Study2017

Postexercise cold water immersion modulates skeletal muscle PGC-1α mRNA expression in immersed and nonimmersed limbs: evidence of systemic regulation

Allan R, Sharples AP, Close GL, Drust B, Shepherd SO, Dutton J, Morton JP, Gregson W

Journal of applied physiology (Bethesda, Md. : 1985) · 32 citations

Review labels

Mechanisms only

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
Mechanisms only

Who paid for it

Funding
Independent funding
University or hospital
Liverpool John Moores University

Based on 1 listed funder(s).

Publication

Published
2017-05-25 · J Appl Physiol (1985) · vol. 123 · issue 2 · pp. 451–459
Publisher
American Physiological Society
Cited
36 citations · more than 88% of similar papers · 2.4× the field average
References
48 works
Access
Open access (repository copy)
Research areas
Adipose Tissue and Metabolism · Exercise and Physiological Responses · Sports Performance and Training
Keywords
Skeletal muscle, Messenger RNA, Immersion (mathematics), Endocrinology, Internal medicine, Gene expression, Cell biology, Biology, Muscle contraction, Chemistry, Anatomy, Medicine, Gene, Biochemistry
MeSH
extremities, muscle, skeletal, humans, water, p38 mitogen-activated protein kinases, rna, messenger, body temperature, exercise, cross-over studies, gene expression regulation, phosphorylation, adult, male, cold temperature, peroxisome proliferator-activated receptor gamma coactivator 1-alpha

8 authors

From GB

  • Robert Allan · correspondingUniversity of Lancashire; Liverpool John Moores University
  • Adam Philip SharplesLiverpool John Moores University
  • Graeme Leonard CloseLiverpool John Moores University
  • Barry DrustLiverpool John Moores University
  • Sam O. ShepherdLiverpool John Moores University
  • John J DuttonUniversity of East Anglia; Norwich Research Park

Abstract

Mechanisms mediating postexercise cold-induced increases in PGC-1α gene expression in human skeletal muscle are yet to be fully elucidated but may involve local cooling effects on AMPK and p38 MAPK-related signaling and/or increased systemic β-adrenergic stimulation. Therefore, we aimed to examine whether postexercise cold water immersion enhancement of PGC-1α mRNA is mediated through local or systemic mechanisms. Ten subjects completed acute cycling (8 × 5 min at ~80% peak power output) followed by seated-rest (CON) or single-leg cold water immersion (CWI; 10 min, 8°C). Muscle biopsies were obtained preexercise, postexercise, and 3 h postexercise from a single limb in the CON condition but from both limbs in CWI [thereby providing tissue from a CWI and nonimmersed limb (NOT)]. Muscle temperature decreased up to 2 h postexercise following CWI (-5°C) in the immersed limb, with lesser changes observed in CON and NOT (-3°C, P P P = 0.031). Exercise (CON) increased gene expression of PGC-1α 3 h postexercise (~5-fold, P P = 0.003) and NOT limbs (~12-fold, P = 0.001). Plasma normetanephrine concentration was higher in CWI vs. CON immediately postimmersion (860 vs. 665 pmol/l, P = 0.034). We report for the first time that local cooling of the immersed limb evokes transcriptional control of PGC-1α in the nonimmersed limb, suggesting increased systemic β-adrenergic activation of AMPK may mediate, in part, postexercise cold induction of PGC-1α mRNA.NEW & NOTEWORTHY We report for the first time that postexercise cold water immersion of one limb also enhances PGC-1α expression in a contralateral, nonimmersed limb. We suggest that increased systemic β-adrenergic stimulation, and not localized cooling per se, exerts regulatory effects on local signaling cascades, thereby modulating PGC-1α expression. Therefore, these data have important implications for research designs that adopt contralateral, nonimmersed limbs as a control condition while also increasing our understanding of the potential mechanisms underpinning cold-mediated PGC-1α responses.

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

Community trust

Loading…

How much do you trust this study's findings?

0 · not at all10 · completely

Comments

Sign in to rate, comment on or flag this study.Sign in

Something wrong here?

Flag this study if its information, labels or funding look wrong. An editor reviews every flag.

Sign in to rate, comment on or flag this study.Sign in

Educational information about published research. Not medical advice, and not a recommendation to start or stop anything.