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Updated: Feb 23, 2026

A Chronic Immobilization Stress Protocol for Inducing Depression-Like Behavior in Mice
Published on: May 15, 2019
Persistent Increase in Microglial RAGE Contributes to Chronic Stress-Induced Priming of Depressive-like Behavior
Tina C Franklin1, Eric S Wohleb1, Yi Zhang1
1Department of Psychiatry, Yale University School of Medicine, New Haven, Connecticut.
Background:
Chronic stress-induced inflammatory responses occur in part via danger-associated molecular pattern (DAMP) molecules, such as high mobility group box 1 protein (HMGB1), but the receptor(s) underlying DAMP signaling have not been identified.
Methods:
Microglia morphology and DAMP signaling in enriched rat hippocampal microglia were examined during the development and expression of chronic unpredictable stress (CUS)-induced behavioral deficits, including long-term, persistent changes after CUS.
Results:
The results show that CUS promotes significant morphological changes and causes robust upregulation of HMGB1 messenger RNA in enriched hippocampal microglia, an effect that persists for up to 6 weeks after CUS exposure. This coincides with robust and persistent upregulation of receptor for advanced glycation end products (RAGE) messenger RNA, but not toll-like receptor 4 in hippocampal microglia. CUS also increased surface expression of RAGE protein on hippocampal microglia as determined by flow cytometry and returned to basal levels 5 weeks after CUS. Importantly, exposure to short-term stress was sufficient to increase RAGE surface expression as well as anhedonic behavior, reflecting a primed state that results from a persistent increase in RAGE messenger RNA expression. Further evidence for DAMP signaling in behavioral responses is provided by evidence that HMGB1 infusion into the hippocampus was sufficient to cause anhedonic behavior and by evidence that RAGE knockout mice were resilient to stress-induced anhedonia.
Conclusions:
Together, the results provide evidence of persistent microglial HMGB1-RAGE expression that increases vulnerability to depressive-like behaviors long after chronic stress exposure.
Insights
Chronic stress persistently increases microglial HMGB1 and RAGE expression, elevating vulnerability to depressive behaviors long after stress exposure. This highlights a key mechanism in stress-related mental health disorders.
Area of Science:
- Neuroscience
- Immunology
- Molecular Biology
Background:
- Chronic stress triggers inflammatory responses mediated by danger-associated molecular pattern (DAMP) molecules like HMGB1.
- The specific receptors involved in DAMP signaling during chronic stress remain largely unidentified.
Purpose of the Study:
- To investigate the role of microglial DAMP signaling in chronic unpredictable stress (CUS)-induced behavioral deficits.
- To identify the receptor(s) for HMGB1 in hippocampal microglia under chronic stress conditions.
Main Methods:
- Examined microglia morphology and DAMP signaling in rat hippocampal microglia exposed to chronic unpredictable stress (CUS).
- Assessed messenger RNA (mRNA) and protein expression of HMGB1, RAGE, and TLR4.
- Utilized flow cytometry to determine RAGE surface expression and behavioral tests in RAGE knockout mice.
Main Results:
- CUS induced persistent morphological changes and HMGB1 mRNA upregulation in hippocampal microglia for up to 6 weeks.
- A sustained increase in receptor for advanced glycation end products (RAGE) mRNA and surface protein expression was observed, unlike TLR4.
- HMGB1 infusion caused anhedonia, and RAGE knockout mice were resilient to stress-induced anhedonia, confirming RAGE's role.
Conclusions:
- Chronic stress leads to persistent microglial HMGB1-RAGE signaling.
- This persistent signaling increases vulnerability to depressive-like behaviors even after stress cessation.
- Identifies a critical pathway linking chronic stress, neuroinflammation, and mood disorders.
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