Single-leg cycle training is superior to double-leg cycling in improving the oxidative potential and metabolic profile of trained skeletal muscle

Author:

Abbiss Chris R.123,Karagounis Leonidas G.4,Laursen Paul B.156,Peiffer Jeremiah J.7,Martin David T.2,Hawley John A.4,Fatehee Naeem N.1,Martin James C.8

Affiliation:

1. School of Exercise, Biomedical, and Health Sciences, Edith Cowan University, Joondalup,

2. Department of Physiology, Australian Institute of Sport, Belconnen, Australian Capital Territory;

3. Division of Materials Science and Engineering, Commonwealth Scientific and Industrial Research Organization, Belmont,

4. Exercise Metabolism Group, Health Innovations Research Institute, School of Medical Sciences, Royal Melbourne Institute of Technology, Melbourne, Victoria, Australia;

5. New Zealand Academy of Sport North Island, and

6. Sport Performance Research Institute New Zealand, School of Sport and Recreation, Auckland University of Technology, Auckland, New Zealand;

7. School of Chiropractic and Sports Science, Murdoch University, Murdoch, Western Australia; and

8. Department of Exercise and Sports Science, University of Utah, Salt Lake City, Utah

Abstract

Single-leg cycling may enhance the peripheral adaptations of skeletal muscle to a greater extent than double-leg cycling. The purpose of the current study was to determine the influence of 3 wk of high-intensity single- and double-leg cycle training on markers of oxidative potential and muscle metabolism and exercise performance. In a crossover design, nine trained cyclists (78 ± 7 kg body wt, 59 ± 5 ml·kg−1·min−1maximal O2consumption) performed an incremental cycling test and a 16-km cycling time trial before and after 3 wk of double-leg and counterweighted single-leg cycle training (2 training sessions per week). Training involved three (double) or six (single) maximal 4-min intervals with 6 min of recovery. Mean power output during the single-leg intervals was more than half that during the double-leg intervals (198 ± 29 vs. 344 ± 38 W, P < 0.05). Skeletal muscle biopsy samples from the vastus lateralis revealed a training-induced increase in Thr172-phosphorylated 5′-AMP-activated protein kinase α-subunit for both groups ( P < 0.05). However, the increase in cytochrome c oxidase subunits II and IV and GLUT-4 protein concentration was greater following single- than double-leg cycling ( P < 0.05). Training-induced improvements in maximal O2consumption (3.9 ± 6.2% vs. 0.6 ± 3.6%) and time-trial performance (1.3 ± 0.5% vs. 2.3 ± 4.2%) were similar following both interventions. We conclude that short-term high-intensity single-leg cycle training can elicit greater enhancement in the metabolic and oxidative potential of skeletal muscle than traditional double-leg cycling. Single-leg cycling may therefore provide a valuable training stimulus for trained and clinical populations.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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