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Eur J Clin Nutr ; 69(7): 831-6, 2015 Jul.
Article in English | MEDLINE | ID: mdl-25293431

ABSTRACT

BACKGROUND/OBJECTIVES: Fat-free mass (FFM) is the major predictor of resting metabolic rate (RMR). As protein supplementation during resistance training may augment gains in FFM, we investigated the effects of resistance training combined with protein supplementation on RMR and whether RMR responses could be estimated by a dual-energy X-ray absorptiometry (DXA) metabolic map. SUBJECTS/METHODS: Healthy adults completed a whole-body periodized resistance training program consisting of 96 workouts (~9 months). Participants were randomly assigned to supplement with whey protein (whey; n=18), soy protein (soy; n=21) or carbohydrate (carb; n=22). RMR was measured using indirect calorimetry (RMR(IC)) and estimated by DXA metabolic mapping (RMR(MM)) pretraining and posttraining. RESULTS: RMR(IC) increased from pretraining to posttraining in the whole cohort (1653±302 to 1726±291 kcal/day, P=0.001) without differences between the groups. Delta RMR(IC) and RMR(MM) (73±158 vs 52±41 kcal/day were not significantly different by t-test (P=0.303), although they were not significantly correlated (r=0.081; P=0.535). Stepwise regression identified 43% of the shared variance in delta RMR(IC) using total serum thyroxine, RMR(IC) and FFM at baseline (P=0.009). CONCLUSIONS: These results indicate that 9 months of resistance training significantly increased RMR ~5% on average, but there was wide variability between individuals, which can be partially accounted for by changes in FFM and thyroid hormones.


Subject(s)
Basal Metabolism , Dietary Proteins/administration & dosage , Dietary Supplements , Resistance Training , Sports Nutritional Physiological Phenomena , Absorptiometry, Photon , Adolescent , Adult , Calorimetry, Indirect , Cohort Studies , Double-Blind Method , Female , Humans , Male , Patient Compliance , Reproducibility of Results , Soybean Proteins/administration & dosage , Whey Proteins/administration & dosage , Whole Body Imaging , Young Adult
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