Literature DB >> 28474871

Effects of hydrogen rich water on prolonged intermittent exercise.

Alessandro Da Ponte1,2, Nicola Giovanelli3,4, Daniele Nigris5, Stefano Lazzer3,4.   

Abstract

BACKGROUND: Recent studies showed a positive effect of hydrogen rich water (HRW) intake on acid-base homeostasis at rest. We investigated 2-weeks of HRW intake on repeated sprint performance and acid-base status during prolonged intermittent cycling exercise.
METHODS: In a cross over single-blind protocol, 8 trained male cyclists (age [mean±SD] 41±7 years, body mass 72.3±4.4 kg, height 1.77±0.04 m, maximal oxygen uptake [V̇O2max] 52.6±4.4 mL·kg-1·min-1) were provided daily with 2 liters of placebo normal water (PLA, pH 7.6, oxidation/reduction potential [ORP] +230 mV, free hydrogen content 0 ppb) or HRW (pH 9.8, ORP -180 mV, free Hydrogen 450 ppb). Tests were performed at baseline and after each period of 2 weeks of treatment. The treatments were counter-balanced and the sequence randomized. The 30-minute intermittent cycling trial consisted in 10 3-minute blocks, each one composed by 90 seconds at 40% V̇O2max, 60 seconds at 60% V̇O2max, 16 seconds all out sprint, and 14 seconds active recovery. Oxygen uptake (V̇O2), heart rate and power output were measured during the whole test, while mean and peak power output (PPO), time to peak power and Fatigue Index (FI) were determined during all the 16 seconds sprints. Lactate, pH and bicarbonate (HCO3-) concentrations were determined at rest and after each sprint on blood obtained by an antecubital vein indwelling catheter.
RESULTS: In the PLA group, PPO in absolute values decreased significantly at the 8th and 9th of 10 sprints and in relative values, ΔPPO, decreased significantly at 6th, 8th and 9th of 10 sprints (by mean: -12±5%, P<0.006), while it remained unchanged in HRW group. Mean power, FI, time to peak power and total work showed no differences between groups. In both conditions lactate levels increased while pH and HCO3- decreased progressively as a function of the number of sprints.
CONCLUSIONS: Two weeks of HRW intake may help to maintain PPO in repetitive sprints to exhaustion over 30 minutes.

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Year:  2017        PMID: 28474871     DOI: 10.23736/S0022-4707.17.06883-9

Source DB:  PubMed          Journal:  J Sports Med Phys Fitness        ISSN: 0022-4707            Impact factor:   1.637


  8 in total

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4.  Two-week continuous supplementation of hydrogenrich water increases peak oxygen uptake during an incremental cycling exercise test in healthy humans: a randomized, single-blinded, placebo-controlled study.

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Review 5.  Molecular Hydrogen as a Medical Gas for the Treatment of Myalgic Encephalomyelitis/Chronic Fatigue Syndrome: Possible Efficacy Based on a Literature Review.

Authors:  Shin-Ichi Hirano; Yusuke Ichikawa; Bunpei Sato; Yoshiyasu Takefuji; Fumitake Satoh
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6.  Effects of pre-exercise H2 inhalation on physical fatigue and related prefrontal cortex activation during and after high-intensity exercise.

Authors:  Yinglu Hong; Gengxin Dong; Qian Li; Vienna Wang; Meng Liu; Guole Jiang; Dapeng Bao; Junhong Zhou
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7.  Effects of 7-day intake of hydrogen-rich water on physical performance of trained and untrained subjects.

Authors:  Rafael Timón; Guillermo Olcina; Adrian González-Custodio; Marta Camacho-Cardenosa; Alba Camacho-Cardenosa; Ismael Martínez Guardado
Journal:  Biol Sport       Date:  2020-10-22       Impact factor: 2.806

8.  Molecular Hydrogen Mitigates Performance Decrement during Repeated Sprints in Professional Soccer Players.

Authors:  Michal Botek; Deepesh Khanna; Jakub Krejčí; Michal Valenta; Andrew McKune; Barbora Sládečková; Iva Klimešová
Journal:  Nutrients       Date:  2022-01-25       Impact factor: 5.717

  8 in total

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