Literature DB >> 11167307

Oral creatine supplementation decreases plasma markers of adenine nucleotide degradation during a 1-h cycle test.

B M Bellinger1, A Bold, G R Wilson, T D Noakes, K H Myburgh.   

Abstract

We investigated the effect of oral creatine supplementation (20 g d(-1) for 7 days) on metabolism during a 1-h cycling performance trial. Twenty endurance-trained cyclists participated in this double-blind placebo controlled study. Five days after familiarization with the exercise test, the subjects underwent a baseline muscle biopsy. Thereafter, a cannula was inserted into a forearm vein before performing the baseline maximal 1-h cycle (test 1 (T1)). Blood samples were drawn at regular intervals during exercise and recovery. After creatine (Cr) loading, the muscle biopsy, 1-h cycling test (test 2 (T2)) and blood sampling were repeated. Resting muscle total creatine (TCr), measured by high performance liquid chromatography, was increased (P < 0.001) in the creatine group from 123.0 +/- 3.8 - 159.8 +/- 7.9 mmol kg(-1) dry wt, but was unchanged in the placebo group (126.7 +/- 4.7 - 127.5 +/- 3.6 mmol kg(-1) dry wt). The extent of Cr loading was unrelated to baseline Cr levels (r=0.33, not significant). Supplementation did not significantly improve exercise performance (Cr group: 39.1 +/- 0.9 vs. 39.8 +/- 0.8 km and placebo group: 39.3 +/- 0.8 vs. 39.2 +/- 1.1 km) or change plasma lactate concentrations. Plasma concentrations of ammonia (NH(3)) (P < 0.05) and hypoxanthine (Hx) (P < 0.01) were lower in the Cr group from T1 to T2. Our results indicate that Cr supplementation alters the metabolic response during sustained high-intensity submaximal exercise. Plasma data suggest that nett intramuscular adenine nucleotide degradation may be decreased in the presence of enhanced intramuscular TCr concentration even during submaximal exercise.

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Year:  2000        PMID: 11167307     DOI: 10.1046/j.1365-201x.2000.00777.x

Source DB:  PubMed          Journal:  Acta Physiol Scand        ISSN: 0001-6772


  7 in total

Review 1.  Creatine supplementation in health and disease: what is the evidence for long-term efficacy?

Authors:  Wim Derave; Bert O Eijnde; Peter Hespel
Journal:  Mol Cell Biochem       Date:  2003-02       Impact factor: 3.396

Review 2.  Oral creatine supplementation and skeletal muscle metabolism in physical exercise.

Authors:  José L M Mesa; Jonatan R Ruiz; M Marcela González-Gross; Angel Gutiérrez Sáinz; Manuel J Castillo Garzón
Journal:  Sports Med       Date:  2002       Impact factor: 11.136

Review 3.  Bioavailability, Efficacy, Safety, and Regulatory Status of Creatine and Related Compounds: A Critical Review.

Authors:  Richard B Kreider; Ralf Jäger; Martin Purpura
Journal:  Nutrients       Date:  2022-02-28       Impact factor: 5.717

4.  Contribution of creatine to protein homeostasis in athletes after endurance and sprint running.

Authors:  Fu-Chun Tang; Chun-Chen Chan; Po-Ling Kuo
Journal:  Eur J Nutr       Date:  2013-02-08       Impact factor: 5.614

Review 5.  Creatine for Exercise and Sports Performance, with Recovery Considerations for Healthy Populations.

Authors:  Benjamin Wax; Chad M Kerksick; Andrew R Jagim; Jerry J Mayo; Brian C Lyons; Richard B Kreider
Journal:  Nutrients       Date:  2021-06-02       Impact factor: 5.717

6.  The effects of creatine pyruvate and creatine citrate on performance during high intensity exercise.

Authors:  Ralf Jäger; Jan Metzger; Karin Lautmann; Vladimir Shushakov; Martin Purpura; Kurt-Reiner Geiss; Norbert Maassen
Journal:  J Int Soc Sports Nutr       Date:  2008-02-13       Impact factor: 5.150

7.  Effects of creatine supplementation associated with resistance training on oxidative stress in different tissues of rats.

Authors:  Giuseppe Potrick Stefani; Ramiro Barcos Nunes; André Zuanazzi Dornelles; Jadson Pereira Alves; Marcella Ody Piva; Marlise Di Domenico; Cláudia Ramos Rhoden; Pedro Dal Lago
Journal:  J Int Soc Sports Nutr       Date:  2014-03-24       Impact factor: 5.150

  7 in total

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