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Published in: European Journal of Applied Physiology 9/2019

01-09-2019 | Original Article

Impact of 3-day high and low dietary sodium intake on sodium status in response to exertional-heat stress: a double-blind randomized control trial

Authors: Alan J. McCubbin, Michelle B. Lopez, Gregory R. Cox, Joanne N. Caldwell Odgers, Ricardo J. S. Costa

Published in: European Journal of Applied Physiology | Issue 9/2019

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Abstract

Purpose

To determine the impact of altering dietary sodium intake for 3 days preceding exercise on sweat sodium concentration [Na+], and cardiovascular and thermoregulatory variables.

Methods

Fifteen male endurance athletes (runners n = 8, cyclists n = 7) consumed a low (LNa, 15 mg kg−1 day−1) or high (HNa, 100 mg kg−1 day−1) sodium diet, or their usual free-living diet [UDiet, 46 (37–56) mg kg−1 day−1] for 3 days in a double-blind, randomized cross-over design, collecting excreted urine (UNa) and refraining from exercise. On day 4, they completed 2 h running at 55% \(\dot{V}\)O2max or cycling at 55% maximum aerobic power in Tamb 35 °C. Pre- and post-exercise blood samples were collected, and sweat from five sites using absorbent patches along the exercise protocol.

Results

UNa on days 2–3 pre-exercise [mean (95% CI) LNa 16 (12–19) mg kg−1 day−1, UDiet 46 (37–56) mg kg−1 day−1, HNa 79 (72–85) mg kg−1 day−1; p < 0.001] and pre-exercise aldosterone [LNa 240 (193–286) mg kg−1 day−1, UDiet 170 (116–224) mg kg−1 day−1, HNa 141 (111–171) mg kg−1 day−1; p = 0.001] reflected sodium intake as expected. Pre-exercise total body water was greater following HNa compared to LNa (p < 0.05), but not UDiet. Estimated whole-body sweat [Na+] following UDiet was 10–11% higher than LNa and 10–12% lower than HNa (p < 0.001), and correlated with pre-exercise aldosterone (1st h r =  − 0.568, 2nd h r =  − 0.675; p < 0.01). Rectal temperature rose more quickly in LNa vs HNa (40–70 min; p < 0.05), but was similar at the conclusion of exercise, and no significant differences in heart rate or perceived exertion were observed.

Conclusions

Three day altered sodium intake influenced urinary sodium excretion and sweat [Na+], and the rise in rectal temperature, but had no effect on perceived exertion during moderate-intensity exercise in hot ambient conditions.
Literature
go back to reference Armstrong LE, Costill DL, Fink WJ (1985) Effects of dietary sodium on body and muscle potassium content during heat acclimation. Eur J Appl Physiol Occup Physiol 54(4):391–397CrossRef Armstrong LE, Costill DL, Fink WJ (1985) Effects of dietary sodium on body and muscle potassium content during heat acclimation. Eur J Appl Physiol Occup Physiol 54(4):391–397CrossRef
go back to reference Borg GA (1982) Psychophysical bases of perceived exertion. Med Sci Sports Exerc 14(5):377–381CrossRef Borg GA (1982) Psychophysical bases of perceived exertion. Med Sci Sports Exerc 14(5):377–381CrossRef
go back to reference Castro-Sepulveda M, Cancino J, Fernández-Verdejo R, Pérez-Luco C, Jannas-Vela S, Ramirez-Campillo R, del Coso J, Zbinden-Foncea H (2019) Basal serum cortisol and testosterone/cortisol ratio are related to rate of Na+ lost during exercise in elite soccer players. Int J Sports Nutr Exerc Metab. https://doi.org/10.1123/ijsnem.2019-0129 (in press) CrossRef Castro-Sepulveda M, Cancino J, Fernández-Verdejo R, Pérez-Luco C, Jannas-Vela S, Ramirez-Campillo R, del Coso J, Zbinden-Foncea H (2019) Basal serum cortisol and testosterone/cortisol ratio are related to rate of Na+ lost during exercise in elite soccer players. Int J Sports Nutr Exerc Metab. https://​doi.​org/​10.​1123/​ijsnem.​2019-0129 (in press) CrossRef
go back to reference Collins KJ (1966) The action of exogenous aldosterone on the secretion and composition of drug-induced sweat. Clin Sci 30(2):207–221PubMed Collins KJ (1966) The action of exogenous aldosterone on the secretion and composition of drug-induced sweat. Clin Sci 30(2):207–221PubMed
go back to reference Conn JW, Arbor A (1963) Aldosteronism in man—some clinical and climatological aspects—Part I. JAMA 183:775–781PubMed Conn JW, Arbor A (1963) Aldosteronism in man—some clinical and climatological aspects—Part I. JAMA 183:775–781PubMed
go back to reference Conn JW, Johnston MW, Louis LH (1946) Relationship between salt intake and sweat salt concentration under conditions of hard work in humid heat. Fed Proc 5(1):230PubMed Conn JW, Johnston MW, Louis LH (1946) Relationship between salt intake and sweat salt concentration under conditions of hard work in humid heat. Fed Proc 5(1):230PubMed
go back to reference Costa RJ, Oliver SJ, Laing SJ, Waiters R, Bilzon JL, Walsh NP (2009) Influence of timing of postexercise carbohydrate-protein ingestion on selected immune indices. Int J Sport Nutr Exerc Metab 19(4):366–384CrossRef Costa RJ, Oliver SJ, Laing SJ, Waiters R, Bilzon JL, Walsh NP (2009) Influence of timing of postexercise carbohydrate-protein ingestion on selected immune indices. Int J Sport Nutr Exerc Metab 19(4):366–384CrossRef
go back to reference Dill DB, Costill DL (1974) Calculation of percentage changes in volumes of blood, plasma, and red cells in dehydration. J Appl Physiol 37(2):247–248CrossRef Dill DB, Costill DL (1974) Calculation of percentage changes in volumes of blood, plasma, and red cells in dehydration. J Appl Physiol 37(2):247–248CrossRef
go back to reference Earhart EL, Weiss EP, Rahman R, Kelly PV (2015) Effects of oral sodium supplementation on indices of thermoregulation in trained, endurance athletes. J Sports Sci Med 14(1):172–178PubMedPubMedCentral Earhart EL, Weiss EP, Rahman R, Kelly PV (2015) Effects of oral sodium supplementation on indices of thermoregulation in trained, endurance athletes. J Sports Sci Med 14(1):172–178PubMedPubMedCentral
go back to reference Hargreaves M, Morgan T, Snow R, Guerin M (1989) Exercise tolerance in the heat on normal and low sodium diets. Clin Sci 76:553–557CrossRef Hargreaves M, Morgan T, Snow R, Guerin M (1989) Exercise tolerance in the heat on normal and low sodium diets. Clin Sci 76:553–557CrossRef
go back to reference Hawley JA, Noakes T (1992) Peak power output predicts maximal oxygen uptake and performance time in trained cyclists. Eur J Appl Physiol 65(1):79–83CrossRef Hawley JA, Noakes T (1992) Peak power output predicts maximal oxygen uptake and performance time in trained cyclists. Eur J Appl Physiol 65(1):79–83CrossRef
go back to reference Hollies NRS, Goldman RF (eds) (1977) Psychological scaling in comfort assessment. In: Clothing comfort: interaction of thermal, ventilation, construction, and assessment factors. Science Publishers Inc., Ann Arbor Hollies NRS, Goldman RF (eds) (1977) Psychological scaling in comfort assessment. In: Clothing comfort: interaction of thermal, ventilation, construction, and assessment factors. Science Publishers Inc., Ann Arbor
go back to reference Holmes N, Bates G, Zhao Y, Sherriff J, Miller V (2016) The effect of exercise intensity on sweat rate and sweat sodium and potassium losses in trained endurance athletes. Ann Sports Med Res 3(2):1063–1066 Holmes N, Bates G, Zhao Y, Sherriff J, Miller V (2016) The effect of exercise intensity on sweat rate and sweat sodium and potassium losses in trained endurance athletes. Ann Sports Med Res 3(2):1063–1066
go back to reference Kennedy NSJ, Eastell R, Smith MA, Tothill P (1983) Normal levels of total body sodium and chlorine by neutron activation analysis. Phys Med Biol 28(3):215–221CrossRef Kennedy NSJ, Eastell R, Smith MA, Tothill P (1983) Normal levels of total body sodium and chlorine by neutron activation analysis. Phys Med Biol 28(3):215–221CrossRef
go back to reference Konikoff F, Shoenfeld Y, Magazanik A (1986) Effects of salt loading during exercise in a hot dry climate. Biomed Pharmacother 40(8):296–300PubMed Konikoff F, Shoenfeld Y, Magazanik A (1986) Effects of salt loading during exercise in a hot dry climate. Biomed Pharmacother 40(8):296–300PubMed
go back to reference McCance RA (1938) The effect of salt deficiency in man on the volume of the extracellular fluids, and on the composition of sweat, saliva, gastric juice and cerebrospinal fluid. J Physiol 92:208–218CrossRef McCance RA (1938) The effect of salt deficiency in man on the volume of the extracellular fluids, and on the composition of sweat, saliva, gastric juice and cerebrospinal fluid. J Physiol 92:208–218CrossRef
go back to reference Ramanathan NL, Sen Gupta A, Lundgren NP (1956) Changes in the salt concentration of sweat during exercise in monsoon weather. Indian J Med Res 44(2):377–384PubMed Ramanathan NL, Sen Gupta A, Lundgren NP (1956) Changes in the salt concentration of sweat during exercise in monsoon weather. Indian J Med Res 44(2):377–384PubMed
go back to reference Robinson S, Kincaid RK, Rhamy RK (1950) Effect of salt deficiency on the salt concentration in sweat. J Appl Physiol 3(2):55–62CrossRef Robinson S, Kincaid RK, Rhamy RK (1950) Effect of salt deficiency on the salt concentration in sweat. J Appl Physiol 3(2):55–62CrossRef
go back to reference Robinson SN, Nicholas JR, Smith JH, Daly WJ, Pearcy M (1955) Time relation of renal and sweat gland adjustments to salt deficiency in men. J Appl Physiol 8(2):159–165CrossRef Robinson SN, Nicholas JR, Smith JH, Daly WJ, Pearcy M (1955) Time relation of renal and sweat gland adjustments to salt deficiency in men. J Appl Physiol 8(2):159–165CrossRef
go back to reference Sato K (1977) The physiology, pharmacology, and biochemistry of the eccrine sweat gland. Rev Physiol Biochem Pharmacol 79:51–131CrossRef Sato K (1977) The physiology, pharmacology, and biochemistry of the eccrine sweat gland. Rev Physiol Biochem Pharmacol 79:51–131CrossRef
go back to reference Sato K, Kang WH, Saga K, Sato KT (1989) Biology of sweat glands and their disorders. I. Normal sweat gland function. J Am Acad Dermatol 20(4):537–563CrossRef Sato K, Kang WH, Saga K, Sato KT (1989) Biology of sweat glands and their disorders. I. Normal sweat gland function. J Am Acad Dermatol 20(4):537–563CrossRef
go back to reference Saunders AG, Dugas JP, Tucker R, Lambert MI, Noakes TD (2005) The effects of different air velocities on heat storage and body temperature in humans cycling in a hot, humid environment. Acta Physiol Scand 183:241–255CrossRef Saunders AG, Dugas JP, Tucker R, Lambert MI, Noakes TD (2005) The effects of different air velocities on heat storage and body temperature in humans cycling in a hot, humid environment. Acta Physiol Scand 183:241–255CrossRef
go back to reference Shirreffs SM, Maughan RJ (1997) Whole body sweat collection in humans: an improved method with preliminary data on electrolyte content. J Appl Physiol 82(1):336–341CrossRef Shirreffs SM, Maughan RJ (1997) Whole body sweat collection in humans: an improved method with preliminary data on electrolyte content. J Appl Physiol 82(1):336–341CrossRef
go back to reference Watson PE, Watson ID, Batt RD (1980) Total body water volumes for adult males and females estimated from simple anthropometric measurements. Am J Clin Nutr 33(1):27–39CrossRef Watson PE, Watson ID, Batt RD (1980) Total body water volumes for adult males and females estimated from simple anthropometric measurements. Am J Clin Nutr 33(1):27–39CrossRef
go back to reference Yamazaki F, Fujii N, Sone R, Ikegami H (1994) Mechanisms of potentiation in sweating induced by long-term physical training. Eur J Appl Physiol 69:228–232CrossRef Yamazaki F, Fujii N, Sone R, Ikegami H (1994) Mechanisms of potentiation in sweating induced by long-term physical training. Eur J Appl Physiol 69:228–232CrossRef
Metadata
Title
Impact of 3-day high and low dietary sodium intake on sodium status in response to exertional-heat stress: a double-blind randomized control trial
Authors
Alan J. McCubbin
Michelle B. Lopez
Gregory R. Cox
Joanne N. Caldwell Odgers
Ricardo J. S. Costa
Publication date
01-09-2019
Publisher
Springer Berlin Heidelberg
Published in
European Journal of Applied Physiology / Issue 9/2019
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-019-04199-2

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