Literature DB >> 15052581

Using a non-invasive stable isotope tracer to measure the absorption of water in humans.

Rebecca J Hill1, Leslie J C Bluck, Peter S W Davies.   

Abstract

The development of solutions that prevent dehydration or promote adequate re-hydration play a vital role in preventing fatigue during exercise, however, the methods commonly used to assess the hydration ability of such solutions are invasive and often assess the components of absorption separately. This paper describes using a non-invasive deuterium tracer technique that assesses gastric emptying and intestinal absorption simultaneously to evaluate the uptake of water during rest and exercise. The kinetics of absorption are further examined by mathematical modelling of the data generated. For the rest group, 0.05 g/kg of body weight of deuterium, contained in gelatine capsules, was ingested with ordinary tap water and saliva samples were collected every 5 min for one hour while the subject remained seated. The deuterium was administered as above for the exercise group but sample collection was during one hour of exercise on a treadmill at 55% of the subject's maximum heart rate. The enrichment data for each subject were mathematically modelled and the parameters obtained were compared across groups using an independent samples t-test. Compared with the rest condition, the exercise group showed delayed absorption of water as indicated by significant differences for the modelling parameters t2, t1/2, maximum absorption rate and solution absorption amount at t1. Labelling with a deuterium tracer is a good measure of the relative rate ingested fluids are absorbed by the body. Mathematical modelling of the data generates rates of maximum absorption and allows calculation of the percentage of the solution that is absorbed at any given time during the testing period. Copyright 2004 John Wiley & Sons, Ltd.

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Year:  2004        PMID: 15052581     DOI: 10.1002/rcm.1391

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  4 in total

1.  Thickened fluids and water absorption in rats and humans.

Authors:  Kendall Sharpe; Leigh Ward; Julie Cichero; Peter Sopade; Peter Halley
Journal:  Dysphagia       Date:  2007-02-08       Impact factor: 3.438

2.  Influence of acute fluid loading on stress-induced hemoconcentration and cardiovascular reactivity.

Authors:  Stephen M Patterson; Melissa M VanderKaay; Birgit A Shanholtzer; Cornelia A Patterson
Journal:  J Behav Med       Date:  2008-07-08

3.  A novel stable isotope approach for determining the impact of thickening agents on water absorption.

Authors:  Rebecca J Hill; Pamela Dodrill; Leslie J C Bluck; Peter S W Davies
Journal:  Dysphagia       Date:  2009-06-26       Impact factor: 3.438

Review 4.  Molecular and physical technologies for monitoring fluid and electrolyte imbalance: A focus on cancer population.

Authors:  Devasier Bennet; Yasaman Khorsandian; Jody Pelusi; Amy Mirabella; Patrick Pirrotte; Frederic Zenhausern
Journal:  Clin Transl Med       Date:  2021-06
  4 in total

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