The Effect of Caffeine Supplementation on Resistance and Jumping Exercise: The Interaction with CYP1A2 and ADORA2A Genotypes

Emilia E. Zawieja, A. Chmurzyńska, J. Anioła, B. Zawieja, J. Cholewa
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Abstract

Purpose: To evaluate the association of CYP1A2 and ADORA2A gene polymorphisms, paraxanthine concentrations, and habitual caffeine (CAF) intake with respect to muscular performance after acute CAF supplementation. Methods: A total of 27 resistance-trained males participating in the study ingested either 5 mg/kg of CAF or PL 45 min before a battery of exercise tests in a cross-over design. DNA was tested for the rs5751876 and rs762551 polymorphisms. Results: CAF improved performance in jumping average power, average velocity, max velocity, bench press in the first set, and peak power in the second set. For the CYP1A2 genotype, C allele carriers improved in jumping average velocity (CAF: 1.77 ± 0.14 m/s, PL: 1.71 ± 0.16 m/s, p < 0.001), and AA homozygotes improved set 1 bench press (CAF: 9.7 ± 1.7 reps, PL: 8.9 ± 1.8 reps, p = 0.046). For the ADORA2A genotype, CC (CAF: 1.70 ± 0.20 m/s, PL: 1.67 ± 0.19 m/s, p = 0.005) and CT (CAF: 1.79 ± 0.09 m/s, PL: 1.74 ± 0.11 m/s, p < 0.001) improved in jumping average velocity and CT also improved in bench press set 2 peak power (CAF: 363 ± 76 W, PL: 323 ± 59 W, p = 0.021). For CAF habituation, CAF improved jumping average power (p = 0.007) and jumping average velocity (p < 0.001) in high users but not in low users (p > 0.05). Conclusions: CAF may improve jumping and bench press performance, irrespective of genotypes, but the associations with the genotypes in CYP1A2 and ADORA2A genes, as well as habitual CAF intake, are not clear and require further investigation.
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补充咖啡因对抵抗力和跳跃运动的影响:与CYP1A2和ADORA2A基因型的相互作用
目的:评估CYP1A2和ADORA2A基因多态性、对黄嘌呤浓度和习惯性咖啡因(CAF)摄入与急性补充CAF后肌肉性能的关系。方法:共有27名接受过阻力训练的男性参与了这项研究,在交叉设计的一组运动测试前45分钟摄入了5 mg/kg的CAF或PL。DNA检测rs5751876和rs762551多态性。结果:CAF在第一组的平均跳跃力、平均速度、最大速度、卧推和第二组的峰值跳跃力方面均有所提高。对于CYP1A2基因型,C等位基因携带者的跳跃平均速度有所改善(CAF:1.77±0.14 m/s,PL:1.71±0.16 m/s,p<0.001),AA纯合子改善了第1组卧推(CAF:9.7±1.7次,PL:8.9±1.8次,p=0.046)。对于ADORA2A基因型,CC(CAF:1.70±0.20 m/s,PL:1.67±0.19 m/s,p=0.005)和CT(CAF+1.79±0.09 m/s,PL+1.74±0.11 m/s,p<0.001)的跳跃平均速度有所改善,CT也改善了卧推组2的峰值功率(CAF:363±76 W,PL:323±59 W,p=0.021),CAF改善了高使用者的跳跃平均力量(p=0.007)和跳跃平均速度(p<0.001),但低使用者没有(p>0.05)。结论:无论基因型如何,CAF都可以改善跳跃和卧推性能,但与CYP1A2和ADORA2A基因型以及习惯性CAF摄入的关系尚不清楚,需要进一步研究。
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