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Context-dependent effects of microglial MyD88 removal on voluntary ethanol consumption in mice
Julia E Dziabis1, Neil Rogers1, Benjamin L Horvath1
1Department of Psychology and Neuroscience, Duke University, Durham, NC, 27710, USA.
Abstract:
Neuroimmune signaling is increasingly implicated in alcohol use disorder (AUD). Microglia, the brain's resident immune cells, signal in part through the adaptor protein myeloid differentiation primary response 88 (MyD88), a key mediator of innate immune responses. Here, we investigated whether microglial-specific MyD88 signaling regulates voluntary alcohol consumption in adulthood, as whole-body loss of MyD88 was previously shown to increase drinking. We further determined if alcohol altered parvalbumin-expressing interneurons (PVIs) and microglia within the pre-frontal cortex, based on our previously described role for MyD88 signaling on perineuronal net (PNN) deposition on PVIs in several brain regions, and the well characterized role of inhibitory signaling in alcohol use disorders. Loss of microglial-MyD88 had minimal effects on voluntary alcohol intake and anxiety-like behaviors. Alcohol exposure did not modify observed MyD88-dependent changes in PVIs/PNNs, despite altering microglial morphology in the male prefrontal cortex independent of genotype. The addition of an early life endotoxin challenge was sufficient to induce an increase in adult alcohol consumption in both MyD88-deficient and control males. However, injection of saline alone also induced an increase in adult drinking in MyD88-deficient males. These findings suggest that microglial-MyD88 signaling does not strongly regulate alcohol intake under baseline conditions in a one-bottle, voluntary binge-drinking paradigm, however there may be a role for microglial-MyD88 signaling in modulating the impact of developmental environmental contexts, such as stress, in later-life male drinking behavior. This work highlights the importance of developmental context, such as stress or inflammatory history, in understanding underlying microglia signaling mechanisms in conferring AUD risk.
Insights
Microglia-specific myeloid differentiation primary response 88 (MyD88) signaling minimally impacts adult alcohol consumption. However, early life stress may reveal a role for microglial MyD88 in modulating alcohol use disorder risk in males.
Area of Science:
- Neuroimmunology
- Neuroscience
- Alcohol Use Disorder Research
Background:
- Neuroimmune signaling, particularly involving microglia and myeloid differentiation primary response 88 (MyD88), is increasingly linked to alcohol use disorder (AUD).
- Previous studies indicated whole-body MyD88 deficiency increases alcohol consumption, prompting investigation into microglial-specific roles.
Purpose of the Study:
- To determine if microglial-specific MyD88 signaling regulates voluntary alcohol consumption in adult male mice.
- To examine alcohol's effects on parvalbumin-expressing interneurons (PVIs) and microglia in the prefrontal cortex, considering MyD88's role in perineuronal net (PNN) deposition.
Main Methods:
- Investigated alcohol consumption and anxiety-like behaviors in mice with microglial-specific MyD88 deficiency.
- Analyzed prefrontal cortex microglia and PVI/PNN status after alcohol exposure.
- Assessed the impact of early life endotoxin or saline challenge on adult alcohol consumption in different genotypes.
Main Results:
- Loss of microglial MyD88 showed minimal effects on voluntary alcohol intake and anxiety.
- Alcohol exposure altered microglial morphology in the male prefrontal cortex but did not affect PVI/PNNs.
- Early life endotoxin challenge increased adult alcohol consumption in both MyD88-deficient and control males; saline also increased drinking in MyD88-deficient males.
Conclusions:
- Microglial-specific MyD88 signaling does not significantly regulate alcohol intake in a standard voluntary drinking paradigm.
- Developmental environmental factors, like early life stress or inflammation, may interact with microglial MyD88 signaling to influence later-life alcohol consumption in males.
- Highlights the critical role of developmental context in understanding AUD risk and microglial function.
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