Study2019

Cold water immersion attenuates anabolic signaling and skeletal muscle fiber hypertrophy, but not strength gain, following whole-body resistance training

Fyfe JJ, Broatch JR, Trewin AJ, Hanson ED, Argus CK, Garnham AP, Halson SL, Polman RC, Bishop DJ, Petersen AC

Journal of applied physiology (Bethesda, Md. : 1985) · 46 citations

Review labels

Funding not disclosed

Neutral facts our review recorded about how this study was done. They describe method, never whether we like the result.

How it was studied

Design
Randomized controlled trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Funding not disclosed

Publication

Published
2019-09-12 · J Appl Physiol (1985) · vol. 127 · issue 5 · pp. 1403–1418
Publisher
American Physiological Society
Cited
60 citations · more than 95% of similar papers · 4.8× the field average
Impact
Top 10% most cited in its field
References
78 works
Access
Open access (repository copy) · CC-BY-NC
Research areas
Exercise and Physiological Responses · Muscle metabolism and nutrition · Sports Performance and Training
Keywords
Anabolism, Leg press, Bench press, Endocrinology, Muscle hypertrophy, Squat, Internal medicine, One-repetition maximum, High-intensity interval training, Skeletal muscle, Resistance training, Medicine, Chemistry, Animal science, Biology, Physical therapy
MeSH
humans, hypertrophy, heat-shock proteins, immersion, recovery of function, adolescent, adult, male, muscle strength, cold temperature, muscle fibers, skeletal, resistance training, young adult

10 authors

From AU, US, NZ

  • Jackson J. FyfeDeakin University
  • James R. BroatchVictoria University
  • Adam J. TrewinVictoria University
  • Erik D. HansonUniversity of North Carolina at Chapel Hill
  • Christos K. ArgusUniversity of Waikato
  • ANDREW P. GARNHAMVictoria University

Abstract

We determined the effects of cold water immersion (CWI) on long-term adaptations and post-exercise molecular responses in skeletal muscle before and after resistance training. Sixteen men (22.9 ± 4.6 y; 85.1 ± 17.9 kg; mean ± SD) performed resistance training (3 day/wk) for 7 wk, with each session followed by either CWI [15 min at 10°C, CWI (COLD) group, n = 8] or passive recovery (15 min at 23°C, control group, n = 8). Exercise performance [one-repetition maximum (1-RM) leg press and bench press, countermovement jump, squat jump, and ballistic push-up], body composition (dual X-ray absorptiometry), and post-exercise (i.e., +1 and +48 h) molecular responses were assessed before and after training. Improvements in 1-RM leg press were similar between groups [130 ± 69 kg, pooled effect size (ES): 1.53 ± 90% confidence interval (CI) 0.49], whereas increases in type II muscle fiber cross-sectional area were attenuated with CWI (-1,959 ± 1,675 µM2 ; ES: -1.37 ± 0.99). Post-exercise mechanistic target of rapamycin complex 1 signaling (rps6 phosphorylation) was blunted for COLD at post-training (POST) +1 h (-0.4-fold, ES: -0.69 ± 0.86) and POST +48 h (-0.2-fold, ES: -1.33 ± 0.82), whereas basal protein degradation markers (FOX-O1 protein content) were increased (1.3-fold, ES: 2.17 ± 2.22). Training-induced increases in heat shock protein (HSP) 27 protein content were attenuated for COLD (-0.8-fold, ES: -0.94 ± 0.82), which also reduced total HSP72 protein content (-0.7-fold, ES: -0.79 ± 0.57). CWI blunted resistance training-induced muscle fiber hypertrophy, but not maximal strength, potentially via reduced skeletal muscle protein anabolism and increased catabolism. Post-exercise CWI should therefore be avoided if muscle hypertrophy is desired.NEW & NOTEWORTHY This study adds to existing evidence that post-exercise cold water immersion attenuates muscle fiber growth with resistance training, which is potentially mediated by attenuated post-exercise increases in markers of skeletal muscle anabolism coupled with increased catabolism and suggests that blunted muscle fiber growth with cold water immersion does not necessarily translate to impaired strength development.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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