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Updated: Feb 1, 2026

A Mouse Model of Subchronic and Mild Social Defeat Stress for Understanding Stress-induced Behavioral and Physiological Deficits
Published on: November 24, 2015
The Influence of Microglial Elimination and Repopulation on Stress Sensitization Induced by Repeated Social Defeat
Michael D Weber1, Daniel B McKim1, Anzela Niraula1
1Department of Neuroscience, The Ohio State University Wexner Medical Center, Columbus, Ohio; Division of Biosciences, The Ohio State University College of Dentistry, Columbus, Ohio.
Background:
Stress is associated with an increased prevalence of anxiety and depression. Repeated social defeat (RSD) stress in mice increases the release of monocytes from the bone marrow that are recruited to the brain by microglia. These monocytes enhance inflammatory signaling and augment anxiety. Moreover, RSD promotes stress sensitization, in which exposure to acute stress 24 days after cessation of RSD causes anxiety recurrence. The purpose of this study was to determine whether microglia were critical to stress sensitization and exhibited increased reactivity to subsequent acute stress or immune challenge.
Methods:
Mice were exposed to RSD, microglia were eliminated by colony-stimulating factor 1 receptor antagonism (PLX5622) and allowed to repopulate, and responses to acute stress or immune challenge (lipopolysaccharide) were determined 24 days after RSD sensitization.
Results:
Microglia maintained a unique messenger RNA signature 24 days after RSD. Moreover, elimination of RSD-sensitized microglia prevented monocyte accumulation in the brain and blocked anxiety recurrence following acute stress (24 days). When microglia were eliminated prior to RSD and repopulated and mice were subjected to acute stress, there was monocyte accumulation in the brain and anxiety in RSD-sensitized mice. These responses were unaffected by microglial elimination/repopulation. This may be related to neuronal sensitization that persisted 24 days after RSD. Following immune challenge, there was robust microglial reactivity in RSD-sensitized mice associated with prolonged sickness behavior. Here, microglial elimination/repopulation prevented the amplified immune reactivity ex vivo and in vivo in RSD-sensitized mice.
Conclusions:
Microglia and neurons remain sensitized weeks after RSD, and only the immune reactivity component of RSD-sensitized microglia was prevented by elimination/repopulation.
Insights
Repeated social defeat stress sensitizes microglia, leading to anxiety and heightened immune responses. Eliminating microglia prevented anxiety recurrence but not neuronal sensitization after stress.
Area of Science:
- Neuroscience
- Immunology
- Psychiatry
Background:
- Stress, including repeated social defeat (RSD), elevates anxiety and depression risk.
- RSD stress increases monocyte release, brain recruitment by microglia, and inflammatory signaling, augmenting anxiety.
- RSD induces stress sensitization, causing anxiety recurrence upon subsequent acute stress exposure.
Purpose of the Study:
- To investigate the critical role of microglia in stress sensitization.
- To determine if microglia exhibit heightened reactivity to subsequent stress or immune challenges post-RSD.
Main Methods:
- Mice underwent RSD, followed by microglia elimination using colony-stimulating factor 1 receptor antagonism (PLX5622).
- Microglia were allowed to repopulate, and responses to acute stress or lipopolysaccharide (immune challenge) were assessed 24 days post-RSD.
- Microglial roles were examined by eliminating them before RSD, allowing repopulation, and then applying acute stress.
Main Results:
- Microglia retained a distinct messenger RNA signature 24 days after RSD.
- Eliminating RSD-sensitized microglia blocked brain monocyte accumulation and anxiety recurrence after delayed acute stress.
- When microglia were eliminated before RSD and then repopulated, subsequent acute stress still induced brain monocyte accumulation and anxiety, suggesting persistent neuronal sensitization.
- RSD-sensitized mice showed exaggerated microglial reactivity and prolonged sickness behavior after immune challenge, which was mitigated by microglial elimination/repopulation.
Conclusions:
- Microglia and neurons remain sensitized for weeks after RSD.
- Eliminating and repopulating microglia only prevented the immune reactivity component of RSD-sensitized microglia, not neuronal sensitization.
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