Randomized controlled trial2016

Carbohydrate mouth rinse and caffeine improves high-intensity interval running capacity when carbohydrate restricted

Kasper AM, Cocking S, Cockayne M, Barnard M, Tench J, Parker L, McAndrew J, Langan-Evans C, Close GL, Morton JP

European journal of sport science · 41 citations

Review labels

Funding not disclosed

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
Funding not disclosed

Publication

Published
2015-06-02 · Eur J Sport Sci · vol. 16 · issue 5 · pp. 560–568
Publisher
Taylor & Francis
Cited
61 citations · more than 93% of similar papers · 3.6× the field average
Impact
Top 10% most cited in its field
References
40 works
Access
Paywalled
Research areas
Muscle metabolism and nutrition · Sports Performance and Training · Cardiovascular and exercise physiology
Keywords
Placebo, Caffeine, Carbohydrate, Medicine, Evening, Mouth rinse, Time trial, Morning, Heart rate, Animal science, Internal medicine, Anesthesia, Blood pressure, Biology, Dentistry
MeSH
humans, caffeine, dietary carbohydrates, blood glucose, mouthwashes, exercise, physical endurance, running, adult, male, athletic performance, young adult

10 authors

From GB

  • Andreas M. KasperLiverpool John Moores University
  • Scott CockingLiverpool John Moores University
  • Molly CockayneLiverpool John Moores University
  • Marcus BarnardLiverpool John Moores University
  • Jake TenchLiverpool John Moores University
  • Liam ParkerLiverpool John Moores University

Abstract

We tested the hypothesis that carbohydrate mouth rinsing, alone or in combination with caffeine, augments high-intensity interval (HIT) running capacity undertaken in a carbohydrate-restricted state. Carbohydrate restriction was achieved by performing high-intensity running to volitional exhaustion in the evening prior to the main experimental trials and further refraining from carbohydrate intake in the post-exercise and overnight period. On the subsequent morning, eight males performed 45-min steady-state (SS) exercise (65% [Formula: see text]) followed by HIT running to exhaustion (1-min at 80% [Formula: see text]interspersed with 1-min walking at 6 km/h). Subjects completed 3 trials consisting of placebo capsules (administered immediately prior to SS and immediately before HIT) and placebo mouth rinse at 4-min intervals during HIT (PLACEBO), placebo capsules but 10% carbohydrate mouth rinse (CMR) at corresponding time-points or finally, caffeine capsules (200 mg per dose) plus 10% carbohydrate mouth rinse (CAFF + CMR) at corresponding time-points. Heart rate, capillary glucose, lactate, glycerol and NEFA were not different at exhaustion during HIT (P > 0.05). However, HIT capacity was different (P < 0.05) between all pair-wise comparisons such that CAFF + CMR (65 ± 26 min) was superior to CMR (52 ± 23 min) and PLACEBO (36 ± 22 min). We conclude that carbohydrate mouth rinsing and caffeine ingestion improves exercise capacity undertaken in carbohydrate-restricted states. Such nutritional strategies may be advantageous for those athletes who deliberately incorporate elements of training in carbohydrate-restricted states (i.e. the train-low paradigm) into their overall training programme in an attempt to strategically enhance mitochondrial adaptations of skeletal muscle.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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