Red Bull® energy drink increases consumption of higher concentrations of alcohol.

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2017-09-22

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Roldán, Marta
Echeverry-Alzate, Victor
Bühler, Kora-Mareen
Sánchez-Diez, Israel J
Calleja-Conde, Javier
Olmos, Pedro
Boehm, Stephen L
Maldonado, Rafael
Rodríguez de Fonseca, Fernando
Santiago, Catalina

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Abstract

Mixing alcohol with caffeinated energy drinks is a common practice, especially among young people. In humans, the research on this issue has mainly focused on the use of the mass-marketed energy drinks themselves, whereas in animal models, it has focused on the individual effects of their active ingredients (i.e. caffeine). Here, we have characterized how Red Bull®, one of the most consumed caffeinated energy drink worldwide, modulates operant alcohol self-administration in Wistar rats. We found that animals readily and steadily responded for Red Bull (mean: 90 responses, 30 minutes and fixed-ratio 1), which was accompanied by locomotor stimulating effects (26 percent increase). The higher the concentration of alcohol (3-20 percent), the higher the consumption of alcohol (g/kg) and associated blood alcohol levels (91.76 percent) in the mixed Red Bull-alcohol group (60 percent increase). Blood caffeine levels in the Red Bull group were 4.69 μg/ml and 1.31 μg/ml in the Red Bull-alcohol group after the 30-minute session. Because Red Bull also contains 11 percent sucrose, we examined the time course of blood glucose as well as insulin and corticosterone. The correlation between intake of Red Bull and blood glucose levels was higher at 90 minutes than 5 minutes after its consumption, and there was no relationship with blood insulin or blood corticosterone levels. Red Bull did not alter extinction and reacquisition of responding for alcohol nor did it affect relapse-like drinking. Overall, our results suggest that Red Bull might be a vulnerability factor to develop alcoholism given that it intensifies the consumption of higher concentrations of alcohol.

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Alcoholism
Animals
Behavior, Animal
Blood Glucose
Caffeine
Central Nervous System Stimulants
Disease Models, Animal
Energy Drinks
Ethanol
Male
Rats
Rats, Wistar
Self Administration
Time Factors

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Keywords

alcohol, energy drink, operant self-administration

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