Randomized controlled trial2025Industry fundedOpen access

Funded in part by New Capstone, Inc.

Short-Term Magnesium Supplementation Has Modest Detrimental Effects on Cycle Ergometer Exercise Performance and Skeletal Muscle Mitochondria and Negligible Effects on the Gut Microbiota: A Randomized Crossover Clinical Trial

Bomar MC, Ewell TR, Brown RL, Brown DM, Kwarteng BS, Abbotts KSS, Butterklee HM, Williams NNB, Wrigley SD, Walsh MA, Hamilton KL, Thomson DP, Weir TL, Bell C

Nutrients · 3 citations

Review labels

Industry funded

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Randomized controlled trial (indexed by PubMed)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Industry funded
Company
New Capstone, Inc.

Based on 1 listed funder(s) and full-text disclosure statement.

Publication

Published
2025-03-06 · Nutrients · vol. 17 · issue 5 · p. 915
Publisher
Multidisciplinary Digital Publishing Institute
Cited
6 citations · more than 90% of similar papers · 3.0× the field average
Impact
Top 10% most cited in its field
References
85 works
Access
Open access (journal) · CC-BY
Research areas
Magnesium in Health and Disease · Therapeutic Uses of Natural Elements · Nutrition and Health in Aging
Keywords
Crossover study, Cycle ergometer, Randomized controlled trial, Skeletal muscle, Medicine, Magnesium, Mitochondrion, Internal medicine, Physical therapy, Endocrinology, Physiology, Biology, Chemistry, Pathology, Biochemistry, Blood pressure, Placebo
MeSH
muscle, skeletal, mitochondria, muscle, humans, magnesium chloride, magnesium, exercise test, exercise, cross-over studies, double-blind method, oxygen consumption, dietary supplements, adult, female, male, athletic performance, young adult, gastrointestinal microbiome

14 authors

From US

  • Matthew Charles BomarColorado State University
  • Taylor R. EwellColorado State University
  • Reagan L. BrownColorado State University
  • David M. BrownColorado State University
  • Beatrice S. KwartengColorado State University
  • Kieran Shay Struebin AbbottsColorado State University

Abstract

Background/Objectives: Although the importance of magnesium for overall health and physiological function is well established, its influence on exercise performance is less clear. The primary study objective was to determine the influence of short-term magnesium supplementation on cycle ergometer exercise performance. The hypothesis was that magnesium would elicit an ergogenic effect. Methods: A randomized, double-blind, placebo-controlled, two-period crossover design was used to study men and women who were regular exercisers. Fifteen participants ingested either a placebo or magnesium chloride (MgCl2 300 mg) twice per day, for 9 days, separated by a 3-week washout. During days 8 and 9, participants completed a battery of cycle ergometer exercise tests, and whole blood, vastus lateralis, and stools were sampled. The primary outcomes were the maximal oxygen uptake (VO2max), a simulated 10 km time trial, and the sprint exercise performance. Additional outcomes included skeletal muscle mitochondrial respiration, and, on account of the known laxative effects of magnesium, the gut microbiota diversity. Results: Compared with a placebo, MgCl2 supplementation increased the circulating ionized Mg concentration (p 2max (44.4 ± 7.7 vs. 41.3 ± 8.0 mL/kg/min; p = 0.005), and decreased the mean power output during a 30 s sprint (439 ± 88 vs. 415 ± 88 W; p = 0.03). The 10 km time trial was unaffected (1282 ± 126 vs. 1281 ± 97 s; p = 0.89). In skeletal muscle, MgCl2 decreased mitochondrial respiration in the presence of fatty acids at complex II (p = 0.04). There were no significant impacts on the gut microbiota richness (CHAO1; p = 0.68), Shannon's Diversity (p = 0.23), or the beta-diversity (Bray-Curtis distances; p = 0.74). Conclusions: In summary, magnesium supplementation had modest ergolytic effects on cycle ergometer exercise performance and mitochondrial respiration. We recommend that regular exercisers, free from hypomagnesemia, should not supplement their diet with magnesium.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

Community trust

Loading…

How much do you trust this study's findings?

0 · not at all10 · completely

Comments

Sign in to rate, comment on or flag this study.Sign in

Something wrong here?

Flag this study if its information, labels or funding look wrong. An editor reviews every flag.

Sign in to rate, comment on or flag this study.Sign in

Educational information about published research. Not medical advice, and not a recommendation to start or stop anything.