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.

Biological Psychiatry
|September 9, 2017
PubMed
Abstract

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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