Journal of Sports Science and Medicine
Journal of Sports Science and Medicine
ISSN: 1303 - 2968   
Ios-APP Journal of Sports Science and Medicine
Follow us
  
Views
63
Download
18
 
©Journal of Sports Science and Medicine ( 2026 )  25 ,  744  -  752   DOI: https://doi.org/10.52082/jssm.2026.744

Research article
Effects of Hydrogen-Rich Water Supplementation on Exercise Performance, Autonomic Nervous System Recovery, and Blood Lactate Concentration During Repeated Sprint Exercise in Male University Athletes
Zhihao Chen, Meilan Chi, Ruizhi Liu, Lianzhen Ma, Yupeng Shen 
Author Information
Institutional Affiliations: School of Physical Education and Sports Science, South China Normal University, Guangzhou, China

Yupeng Shen
✉ Institutional Affiliations: School of Physical Education and Sports Science, South China Normal University, Guangzhou 510006, China
Email: yupengshen@scnu.edu.cn
Publish Date
Received: 17-04-2026
Accepted: 13-07-2026
Published (online): 01-09-2026
Narrated in English
 
 
ABSTRACT

Hydrogen-rich water (HRW) supplementation has been proposed to exert anti-fatigue effects during exercise; however, its impact on exercise performance and autonomic nervous system (ANS) function during repeated sprinting remains unclear. The aim of this study was to examine the effects of acute pre-exercise HRW ingestion on repeated sprint performance, ANS regulation, and blood lactate concentration. This randomized, single-blind, placebo-controlled crossover study included 13 male university athletes (23.9 ± 2.0 years). Each participant completed two sessions of 7×6-second all-out cycling sprints interspersed with 30-second recovery intervals, with a one-week washout period between sessions. Critical flicker fusion frequency, heart rate, heart rate variability (HRV), and blood lactate were assessed at baseline, during exercise, and at 0-5 min and 10 min post-exercise. Compared to the placebo trial, the HRW trial demonstrated significantly higher average power output (d = 0.61) and significantly lower total work decrement and fatigue index (d = 0.62; d = 0.64). Post-exercise HRV recovery was significantly accelerated in the HRW trial, including RMSSD (d = 0.62), LF/HF ratio (d = 0.82), SampEn (d = 0.79), and DFAα1 (d = 0.79). Blood lactate at 3 min post-exercise was approximately 1 mmol/L lower in the HRW trial (d = 0.64). These findings suggest that acute HRW ingestion attenuates the decline in power output, accelerates ANS recovery, and enhances lactate clearance following repeated sprint exercise.

Key words: Hydrogen-rich-water, repeated sprint ability, heart rate variability, critical flicker fusion frequency, lactate


           Key Points
  • Acute pre-exercise ingestion of hydrogen-rich water significantly enhances repeated sprint performance by reducing power decrement and sustaining higher average power output across sprints.
  • Hydrogen-rich water intake significantly accelerates post-exercise recovery of autonomic nervous system regulation and improves blood lactate clearance following repeated sprint exercise.
 
 
Home Issues About Authors
Contact Current Editorial board Authors instructions
Email alerts In Press Mission For Reviewers
Archive Scope
Supplements Statistics
Most Read Articles
  Most Cited Articles
 
  
 
JSSM | Copyright 2001-2026 | All rights reserved. | LEGAL NOTICES | Publisher

It is forbidden the total or partial reproduction of this web site and the published materials, the treatment of its database, any kind of transition and for any means, either electronic, mechanic or other methods, without the previous written permission of the JSSM.

This work is licensed under a Creative Commons License Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.