Jacob M Wilson, Ryan P Lowery, Jordan M Joy, J C Andersen, Stephanie M C Wilson, Jeffrey R Stout, Nevine Duncan, John C Fuller, Shawn M Baier, Marshall A Naimo, John Rathmacher
Journal: European journal of applied physiology 2014;114(6):1217-27
PMID: 24599749
Supplementation of a leucine metabolite in the free acid form, beta-hydroxy-beta-methylbutyrate free acid (HMB-FA), has been found to increase skeletal muscle and attenuate muscle damage. Currently research on HMB-FA supplementation is limited, and no long-term studies have been conducted. The aim of this trial was to investigate the effects of HMB-FA supplementation on skeletal muscle, body composition and performance in 24 resistance-trained athletes. This study found that HMB-FA enhances lean body mass, muscle hypertrophy, strength and power following resistance training. Additionally, during overreaching phases of training, HMB-FA supplementation prevented typical declines in performance.
INTRODUCTION
Studies utilizing beta-hydroxy-beta-methylbutyrate (HMB) supplementation in trained populations are limited. No long-term studies utilizing HMB free acid (HMB-FA) have been conducted. Therefore, we investigated the effects of 12 weeks of HMB-FA supplementation on skeletal muscle hypertrophy, body composition, strength, and power in trained individuals. We also determined the effects of HMB-FA on muscle damage and performance during an overreaching cycle.
METHODS
A three-phase double-blind, placebo- and diet-controlled randomized intervention study was conducted. Phase 1 was an 8-week-periodized resistance-training program; Phase 2 was a 2-week overreaching cycle; and Phase 3 was a 2-week taper. Muscle mass, strength, and power were examined at weeks 0, 4, 8, and 12 to assess the chronic effects of HMB-FA; and assessment of these, as well as cortisol, testosterone, and creatine kinase (CK) was performed at weeks 9 and 10 of the overreaching cycle.
RESULTS
HMB-FA resulted in increased total strength (bench press, squat, and deadlift combined) over the 12-week training (77.1 ± 18.4 vs. 25.3 ± 22.0 kg, p < 0.001); a greater increase in vertical jump power (991 ± 168 vs. 630 ± 167 W, p < 0.001); and increased lean body mass gain (7.4 ± 4.2 vs. 2.1 ± 6.1 kg, p < 0.001) in HMB-FA- and placebo-supplemented groups, respectively. During the overreaching cycle, HMB-FA attenuated increases in CK (-6 ± 91 vs. 277 ± 229 IU/l, p < 0.001) and cortisol (-0.2 ± 2.9 vs. 4.5 ± 1.7 μg/dl, p < 0.003) in the HMB-FA- and placebo-supplemented groups, respectively.
CONCLUSIONS
These results suggest that HMB-FA enhances hypertrophy, strength, and power following chronic resistance training, and prevents decrements in performance following the overreaching.
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