Physiological Effects of Nucleotide Supplementation on Resistance Exercise Stress in Men and Women.

Adam J Sterczala, William H DuPont, Brett A Comstock, Shawn D Flanagan, Tunde K Szivak, David R Hooper, Brian R Kupchak, Elaine C Lee, Jeff S Volek, Carl M Maresh, William J Kraemer

Journal: Journal of strength and conditioning research 2016;30(2):569-78

PMID: 26270693

Plain Language Summary

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Nucleotides are essential building blocks to many biological processes including DNA and RNA synthesis, coenzyme synthesis, energy metabolism, cellular signalling, and balanced use of proteins. The main aim of this study was to determine whether nucleotide supplementation affects the acute hypothalamic-pituitary axis (HPA) and immune response to resistance exercise. A secondary aim was to determine whether nucleotide supplementation could improve physical performance capabilities during recovery from such strenuous exercise. The study is a double-blinded, placebo-controlled, mixed methods crossover design study. Twenty participants (women = 10; men = 10), who were resistance trained, completed the protocol. Results indicate that dietary nucleotide supplement reduced markers of HPA and inflammatory activity. Sex-specific differences in the response to nucleotide supplementation included the absence of improvement of physical recovery in women. Authors conclude that nucleotide supplementation may attenuate the stress response, reduce muscle damage, and preserve force production capabilities after intense resistance exercise. Thus, these effects could improve recovery from strenuous exercise.

Abstract

Nucleotide supplementation can reduce postexercise immunosuppression and hypothalamic-pituitary axis (HPA) axis activation in endurance exercise models. Nucleotide supplementation may aid recovery from other exercise modalities, such as heavy resistance exercise. Thus, the purpose of this investigation was to investigate the effects of nucleotide supplementation on the acute cortisol and immune responses to heavy resistance exercise and its effects on recovery. A double-blinded, crossover, mixed methods design with 10 men and 10 women was used. Each performed an acute heavy resistance exercise protocol (AHREP) after a loading period with a nucleotide or placebo supplement. Before and after the AHREP, and at 24, 48, and 72 hours post, blood samples were analyzed for cortisol, myeloperoxidase (MPO), and absolute neutrophil, lymphocyte, and monocyte counts. Creatine kinase (CK) was analyzed before and 24, 48, and 72 hours after the AHREP. Performance measures, including peak back squat isometric force and peak countermovement jump power were also analyzed. Nucleotide supplementation resulted in significant (p ≤ 0.05) decreases in cortisol and MPO immediately after the AHREP, and significantly lower CK values 24 hours later. The AHREP significantly affected leukocyte counts; however, no treatment effects were observed. Greater isometric force was observed immediately after AHREP and at 24 hours and 48 hours with nucleotide supplementation. Nucleotide supplementation seems to attenuate muscle damage, HPA axis and immune system activation, and performance decrements after heavy resistance exercise.

Address: 1Department of Kinesiology, College of Agriculture, Health and Natural Resources, University of Connecticut, Storrs, Connecticut; 2Department of Health, Sport, and Exercise Sciences, University of Kansas, Lawrence, Kansas; 3Department of Human Sciences, The Ohio State University, Columbus, Ohio; and 4Division of Kinesiology and Sport Science, University of South Dakota, Vermillion, South Dakota.
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