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Updated: Mar 3, 2026

A Chronic Immobilization Stress Protocol for Inducing Depression-Like Behavior in Mice
Published on: May 15, 2019
Microglia Loss Contributes to the Development of Major Depression Induced by Different Types of Chronic Stresses
Lijuan Tong1,2, Yu Gong1,2, Peng Wang1,2
1Department of Pharmacology, School of Pharmacy, Nantong University, #19 Qixiu Road, Nantong, 226001, Jiangsu, China.
Abstract:
Recently, the loss and dystrophy of hippocampal microglia induced by chronic unpredictable stress (CUS) has been reported to mediate the development of major depression in mice whose microglial cells were labeled with enhanced green fluorescent protein-conjuncted-CX3C receptor type 1. However, whether this happens in endogenous microglia with no genetic intervention remains unclear. Here, we addressed this issue in mice treated with different types of chronic stresses, including the CUS, chronic restraint stress (CRS) and chronic social defeat stress (CSDS). Results showed that the cellular numbers, process lengths, soma areas and activation markers of endogenous hippocampal but not cortical microglia, were markedly reduced by CUS, CRS and CSDS treatment. Administration of mice with two classical stimulators of microglia, lipopolysaccharide (LPS) or macrophage colony-stimulating factor (M-CSF), reversed the CUS-, CRS- and CSDS-induced reductions in endogenous hippocampal microglial numbers, and also improved the CUS-, CRS- or CSDS-induced behavioral abnormalities, including the increases in the immobile time in the forced swimming test and tail suspension test, the inhibition of sucrose preference, and the decrease in the time spent in the center of open field. Furthermore, inhibition of the initial activation of hippocampal microglia by minocycline pretreatment also reversed the reduction in hippocampal microglial numbers as well as the behavioral abnormalities induced by CUS, CRS and CSDS treatment. These results provide compelling evidences to show that different types of chronic stresses can trigger the loss of endogenous hippocampal microglia and restoration of microglial numbers may have therapeutic values in major depression.
Insights
Chronic stress causes loss of hippocampal microglia in mice. Restoring microglial numbers may help treat depression symptoms.
Area of Science:
- Neuroscience
- Immunology
- Psychiatry
Background:
- Chronic stress is linked to major depression.
- Hippocampal microglia loss is implicated in depression, but this was previously shown only in genetically modified mice.
Purpose of the Study:
- To investigate if chronic stress affects endogenous hippocampal microglia without genetic modification.
- To explore the therapeutic potential of restoring microglial numbers in stress-induced depression.
Main Methods:
- Mice were subjected to chronic unpredictable stress (CUS), chronic restraint stress (CRS), or chronic social defeat stress (CSDS).
- Changes in hippocampal and cortical microglia were assessed.
- Microglial stimulators (LPS, M-CSF) or an inhibitor (minocycline) were administered.
- Behavioral tests (forced swimming, tail suspension, sucrose preference, open field) were used to evaluate depression-like symptoms.
Main Results:
- CUS, CRS, and CSDS significantly reduced the number, process length, soma area, and activation of endogenous hippocampal microglia.
- Stimulating microglia with LPS or M-CSF reversed these reductions and improved depression-like behaviors.
- Inhibiting microglial activation with minocycline also reversed the stress-induced microglial loss and behavioral deficits.
Conclusions:
- Different types of chronic stress induce the loss of endogenous hippocampal microglia.
- Restoring hippocampal microglial numbers shows therapeutic potential for major depression.
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