Study2014Open access

The effects of cold exposure on leukocytes, hormones and cytokines during acute exercise in humans

Gagnon DD, Gagnon SS, Rintamäki H, Törmäkangas T, Puukka K, Herzig KH, Kyröläinen H

PloS one · 29 citations

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Mechanisms only

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How it was studied

Design
Controlled clinical trial (classified by our AI screen)
Studied in
People
Main outcome
Mechanisms only

Who paid for it

Funding
Independent funding
Government
Canadian Institutes of Health Research

Based on 1 listed funder(s) and full-text disclosure statement.

Publication

Published
2014-10-22 · PLoS One · vol. 9 · issue 10 · p. e110774
Publisher
Public Library of Science
Cited
46 citations · more than 88% of similar papers · 2.5× the field average
References
69 works
Access
Open access (journal) · CC-BY
Research areas
Exercise and Physiological Responses · Thermoregulation and physiological responses · Adipose Tissue and Metabolism
Keywords
Shivering, Eotaxin, VO2 max, Medicine, Internal medicine, Thermoregulation, Hormone, Endocrinology, Immunology, Heart rate, Immune system, Physiology, Chemokine, Blood pressure
MeSH
leukocytes, humans, epinephrine, norepinephrine, testosterone, hydrocortisone, insulin-like growth factor i, sex hormone-binding globulin, cytokines, body temperature regulation, heart rate, adult, male, adrenocorticotropic hormone, physical exertion, young adult, cold-shock response

7 authors

From FI, CA

  • Dominique D. Gagnon · correspondingUniversity of Jyväskylä; University of Oulu
  • Sheila S. GagnonWestern University
  • Hannu RintamäkiFinnish Institute of Occupational Health; University of Oulu
  • Timo TörmäkangasUniversity of Jyväskylä
  • Katri S. PuukkaOulu University Hospital; NordLab; University of Oulu
  • Karl‐Heinz HerzigOulu University Hospital; University of Oulu

Abstract

The purpose of the study was to examine the effects of exercise on total leukocyte count and subsets, as well as hormone and cytokine responses in a thermoneutral and cold environment, with and without an individualized pre-cooling protocol inducing low-intensity shivering. Nine healthy young men participated in six experimental trials wearing shorts and t-shirts. Participants exercised for 60 min on a treadmill at low (LOW: 50% of peak VO2) and moderate (MOD: 70% VO2peak) exercise intensities in a climatic chamber set at 22°C (NT), and in 0°C (COLD) with and without a pre-exercise low-intensity shivering protocol (SHIV). Core and skin temperature, heart rate and oxygen consumption were collected continuously. Blood samples were collected before and at the end of exercise to assess endocrine and immunological changes. Core temperature in NT was greater than COLD and SHIV by 0.4±0.2°C whereas skin temperature in NT was also greater than COLD and SHIV by 8.5±1.4°C and 9.3±2.5°C respectively in MOD. Total testosterone, adenocorticotropin and cortisol were greater in NT vs. COLD and SHIV in MOD. Norepinephrine was greater in NT vs. other conditions across intensities. Interleukin-2, IL-5, IL-7, IL-10, IL-17, IFN-γ, Rantes, Eotaxin, IP-10, MIP-1β, MCP-1, VEGF, PDGF, and G-CSF were elevated in NT vs. COLD and/or SHIV. Furthermore, IFN-γ, MIP-1β, MCP-1, IL-10, VEGF, and PDGF demonstrate greater concentrations in SHIV vs. COLD, mainly in the MOD condition. This study demonstrated that exercising in the cold can diminish the exercise-induced systemic inflammatory response seen in a thermoneutral environment. Nonetheless, prolonged cooling inducing shivering thermogenesis prior to exercise, may induce an immuno-stimulatory response following moderate intensity exercise. Performing exercise in cold environments can be a useful strategy in partially inhibiting the acute systemic inflammatory response from exercise but oppositely, additional body cooling may reverse this benefit.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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