Comparisons of isomaltulose, sucrose, and mixture of glucose and fructose ingestions on postexercise hydration state in young men.

Tatsuro Amano, Shingo Katayama, Yumi Okamoto, Junto Otsuka, Naoto Fujii, Glen P Kenny, Takeshi Nishiyasu, Yasuaki Enoki, Daisuke Maejima

Journal: European journal of nutrition 2021;60(8):4519-4529

PMID: 34129073

Abstract

PURPOSE

Isomaltulose is a low glycemic and insulinaemic carbohydrate available as a constituent in sports drink. However, it remains unclear whether postexercise rehydration achieved by isomaltulose drink ingestion alone differs as compared to other carbohydrates.

METHODS

Thirteen young men performed intermittent exercise in the heat (35 °C and relative humidity 40%) to induce a state of hypohydration as defined by a 2% loss in body mass. Thereafter, participants were rehydrated by ingesting drinks equal to the volume of body mass loss with either a mixture of 3.25% glucose and 3.25% fructose, 6.5% sucrose (SUC), or 6.5% isomaltulose (ISO) within the first 30 min of a 3-h recovery. The change in plasma volume (ΔPV) from pre-exercise baseline, blood glucose, and plasma insulin concentration were assessed every 30-min.

RESULTS

ΔPV was lower in ISO as compared to SUC until 90 min of the recovery (all P ≤ 0.038) with no difference thereafter (all P ≥ 0.391). The ΔPV were paralleled by concomitant changes in blood glucose levels that were greater in ISO as compared to other drinks after 90 min of the recovery (all P ≤ 0.035). Plasma insulin secretion, which potentially enhances renal sodium reabsorption and fluid retention, did not differ between the trials (interaction, P = 0.653). ISO induced a greater net fluid volume retention as compared to SUC (P = 0.010).

CONCLUSION

We showed that rehydration with an isomaltulose drink following exercise-heat stress induces comparable recovery of PV and a greater net fluid retention as compared to other drinks, albeit this response is delayed. The delayed water transport along with glucose absorption may modulate this response. This trial was registered in 25th Sep 2019 at https://www.umin.ac.jp/ as UMIN000038099. (249/250).

© 2021. Springer-Verlag GmbH Germany, part of Springer Nature.

Address: Laboratory for Exercise and Environmental Physiology, Faculty of Education, Niigata University, Niigata, Japan. [email protected].; Laboratory for Exercise and Environmental Physiology, Faculty of Education, Niigata University, Niigata, Japan.; Faculty of Health and Sport Sciences, University of Tsukuba, Tsukuba City, Japan.; Human and Environmental Physiology Research Unit, University of Ottawa, Ottawa, Canada.; Advanced Research Institutes, Bourbon Corporation, Niigata, Japan.

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