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Effect of dehydroepiandrosterone administration on recovery from mix-type exercise training-induced muscle damage
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Effect of dehydroepiandrosterone administration on recovery from mix-type exercise training-induced muscle damage

Yi-Hung Liao, Kun-Fu Liao, Chung-Lan Kao, Chung-Yu Chen, Chih-Yang Huang, Wei-Hsiang Chang, John L. Ivy, Jeffrey R. Bernard, Shin-Da LeeChia-Hua Kuo
European Journal of Applied Physiology, 卷.113(1), 頁碼.99-107
01/2013
PMID: 22588361

摘要

Creatine kinase Delayed-onset muscle soreness Exercise training Oral glucose tolerance test Testosterone Orthopedics and Sports Medicine Public Health Environmental and Occupational Health Physiology (medical)
This study aimed to determine the role of DHEA-S in coping against the exercise training mixing aerobic and resistance components. During 5-day successive exercise training, 16 young male participants (19.2 ± 1.2 years) received either a placebo (flour capsule) or DHEA (100 mg/day) in a double-blinded and placebo-controlled design. Oral DHEA supplementation significantly increased circulating DHEA-S by 2.5-fold, but a protracted drop (∼35 %) was observed from Day 3 during training. In the Placebo group, only a minimal DHEA-S reduction (∼17 %) was observed. Changes in testosterone followed a similar pattern as DHEA-S. Muscle soreness was elevated significantly on Day 2 for both groups to a similar extent. Lower muscle soreness was observed in the DHEA-supplemented group on Day 3 and Day 6. In the Placebo group, training increased circulating creatine kinase (CK) levels by approximately ninefold, while only a threefold increase was observed in the DHEA-supplemented group. This mix-type exercise training improved glucose tolerance in both groups, while lowering the insulin response to the glucose challenge, but no difference between treatments was observed. Our results suggest that DHEA-S may play a role in protecting skeletal muscle from exercise training-induced muscle damage. © 2012 Springer-Verlag.

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