How Inflammation Affects the Brain in Depression: A Review of Functional and Structural MRI Studies
1Department of Psychiatry, Korea University Anam Hospital, Korea University College of Medicine, Seoul, Korea.
Abstract:
This narrative review discusses how peripheral and central inflammation processes affect brain function and structure in depression, and reports on recent peripheral inflammatory marker-based functional and structural magnetic resonance imaging (MRI) studies from the perspective of neural-circuit dysfunction in depression. Chronic stress stimulates the activity of microglial cells, which increases the production of pro-inflammatory cytokines in the brain. In addition, microglial activation promotes a shift from the synthesis of serotonin to the synthesis of neurotoxic metabolites of the kynurenine pathway, which induces glutamate-mediated excitotoxicity in neurons. Furthermore, the region specificity of microglial activation is hypothesized to contribute to the vulnerability of specific brain regions in the depression-related neural circuits to inflammation-mediated brain injury. MRI studies are increasingly investigating how the blood levels of inflammatory markers such as C-reactive protein, interleukin (IL)-1β, IL-6, and tumor necrosis factor-α are associated with functional and structural neuroimaging markers in depression. Functional MRI studies have found that peripheral inflammatory markers are associated with aberrant activation patterns and altered functional connectivity in neural circuits involved in emotion regulation, reward processing, and cognitive control in depression. Structural MRI studies have suggested that peripheral inflammatory markers are related to reduced cortical gray matter and subcortical volumes, cortical thinning, and decreased integrity of white matter tracts within depression-related neural circuits. These neuroimaging findings may improve our understanding of the relationships between neuroinflammatory processes at the molecular level and macroscale in vivo neuralcircuit dysfunction in depression.
Insights
Peripheral inflammation impacts brain structure and function in depression. Neuroimaging studies link inflammatory markers to altered neural circuits, revealing inflammation
Area of Science:
- Neuroscience
- Psychiatry
- Immunology
Background:
- Depression is linked to central and peripheral inflammation.
- Chronic stress activates microglial cells, increasing brain pro-inflammatory cytokines.
- Microglial activation alters serotonin synthesis and promotes neurotoxic kynurenine pathway metabolites.
Purpose of the Study:
- To review how peripheral and central inflammation affect brain function and structure in depression.
- To examine recent peripheral inflammatory marker-based functional and structural MRI studies.
- To understand neural-circuit dysfunction in depression from an inflammation perspective.
Main Methods:
- Narrative review of existing literature.
- Analysis of peripheral inflammatory marker associations with functional MRI (fMRI) and structural MRI data.
- Focus on C-reactive protein, interleukin (IL)-1β, IL-6, and tumor necrosis factor-α.
Main Results:
- Peripheral inflammatory markers correlate with aberrant activation and altered functional connectivity in emotion, reward, and cognitive control circuits.
- Inflammatory markers are associated with reduced gray matter, smaller subcortical volumes, cortical thinning, and white matter tract integrity.
- Region-specific microglial activation may explain vulnerability in specific neural circuits.
Conclusions:
- Peripheral inflammation significantly impacts brain structure and function in depression.
- Neuroimaging findings link peripheral inflammatory markers to macroscale neural circuit dysfunction.
- Understanding these relationships enhances knowledge of neuroinflammation's role in depression.
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