Key result
Energy drink consumption significantly increased the corrected QT interval at 60 minutes compared to the resting state in overweight and obese young male subjects (356.8 vs 340.2, p=0.006).
Why the study?
Does energy drink consumption alter QTc interval and heart rate variability in young obese Saudi male university students compared to normal weight students?
Cross-Sectional (n=31)
No
Does energy drink consumption alter QTc interval and heart rate variability in young obese Saudi male university students compared to normal weight students?
Absolute Event Rate: 356.8% vs 340.2%
p-value: p=0.006
Energy drink consumption in overweight/obese young men synergistically induces adverse hemodynamic changes, including QTc prolongation and reduced heart rate variability, compared to normal weight individuals.
May prolong QTc in overweight young men; hypothesis-generating and should not yet change practice.
BACKGROUND AND OBJECTIVES: Consumption of energy drinks has adverse effects on the heart that might be potentiated in obese individuals. Since the incidence of obesity and use of energy drinks is high among Saudi youth, we used non-invasive tests to study hemodynamic changes produced by altered autonomic cardiac activ.ity following consumption of energy drinks in obese male students. DESIGN AND SETTING: This cross-sectional study was carried out at Department of Physiology, College of Medicine, University of Dammam, Saudi Arabia, over a one-year period from December 2013 to December 2014. SUBJECTS AND METHODS: In Saudi male university students we measured continuous ECG recordings and a one-minute deep breathing maneuver to measure the expiratory-to-inspiratory ratio, the mean heart rate range (MHRR), the mean percentage variability. (M%VHR) and the corrected QT interval (QTc) at 0, 30 and 60 minutes after consumption of energy drink. RESULTS: We enrolled 31 students (18 overweight/obese and 13 normal weights. QTc was significantly in.creased at 60 min as compared with the resting state in overweight/obese subjects (P=.006). Heart rate variability was significantly less in obese as compared with normal weight subjects at 60 minutes as indicated by E:I ratio, (P=.037), MHRR (P=.012), M%VHR (P=.040) after energy drink consumption. Significant increases in diastolic (P=.020) and mean arterial blood pressure (P=.024) were observed at 30 minutes in the obese group. CONCLUSION: Hemodynamic changes after intake of energy drinks in obese subjects indicate that obesity and energy drinks could synergistically induce harmful effects. This finding warrants efforts to caution the obese on intake of energy drinks and timely intervention to motivate changes in lifestyle.
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Alsunni et al. (2015) conducted a cross-sectional in Overweight and obesity (n=31). Energy drink vs. Resting state (baseline) was evaluated on Corrected QT interval (QTc) at 60 minutes in overweight/obese subjects (95% CI -27.81 to -5.51, p=0.006). Energy drink consumption significantly increased the corrected QT interval at 60 minutes compared to the resting state in overweight and obese young male subjects (356.8 vs 340.2, p=0.006).
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