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Hyperhydration with Glycerol, Sodium, and Isomaltulose or Sucrose on Fluid Balance, Thermoregulation, and Exercise
Junto Otsuka1, Yumi Okamoto1, Yasuaki Enoki
1Laboratory for Exercise and Environment Physiology, Faculty of Education, Niigata University, Niigata, JAPAN.
Purpose:
We aimed to investigate whether the addition of carbohydrates (sucrose [Suc] or isomaltulose [Iso]) to a beverage containing glycerol (Gly) and sodium (Na) would enhance fluid balance, thermoregulatory response, and high-intensity exercise capacity during exercise in hot environments.
Methods:
In a randomized, double-blinded, and crossover study, 13 healthy men consumed 1 L of beverage containing 1) 7% Gly + 0.5% Na (Gly + Na), 2) Gly + Na with 7% Suc (Gly + Na + Suc), 3) Gly + Na with 7% Iso (Gly + Na + Iso), or 4) water (CON) over 40 min in a hot environment (32°C, 50% relative humidity). Participants then completed three 30-min cycling bouts at 50% peak oxygen consumption (V̇O 2peak ), followed by a time-to-exhaustion (TTE) trial at 80% V̇O 2peak . Fluid balance and thermoregulatory response were assessed throughout the experiment.
Results:
Compared with CON, beverages containing Gly and Na attenuated the total urine volume (all P < 0.001), and the addition of Iso (331 ± 84 g) further encouraged this response compared with Gly + Na and Gly + Na + Suc (429 ± 68 and 445 ± 133 g, respectively, both P ≤ 0.030). Compared with CON, the plasma volume increased with Gly + Na + Suc during the first exercise bout (-2.2% ± 6.7% and 4.3% ± 5.4%, respectively, P = 0.048) and with Gly + Na + Iso during the TTE (-9.1% ± 4.4% and -4.1% ± 4.0%, respectively, P = 0.025). The rectal temperature increased whereas local sweating responses were reduced more with Gly- and Na-containing beverages than with CON (all P ≤ 0.028). No differences were found in TTE among the beverages ( P = 0.159).
Conclusions:
Adding Suc or Iso to Gly- and Na-contained beverages partially improves fluid balance but does not improve thermoregulatory responses and performance during moderate-intensity exercise in hot environments.
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