the development of stress-induced anxiety- or depressive-like behaviors. These data suggest that research approaches should focus on other sources or sites of IL-17 production in stress-induced depression.
Insights
The aryl hydrocarbon receptor (Ahr) and Rorc are not essential for stress-induced depression behaviors in mice. Research should explore alternative IL-17 production sites for mood disorder treatments.
Area of Science:
- Neuroscience
- Immunology
- Microbiome Research
Background:
- Major depressive disorder treatments are limited, prompting research into alternative etiologies like microbiome and immune system changes.
- The aryl hydrocarbon receptor (Ahr) and T helper 17 (Th17) cells are hypothesized to mediate the effects of microbial supplements on depression.
- Inflammatory Th17 cells and IL-17 are implicated in stress-induced depression, highlighting the need to understand the Ahr-Th17 axis in mood disorders.
Purpose of the Study:
- To investigate the role of the microbial sensor Ahr in stress-induced depression using genetic knockouts.
- To examine the necessity of CD4-specific Ahr and Rorc (RAR Related Orphan Receptor C) in the development of stress-induced despair behaviors.
- To identify alternative sources or sites of IL-17 production relevant to stress-induced depression.
Main Methods:
- Utilized genetic knockout mouse models, specifically targeting Ahr and Rorc.
- Administered stress to mice and assessed behavioral changes using traditional assays and unsupervised machine learning.
- Analyzed gut-associated Th17 cell populations and IL-17 production.
Main Results:
- Stress induced an Ahr-independent increase in gut-associated Th17 cells.
- Mice lacking CD4-specific Rorc and IL-17 production showed no significant behavioral differences after stress.
- Neither CD4-specific Ahr nor Rorc were found to be necessary for stress-induced anxiety- or depressive-like behaviors.
Conclusions:
- The aryl hydrocarbon receptor (Ahr) does not mediate the increase in gut Th17 cells during stress.
- CD4-specific Rorc and its IL-17 production are not critical for stress-induced depressive behaviors.
- Future research on stress-induced depression should investigate other IL-17 production pathways beyond CD4+ T cells.
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