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The effect of pre-exercise ingestion of corinthian currant on endurance performance and blood redox status

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Autor
Deli C.K., Poulios A., Georgakouli K., Papanikolaou K., Papoutsis A., Selemekou M., Karathanos V.T., Draganidis D., Tsiokanos A., Koutedakis Y., Fatouros I.G., Jamurtas A.Z.
Fecha
2018
Language
en
DOI
10.1080/02640414.2018.1442781
Materia
lactic acid
adult
blood
breathing
carbohydrate diet
controlled study
crossover procedure
endurance
energy drink
energy metabolism
exercise test
female
glucose blood level
human
lipid metabolism
male
metabolism
middle aged
oxidation reduction reaction
oxygen consumption
physiology
randomized controlled trial
Vitis
young adult
Adult
Blood Glucose
Cross-Over Studies
Dietary Carbohydrates
Energy Drinks
Energy Metabolism
Exercise Test
Female
Humans
Lactic Acid
Lipid Metabolism
Male
Middle Aged
Oxidation-Reduction
Oxygen Consumption
Physical Endurance
Respiration
Vitis
Young Adult
Routledge
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Resumen
The present study investigated the effect of Corinthian currant pre-exercise supplementation on metabolism, performance and blood redox status during, and after prolonged exercise. Eleven healthy participants (21-45y) performed a 90-min constant-intensity (60–70% VO2max) submaximal-trial, plus a time-trial (TT) to exhaustion (95% VO2max) after consuming an isocaloric (1.5g CHO/kg BM) amount of randomly assigned Corinthian currant or glucose-drink, or water (control). Blood was drawn at baseline, pre-exercise, 30min, 60min, 90min of submaximal-trial, post-TT, and 1h post-TT. Post-ingestion blood glucose (GLU) under Corinthian currant was higher compared with water, and similar compared with glucose-drink throughout the study. Respiratory quotient under Corinthian currant was similar with glucose-drink and higher than water throughout the submaximal trial. Accordingly, higher CHO and lower fat oxidation were observed under Corinthian currant compared with water. The TT performance was similar between Corinthian currant, glucose-drink and water. Redox status were similar under all three conditions. Reduced glutathione (GSH) declined while total antioxidant capacity (TAC) and uric acid increased during exercise. GSH and TAC returned to baseline, while uric acid remained increased the following 1h. Corinthian currant, although did not alter exercise-mediated redox status changes and performance, was equally effective to a glucose-drink in maintaining GLU levels during prolonged cycling. © 2018, © 2018 Informa UK Limited, trading as Taylor & Francis Group.
URI
http://hdl.handle.net/11615/73177
Colecciones
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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