Literature DB >> 9367285

The impact of heat exposure and repeated exercise on circulating stress hormones.

I K Brenner1, J Zamecnik, P N Shek, R J Shephard.   

Abstract

To determine if heat exposure alters the hormonal responses to moderate, repeated exercise, 11 healthy male subjects [age = 27.1 (3.0) years; maximal oxygen consumption, VO2max = 47.6 (6.2) ml x kg x min(-1); mean (SD)] were assigned to four different experimental conditions according to a randomized-block design. While in a thermoneutral (23 degrees C) or heated (40 degrees C, 30% relative humidity) climatic chamber, subjects performed either cycle ergometer exercise (two 30-min bouts at approximately 50% VO2max, separated by a 45-min recovery interval, CEx and HEx conditions), or remained seated for 3 h (CS and HS conditions). Blood samples were analyzed for various exercise stress hormones [epinephrine (E), norepinephrine (NE), dopamine, cortisol and human growth hormone (hGH)]. Passive heating did not alter the concentrations of any of these hormones significantly. During both environmental conditions, exercise induced significant (P < 0.001) elevations in plasma E, NE and hGH levels. At 23 degrees C during bout 1: E = 393 (199) pmol x l(-1) (CEx) vs 174 (85) pmol x l(-1) (CS), NE = 4593 (2640) pmol x l(-1) (CEx) vs 1548 (505) pmol x l(-1) (CS), and hGH = 274 (340) pmol x l(-1) (CEx)vs 64 (112) pmol x l(-1) (CS). At 40 degrees C, bout 1: E = 596 (346) pmol x l(-1) (HEx) vs 323 (181) pmol x l(-1) (HS), NE = 7789 (5129) pmol x l(-1) (HEx) vs 1527 (605) pmol x l(-1) (HS), and hGH = 453 (494) pmol x l(-1) (HEx) vs 172 (355) pmol x l(-1) (HS). However, concentrations of plasma cortisol were increased only in response to exercise in the heat [HEx = 364 (168) nmol x l(-1) vs HS = 295 (114) nmol x l(-1)]. Compared to exercise at room temperature, plasma levels of E, NE and cortisol were all higher during exercise in the heat (P < 0.001 in all cases). The repetition of exercise did not significantly alter the pattern of change in cortisol or hGH levels in either environmental condition. However, repetition of exercise in the heat increased circulatory and psychological stress, with significantly (P < 0.001) higher plasma concentrations of E and NE. These results indicate a differential response of the various stress hormones to heat exposure and repeated moderate exercise.

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Year:  1997        PMID: 9367285     DOI: 10.1007/s004210050274

Source DB:  PubMed          Journal:  Eur J Appl Physiol Occup Physiol        ISSN: 0301-5548


  28 in total

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2.  Effects of hyperthermia on the metabolic responses to repeated high-intensity exercise.

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4.  Acute heat exposure increases high-intensity performance during sprint cycle exercise.

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5.  Youth sports in the heat: recovery and scheduling considerations for tournament play.

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6.  Human resting extracellular heat shock protein 72 concentration decreases during the initial adaptation to exercise in a hot, humid environment.

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7.  No effects of acclimation to heat on immune and hormonal responses to passive heating in healthy volunteers.

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8.  Acute effects of heated resistance exercise in female and male power athletes.

Authors:  Julia R Casadio; Adam G Storey; Fabrice Merien; Andrew E Kilding; James D Cotter; Paul B Laursen
Journal:  Eur J Appl Physiol       Date:  2017-07-26       Impact factor: 3.078

9.  From Lab to Real World: Heat Acclimation Considerations for Elite Athletes.

Authors:  Julia R Casadio; Andrew E Kilding; James D Cotter; Paul B Laursen
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10.  Impact of elevated ambient temperatures on the acute immune response to intensive endurance exercise.

Authors:  A M Niess; E Fehrenbach; R Lehmann; L Opavsky; M Jesse; H Northoff; H-H Dickhuth
Journal:  Eur J Appl Physiol       Date:  2003-03-25       Impact factor: 3.078

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