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Disruption of Frontal Lobe Neural Synchrony During Cognitive Control by Alcohol Intoxication
Published on: February 6, 2019
Impact of TLR4 on behavioral and cognitive dysfunctions associated with alcohol-induced neuroinflammatory damage
María Pascual1, Pablo Baliño, Silvia Alfonso-Loeches
1Department of Cell Pathology, Príncipe Felipe Research Center, Avda. Autopista del Saler 16, 46012 Valencia, Spain.
Abstract:
Toll-like receptors (TLRs) play an important role in the innate immune response, and emerging evidence indicates their role in brain injury and neurodegeneration. Our recent results have demonstrated that ethanol is capable of activating glial TLR4 receptors and that the elimination of these receptors in mice protects against ethanol-induced glial activation, induction of inflammatory mediators and apoptosis. This study was designed to assess whether ethanol-induced inflammatory damage causes behavioral and cognitive consequences, and if behavioral alterations are dependent of TLR4 functions. Here we show in mice drinking alcohol for 5months, followed by a 15-day withdrawal period, that activation of the astroglial and microglial cells in frontal cortex and striatum is maintained and that these events are associated with cognitive and anxiety-related behavioral impairments in wild-type (WT) mice, as demonstrated by testing the animals with object memory recognition, conditioned taste aversion and dark and light box anxiety tasks. Mice lacking TLR4 receptors are protected against ethanol-induced inflammatory damage, and behavioral associated effects. We further assess the possibility of the epigenetic modifications participating in short- or long-term behavioral effects associated with neuroinflammatory damage. We show that chronic alcohol treatment decreases H4 histone acetylation and histone acetyltransferases activity in frontal cortex, striatum and hippocampus of WT mice. Alterations in chromatin structure were not observed in TLR4(-/-) mice. These results provide the first evidence of the role that TLR4 functions play in the behavioral consequences of alcohol-induced inflammatory damage and suggest that the epigenetic modifications mediated by TLR4 could contribute to short- or long-term alcohol-induced behavioral or cognitive dysfunctions.
Insights
Toll-like receptor 4 (TLR4) activation by ethanol contributes to brain inflammation and cognitive deficits. Blocking TLR4 protects against alcohol-induced neuroinflammation and behavioral impairments, suggesting a key role in alcohol-related dysfunction.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Toll-like receptors (TLRs) are crucial in innate immunity and implicated in brain injury.
- Ethanol activates glial TLR4, leading to neuroinflammation, apoptosis, and potential behavioral changes.
Purpose of the Study:
- To investigate if ethanol-induced neuroinflammation causes behavioral and cognitive deficits.
- To determine if these behavioral alterations are dependent on TLR4 function.
Main Methods:
- Chronic ethanol administration in wild-type (WT) and TLR4-deficient mice.
- Behavioral testing (object memory, taste aversion, anxiety tasks).
- Assessment of glial activation, inflammatory mediators, apoptosis, and epigenetic modifications (histone acetylation).
Main Results:
- Chronic ethanol induced sustained glial activation and cognitive/anxiety impairments in WT mice.
- TLR4-deficient mice were protected from ethanol-induced neuroinflammation and behavioral deficits.
- Ethanol decreased histone acetylation and histone acetyltransferase activity in WT mice, an effect absent in TLR4-deficient mice.
Conclusions:
- TLR4 plays a critical role in mediating the behavioral consequences of alcohol-induced neuroinflammation.
- Epigenetic modifications, specifically histone acetylation, influenced by TLR4 may contribute to alcohol-induced cognitive and behavioral dysfunctions.
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