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The Unpredictable Chronic Mild Stress Protocol for Inducing Anhedonia in Mice
Published on: October 24, 2018
Minocycline Ameliorates Chronic Unpredictable Mild Stress-Induced Neuroinflammation and Abnormal mPFC-HIPP
Sidra Tabassum1,2,3, Afzal Misrani1,2,3, Qingwei Huo4
1Precise Genome Engineering Center, School of Life Sciences, Guangzhou University, Guangzhou, 510006, China.
Abstract:
Stress-induced neuroinflammation is a hallmark of modern society and has been linked to various emotional disorders, including anxiety. However, how microglia-associated neuroinflammation under chronic unpredictable mild stress (CUMS) alters mitochondrial function and subsequent medial prefrontal cortex-hippocampus (mPFC-HIPP) connectivity remains obscure. We speculated that CUMS might induce neuroinflammation, which involves altered mitochondrial protein levels, blockade of neuroinflammation by a microglial modulator, minocycline, protects against CUMS-induced alterations. Mice were exposed to CUMS for 3 weeks and received minocycline (50 mg/kg) intraperitoneally for 7 consecutive days during the 3rd week of CUMS. Novelty-suppressed feeding test and contextual anxiety test assessed anxiety-like behavior. Western blotting and immunofluorescent staining were employed to evaluate levels of proteins involved in neuroinflammation and mitochondrial function. In vivo dual-site extracellular recordings of local field potential (LFP) were conducted to evaluate the oscillatory activity and brain connectivity in mPFC-HIPP circuitry. We show that CUMS results in excessive microglial activation accompanied by aberrant levels of mitochondrial proteins, such as ATP-5A and the fission protein, Drp-1, increased oxidative stress indicated by elevated levels of nitrotyrosine, and decreased Nrf-2 levels. Furthermore, CUMS causes downregulation of α1 subunit of GABAAR, vesicular GABA transporter (Vgat), and glutamine synthetase (GS), leading to impaired LFP and connectivity of the mPFC-HIPP circuitry. Strikingly, blockage of microglial activation by minocycline ameliorates CUMS-induced aberrant levels of mitochondrial and GABAergic signaling proteins and prevents CUMS-induced anxiety-like behavior in mice. To the end, the study revealed that microglia is critically involved in stress-induced neuroinflammation, which may underlie the molecular mechanism of CUMS-induced anxiety behavior.
Insights
Chronic stress causes neuroinflammation, altering mitochondrial function and brain connectivity, leading to anxiety. Minocycline treatment blocks this, preventing stress-induced anxiety behaviors by modulating microglial activation and protein levels.
Area of Science:
- Neuroscience
- Molecular Biology
- Psychiatry
Background:
- Stress-induced neuroinflammation is linked to anxiety disorders.
- The role of microglia in stress-induced mitochondrial dysfunction and brain connectivity is unclear.
Purpose of the Study:
- Investigate how chronic unpredictable mild stress (CUMS) affects mitochondrial function and medial prefrontal cortex-hippocampus (mPFC-HIPP) connectivity via microglia-associated neuroinflammation.
- Determine if minocycline, a microglial modulator, can prevent CUMS-induced alterations.
Main Methods:
- Mice were subjected to CUMS and treated with minocycline.
- Anxiety-like behaviors were assessed using novelty-suppressed feeding and contextual anxiety tests.
- Western blotting, immunofluorescence, and in vivo electrophysiology were used to analyze neuroinflammation, mitochondrial function, and mPFC-HIPP connectivity.
Main Results:
- CUMS induced microglial activation, altered mitochondrial protein levels (ATP-5A, Drp-1), increased oxidative stress (nitrotyrosine), and decreased Nrf-2.
- CUMS downregulated GABAergic signaling proteins (GABAAR α1, Vgat, GS), impairing mPFC-HIPP LFP and connectivity.
- Minocycline treatment ameliorated these CUMS-induced changes and prevented anxiety-like behavior.
Conclusions:
- Microglia play a critical role in stress-induced neuroinflammation.
- This neuroinflammation pathway, involving mitochondrial and GABAergic dysfunction, underlies CUMS-induced anxiety behavior.
- Minocycline shows potential therapeutic effects by targeting microglial activation in stress-related disorders.
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