The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum

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The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum. / Knudsen, Sine H; Karstoft, Kristian; Pedersen, Bente K; van Hall, Gerrit; Solomon, Thomas.

In: Physiological Reports, Vol. 2, No. 8, e12114, 01.08.2014, p. 1-13.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Knudsen, SH, Karstoft, K, Pedersen, BK, van Hall, G & Solomon, T 2014, 'The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum', Physiological Reports, vol. 2, no. 8, e12114, pp. 1-13. https://doi.org/10.14814/phy2.12114

APA

Knudsen, S. H., Karstoft, K., Pedersen, B. K., van Hall, G., & Solomon, T. (2014). The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum. Physiological Reports, 2(8), 1-13. [e12114]. https://doi.org/10.14814/phy2.12114

Vancouver

Knudsen SH, Karstoft K, Pedersen BK, van Hall G, Solomon T. The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum. Physiological Reports. 2014 Aug 1;2(8):1-13. e12114. https://doi.org/10.14814/phy2.12114

Author

Knudsen, Sine H ; Karstoft, Kristian ; Pedersen, Bente K ; van Hall, Gerrit ; Solomon, Thomas. / The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum. In: Physiological Reports. 2014 ; Vol. 2, No. 8. pp. 1-13.

Bibtex

@article{94aa5f19211f40da84d2afafb309cbe7,
title = "The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum",
abstract = "We investigated glucose tolerance and postprandial glucose fluxes immediately after a single bout of aerobic exercise in subjects representing the entire glucose tolerance continuum. Twenty-four men with normal glucose tolerance (NGT), impaired glucose tolerance (IGT), or type 2 diabetes (T2D; age: 56 ± 1 years; body mass index: 27.8 ± 0.7 kg/m(2), P > 0.05) underwent a 180-min oral glucose tolerance test (OGTT) combined with constant intravenous infusion of [6,6-(2)H2]glucose and ingestion of [U-(13)C]glucose, following 1 h of exercise (50% of peak aerobic power) or rest. In both trials, plasma glucose concentrations and kinetics, insulin, C-peptide, and glucagon were measured. Rates (mg kg(-1) min(-1)) of glucose appearance from endogenous (RaEndo) and exogenous (oral glucose; Ra OGTT) sources, and glucose disappearance (Rd) were determined. We found that exercise increased RaEndo, RaOGTT, and Rd (all P < 0.0001) in all groups with a tendency for a greater (~20%) peak RaOGTT value in NGT subjects when compared to IGT and T2D subjects. Accordingly, following exercise, the plasma glucose concentration during the OGTT was increased in NGT subjects (P < 0.05), while unchanged in subjects with IGT and T2D. In conclusion, while a single bout of moderate-intensity exercise increased the postprandial glucose response in NGT subjects, glucose tolerance following exercise was preserved in the two hyperglycemic groups. Thus, postprandial plasma glucose responses immediately following exercise are dependent on the underlying degree of glycemic control.",
author = "Knudsen, {Sine H} and Kristian Karstoft and Pedersen, {Bente K} and {van Hall}, Gerrit and Thomas Solomon",
note = "{\textcopyright} 2014 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society.",
year = "2014",
month = aug,
day = "1",
doi = "10.14814/phy2.12114",
language = "English",
volume = "2",
pages = "1--13",
journal = "Physiological Reports",
issn = "2051-817X",
publisher = "Wiley Periodicals, Inc.",
number = "8",

}

RIS

TY - JOUR

T1 - The immediate effects of a single bout of aerobic exercise on oral glucose tolerance across the glucose tolerance continuum

AU - Knudsen, Sine H

AU - Karstoft, Kristian

AU - Pedersen, Bente K

AU - van Hall, Gerrit

AU - Solomon, Thomas

N1 - © 2014 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society.

PY - 2014/8/1

Y1 - 2014/8/1

N2 - We investigated glucose tolerance and postprandial glucose fluxes immediately after a single bout of aerobic exercise in subjects representing the entire glucose tolerance continuum. Twenty-four men with normal glucose tolerance (NGT), impaired glucose tolerance (IGT), or type 2 diabetes (T2D; age: 56 ± 1 years; body mass index: 27.8 ± 0.7 kg/m(2), P > 0.05) underwent a 180-min oral glucose tolerance test (OGTT) combined with constant intravenous infusion of [6,6-(2)H2]glucose and ingestion of [U-(13)C]glucose, following 1 h of exercise (50% of peak aerobic power) or rest. In both trials, plasma glucose concentrations and kinetics, insulin, C-peptide, and glucagon were measured. Rates (mg kg(-1) min(-1)) of glucose appearance from endogenous (RaEndo) and exogenous (oral glucose; Ra OGTT) sources, and glucose disappearance (Rd) were determined. We found that exercise increased RaEndo, RaOGTT, and Rd (all P < 0.0001) in all groups with a tendency for a greater (~20%) peak RaOGTT value in NGT subjects when compared to IGT and T2D subjects. Accordingly, following exercise, the plasma glucose concentration during the OGTT was increased in NGT subjects (P < 0.05), while unchanged in subjects with IGT and T2D. In conclusion, while a single bout of moderate-intensity exercise increased the postprandial glucose response in NGT subjects, glucose tolerance following exercise was preserved in the two hyperglycemic groups. Thus, postprandial plasma glucose responses immediately following exercise are dependent on the underlying degree of glycemic control.

AB - We investigated glucose tolerance and postprandial glucose fluxes immediately after a single bout of aerobic exercise in subjects representing the entire glucose tolerance continuum. Twenty-four men with normal glucose tolerance (NGT), impaired glucose tolerance (IGT), or type 2 diabetes (T2D; age: 56 ± 1 years; body mass index: 27.8 ± 0.7 kg/m(2), P > 0.05) underwent a 180-min oral glucose tolerance test (OGTT) combined with constant intravenous infusion of [6,6-(2)H2]glucose and ingestion of [U-(13)C]glucose, following 1 h of exercise (50% of peak aerobic power) or rest. In both trials, plasma glucose concentrations and kinetics, insulin, C-peptide, and glucagon were measured. Rates (mg kg(-1) min(-1)) of glucose appearance from endogenous (RaEndo) and exogenous (oral glucose; Ra OGTT) sources, and glucose disappearance (Rd) were determined. We found that exercise increased RaEndo, RaOGTT, and Rd (all P < 0.0001) in all groups with a tendency for a greater (~20%) peak RaOGTT value in NGT subjects when compared to IGT and T2D subjects. Accordingly, following exercise, the plasma glucose concentration during the OGTT was increased in NGT subjects (P < 0.05), while unchanged in subjects with IGT and T2D. In conclusion, while a single bout of moderate-intensity exercise increased the postprandial glucose response in NGT subjects, glucose tolerance following exercise was preserved in the two hyperglycemic groups. Thus, postprandial plasma glucose responses immediately following exercise are dependent on the underlying degree of glycemic control.

U2 - 10.14814/phy2.12114

DO - 10.14814/phy2.12114

M3 - Journal article

C2 - 25168869

VL - 2

SP - 1

EP - 13

JO - Physiological Reports

JF - Physiological Reports

SN - 2051-817X

IS - 8

M1 - e12114

ER -

ID: 128481430