Acute beetroot juice supplementation did not enhance intermittent running performance in trained rugby players.

Raci Karayigit, Ozcan Esen, Daniel J Peart

Journal: European journal of sport science 2023;23(12):2321-2328

PMID: 37394944

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Dietary nitrate (NO3-) supplementation, most commonly in the form of nitrate-rich beetroot juice (BRJ), has become a popular ergo-genic aid used by individual and team sport athletes for enhancing performance. Such supplementation increases circulating concentrations of NO3- and nitrite (NO2-), and subsequently nitric oxide (NO) bioavailability, which has a role in vasodilation This study aimed to determine whether acute beetroot juice supplementation could enhance intermittent running performance in trained rugby players. This study was a randomised, double-blind, placebo-controlled crossover study involving 12 trained male rugby players. Participants performed two experimental trials three hours after consuming either BRJ or a nitrate-depleted placebo (PLA). Results showed that acute supplementation of NO3- rich BRJ (12.8 mmol NO3-) increased plasma NO3- and NO2- concentrations but had no benefit on intermittent running test that reflects the demands of rugby performance, and countermovement jump performances in trained male rugby players. Authors concluded that their findings do not support acute high-doseNO3- supplementation as an ergogenic aid to enhance physical performance in trained male rugby players.

Abstract

Since the effect of dietary nitrate (NO) supplementation on rugby performance is unclear, the aim of the present study was to determine the effect of acute NO supplementation, on the modified Yo-Yo intermittent recovery level 1 (IR1) performance test in trained male rugby players. In a randomised, counterbalanced, double-blind, placebo-controlled crossover design, 12 trained rugby union players performed two experimental trials three hours after supplementation of either 140 mL NO-rich (BRJ; ∼12.8 mmol NO) or NO-depleted (PLA) BRJ. After blood sampling, players performed the modified Yo-Yo IR1 test. Countermovement jumps (CMJ) were also measured before (pre-CMJ) and after (post-CMJ) the prone Yo-Yo IR1 test. Plasma NO (BRJ: 570 ± 146 µM PLA: 72 ± 23 µM) and nitrite (NO) concentrations (BRJ: 320 ± 123 nM PLA: 103 ± 57 nM) were increased after BRJ compared to PLA supplementation (both  < 0.001). Performance in the modified Yo-Yo IR1 test did not differ between BRJ (542 ± 209 m) and PLA (498 ± 185 m,  = 0.3). The jump height in pre-CMJ and in post-CMJ were similar between trials (both  > 0.05). Acute BRJ supplementation increased plasma NO and NO concentrations but had no benefit on an intermittent running test that reflects the demands of rugby performance, and CMJ performances. The findings do not support acute high-dose NO supplementation as an ergogenic aid to enhance physical performance in trained male rugby players.

Address: Department of Sport, Exercise and Rehabilitation, Northumbria University, Newcastle-upon-Tyne, UK.; Department of Health Professions, Manchester Metropolitan University, Manchester, UK.; Faculty of Sport Sciences, Ankara University, Ankara, Turkiye.

Laboratory Testing

Modifiable Lifestyle Factors

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Allocation Concealment

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Bioactive Substances

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