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Holstein, S. E.

Publications and source records attributed to Holstein, S. E..

2 recordsLinked to original sources

Ethanol Self-Administration Reduces mGlu2/3 Protein Expression Specifically in the Nucleus Accumbens and mGlu2/3 Activation Suppresses Binge Drinking

BackgroundAlcohol use disorder (AUD) is associated with dysregulated glutamatergic signaling within mesocorticolimbic circuits that govern reinforcement and excessive ethanol intake. Group II metabotropic glutamate receptors (mGlu2/3) act primarily as presynaptic autoreceptors that regulate glutamate release. However, how voluntary alcohol intake alters mGlu2/3 expression within reward circuitry remains unclear. Methods and ResultsWe examined mGlu2/3 protein expression following a history of voluntary ethanol exposure and operant self-administration and, in separate cohorts, assessed the functional impact of group II receptor modulation on binge-like ethanol intake. Male C57BL/6J mice received two weeks of home-cage access to sweetened ethanol or sucrose followed by 35 days of operant self-administration. Immediately after the final session, tissue punches from the nucleus accumbens (NAc), amygdala, and prefrontal cortex were collected for immunoblot analysis. mGlu2/3 expression was reduced in the NAc of ethanol exposed mice with no statistically significant changes detected in the amygdala or prefrontal cortex. In separate binge-drinking cohorts, systemic administration of the mGlu2/3 agonist LY379268 reduced binge-like ethanol intake in a limited-access home-cage drinking model, whereas positive allosteric modulation of mGlu2 receptors with LY487379 was ineffective. ConclusionsVoluntary ethanol self-administration was associated with reduced mGlu2/3 protein expression in the NAc. Systemic pharmacological activation of group II receptors suppressed binge-like ethanol consumption. These findings identify mGlu2/3 dysregulation in a key reward-related brain region as a molecular adaptation associated with voluntary ethanol intake and demonstrate mechanistic regulation of binge drinking. This suggests that group II metabotropic glutamate signaling is a viable therapeutic target for treating AUD.

neuroscience↗

Caffeine Increases the Reinforcing Efficacy of Alcohol, an Effect that is Independent of Dopamine D2 Receptor Function

The rising popularity of alcohol mixed with energy drinks (AmEDs) has become a significant public health concern, with AmED users reporting higher levels of alcohol intake than non-AmED users. One mechanism proposed to explain heightened levels of alcohol intake in AmED users is that the high levels of caffeine found in energy drinks may increase the reinforcing properties of alcohol, an effect which may be dependent on interactions between adenosine signaling pathways and the dopamine D2 receptor. Therefore, the purpose of the current study was to confirm whether caffeine increases the reinforcing efficacy of alcohol using both fixed ratio (FR) and progressive ratio (PR) designs, and to investigate a potential role of the dopamine D2 receptor in caffeines reinforcement-enhancing effects. Male Long Evans rats were trained to self-administer a sweetened alcohol or sucrose solution on an FR2 schedule of reinforcement. Pretreatment with caffeine (5-10 mg/kg) significantly increased operant responding for the sweetened alcohol reinforcer, but not sucrose. PR tests of motivation for alcohol or sucrose likewise confirmed a caffeine-dependent increase in motivation for a sweetened alcohol solution, but not sucrose. However, the D2 receptor antagonist eticlopride did not block the reinforcementenhancing effects of caffeine using either an FR or PR schedule of reinforcement. Taken together, these results support the hypothesis that caffeine increases the reinforcing efficacy of alcohol, which may explain caffeine-induced increases in alcohol intake. However, the reinforcement-enhancing effects of caffeine appear to be independent of D2 receptor function.

animal behavior and cognition↗