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Assessment of Extracellular Dehydration Using Saliva Osmolality

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Specialty Physiology
Date 2013 Oct 24
PMID 24150781
Citations 5
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Abstract

Introduction: When substantial solute losses accompany body water an isotonic hypovolemia (extracellular dehydration) results. The potential for using blood or urine to assess extracellular dehydration is generally poor, but saliva is not a simple ultra-filtrate of plasma and the autonomic regulation of salivary gland function suggests the possibility that saliva osmolality (Sosm) may afford detection of extracellular dehydration via the influence of volume-mediated factors.

Purpose: This study aimed to evaluate the assessment of extracellular dehydration using Sosm. In addition, two common saliva collection methods and their effects on Sosm were compared.

Methods: Blood, urine, and saliva samples were collected in 24 healthy volunteers during paired euhydration and dehydration trials. Furosemide administration and 12 h fluid restriction were used to produce extracellular dehydration. Expectoration and salivette collection methods were compared in a separate group of eight euhydrated volunteers. All comparisons were made using paired t-tests. The diagnostic potential of body fluids was additionally evaluated.

Results: Dehydration (3.1 ± 0.5% loss of body mass) decreased PV (-0.49 ± 0.12 L; -15.12 ± 3.94% change), but Sosm changes were marginal (<10 mmol/kg) and weakly correlated with changes in absolute or relative PV losses. Overall diagnostic accuracy was poor (AUC = 0.77-0.78) for all body fluids evaluated. Strong agreement was observed between Sosm methods (Expectoration: 61 ± 10 mmol/kg, Salivette: 61 ± 8 mmol/kg, p > 0.05).

Conclusions: Extracelluar dehydration was not detectable using plasma, urine, or saliva measures. Salivette and expectoration sampling methods produced similar, consistent results for Sosm, suggesting no methodological influence on Sosm.

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References
1.
Wang Z, Deurenberg P, Wang W, Pietrobelli A, Baumgartner R, Heymsfield S . Hydration of fat-free body mass: review and critique of a classic body-composition constant. Am J Clin Nutr. 1999; 69(5):833-41. DOI: 10.1093/ajcn/69.5.833. View

2.
Cheuvront S, Ely B, Kenefick R, Buller M, Charkoudian N, Sawka M . Hydration assessment using the cardiovascular response to standing. Eur J Appl Physiol. 2012; 112(12):4081-9. DOI: 10.1007/s00421-012-2390-0. View

3.
Armstrong L . Hydration assessment techniques. Nutr Rev. 2005; 63(6 Pt 2):S40-54. DOI: 10.1111/j.1753-4887.2005.tb00153.x. View

4.
Ely B, Cheuvront S, Kenefick R, Sawka M . Limitations of salivary osmolality as a marker of hydration status. Med Sci Sports Exerc. 2010; 43(6):1080-4. DOI: 10.1249/MSS.0b013e3182058643. View

5.
Cheuvront S, Kenefick R, Montain S, Sawka M . Mechanisms of aerobic performance impairment with heat stress and dehydration. J Appl Physiol (1985). 2010; 109(6):1989-95. DOI: 10.1152/japplphysiol.00367.2010. View