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Disruption of Frontal Lobe Neural Synchrony During Cognitive Control by Alcohol Intoxication
Published on: February 6, 2019
Increased MCP-1 and microglia in various regions of the human alcoholic brain
1Bowles Center for Alcohol Studies, Department of Pharmacology and Psychiatry, School of Medicine, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-7178, USA. junhe@med.unc.edu
Abstract:
Cytokines and microglia have been implicated in anxiety, depression, neurodegeneration as well as the regulation of alcohol drinking and other consumatory behaviors, all of which are associated with alcoholism. Studies using animal models of alcoholism suggest that microglia and proinflammatory cytokines contribute to alcoholic pathologies [Crews, F.T., Bechara, R., Brown, L.A., Guidot, D.M., Mandrekar, P., Oak, S., Qin, L., Szabo, G., Wheeler, M., Zou, J., (2006) Cytokines and alcohol. Alcohol., Clin. Exp. Res. 30:720-730]. In the current study, human postmortem brains from moderate drinking controls and alcoholics obtained from the New South Wales Tissue Resource Center were used to study the cytokine, monocyte chemoattractant protein 1 (MCP-1,CCL2) and microglia markers in various brain regions. Since MCP-1 is a key proinflammatory cytokine induced by chronic alcohol treatment of mice, and known to regulate drinking behavior in mice, MCP-1 protein levels from human brain homogenate were measured using ELISA, and indicated increased MCP-1 concentration in ventral tegmental area (VTA), substantia nigra (SN), hippocampus and amygdala of alcoholic brains as compared with controls. Immunohistochemistry was further performed to visualize human microglia using ionized calcium binding adaptor protein-1 (Iba-1), and Glucose transporter-5 (GluT5). Alcoholics were found to have brain region-specific increases in microglial markers. In cingulate cortex, both Iba-1 and GluT5 were increased in alcoholic brains relative to controls. Alternatively, no detectable change was found in amygdala nuclei. In VTA and midbrain, only GluT5, but not Iba-1 was increased in alcoholic brains. These data suggest that the enhanced expression of MCP-1 and microglia activities in alcoholic brains could contribute to ethanol-induced pathogenesis.
Insights
Alcoholism is linked to increased levels of monocyte chemoattractant protein 1 (MCP-1) and activated microglia in specific brain regions. These changes in the alcoholic brain may contribute to alcohol-related damage and neurodegeneration.
Area of Science:
- Neuroscience
- Immunology
- Addiction Research
Background:
- Cytokines and microglia are implicated in neurological disorders and alcohol consumption.
- Animal studies suggest microglia and proinflammatory cytokines contribute to alcohol-related brain damage.
Purpose of the Study:
- To investigate the levels of monocyte chemoattractant protein 1 (MCP-1) and microglia markers in postmortem human brains from alcoholics and moderate drinkers.
- To determine if MCP-1 and microglial activation correlate with alcoholism in specific brain regions.
Main Methods:
- Human postmortem brain tissue from alcoholics and controls was analyzed.
- MCP-1 protein levels were measured using ELISA.
- Microglia markers (Iba-1, GluT5) were visualized using immunohistochemistry.
Main Results:
- Alcoholic brains showed increased MCP-1 concentrations in the ventral tegmental area (VTA), substantia nigra (SN), hippocampus, and amygdala.
- Brain region-specific increases in microglial markers were observed in alcoholics.
- Iba-1 and GluT5 were elevated in the cingulate cortex; only GluT5 was increased in the VTA and midbrain.
Conclusions:
- Enhanced MCP-1 expression and microglial activity in the alcoholic brain may contribute to ethanol-induced neuropathology.
- These findings highlight the role of neuroinflammation in the pathogenesis of alcoholism.

