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article 2013 13 pages

Significant Molecular and Systemic Adaptations after Repeated Sprint Training in Hypoxia

Raphael Faiss, Bertrand Léger, Jean-Marc Vesin, Pierre-Etienne Fournier, Yan Eggel, Olivier Dériaz, Grégoire P. Millet

Journal
PLOS ONE
DOI
10.1371/journal.pone.0056522
Publication type
Research Article
Study type
experimental study
Population
trained subjects
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Abstract

While intermittent hypoxic training (IHT) has been reported to evoke cellular responses via hypoxia inducible factors (HIFs) but without substantial performance benefits in endurance athletes, we hypothesized that repeated sprint training in hypoxia could enhance repeated sprint ability (RSA) performed in normoxia via improved glycolysis and O2 utilization. 40 trained subjects completed 8 cycling repeated sprint sessions in hypoxia (RSH, 3000 m) or normoxia (RSN, 485 m). Before (Pre-) and after (Post-) training, muscular levels of selected mRNAs were analyzed from resting muscle biopsies and RSA tested until exhaustion (10-s sprint, work-to-rest ratio 1∶2) with muscle perfusion assessed by near-infrared spectroscopy. From Pre- to Post-, the average power output of all sprints in RSA was increased (p

Description

The research shows enhanced sprint performance and significant molecular changes in trained athletes after hypoxic training.