Stephen J Bailey, Rachel Tan, Adam Pennell, Sean T Karl, Katherine M Price, Noelle G Seekamp-Hicks, Keonabelle K Paniagua, Grant D Weiderman, Joanna P Powell, Luka K Sharabidze, Isabella G Lincoln, Justin M Kim, Madeleine F Espinoza, Maya A Hammer, Richie P Goulding
Journal: Nutrients 2022;14(18):3703
PMID: 36145080
Nitric oxide (NO) is a ubiquitous signalling molecule that regulates cardiovascular, metabolic, and contractile processes, and as such, manipulation of NO bioavailability has potential implications for exercise performance. The aim of this study was to assess the effects of acute and short-term nitrate (NO3−)-rich beetroot juice (BR) supplementation on performance outcomes and muscle oxygenation during bench press and back squat exercise. This study is a randomised, double-blind crossover design study. Fourteen recreationally active males were assigned to two experimental conditions to receive NO3−-depleted BR and NO3−-rich BR for 4 days with a washout period of at least 5 days separating the two supplementation periods. Results showed that acute dietary NO3− supplementation increased repetitions-to-failure (RTF) during bench press, but neither acute nor multiday NO3− supplementation improved RTF during back squat, or muscular power, velocity, or oxygenation in either resistance exercise modality. Authors conclude that NO3− supplementation may be effective at enhancing muscular endurance during upper-body exercise. Furthermore, compared to acute NO3− ingestion, four days of NO3− supplementation increased plasma NO3− to a greater extent, but plasma nitrite [NO2−] was elevated similarly after acute and multiday NO3−-rich BR supplementation.
The purpose of the current study was to assess the effects of acute and short-term nitrate (NO3−)-rich beetroot juice (BR) supplementation on performance outcomes and muscle oxygenation during bench press and back squat exercise. Fourteen recreationally active males were assigned in a randomized, double-blind, crossover design to supplement for 4 days in two conditions: (1) NO3−-depleted beetroot juice (PL; 0.10 mmol NO3− per day) and (2) BR (11.8 mmol NO3− per day). On days 1 and 4 of the supplementation periods, participants completed 2 sets of 2 × 70%1RM interspersed by 2 min of recovery, followed by one set of repetitions-to-failure (RTF) at 60%1RM for the determination of muscular power, velocity, and endurance. Quadriceps and pectoralis major tissue saturation index (TSI) were measured throughout exercise. Plasma [NO3−] and nitrite ([NO2−]) were higher after 1 and 4 days of supplementation with BR compared to PL (p < 0.05). Quadriceps and pectoralis major TSI were not different between conditions (p > 0.05). The number of RTF in bench press was 5% greater after acute BR ingestion compared to PL (PL: 23 ± 4 vs. BR: 24 ± 5, p < 0.05). There were no differences between BR and PL for RTF for back squat or power and velocity for back squat or bench press (p > 0.05). These data improve understanding on the ergogenic potential of BR supplementation during resistance exercise.
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