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The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males

INTRODUCTION: β-alanine (BAl) and NaHCO(3) (SB) ingestion may provide performance benefits by enhancing concentrations of their respective physiochemical buffer counterparts, muscle carnosine and blood bicarbonate, counteracting acidosis during intense exercise. This study examined the effect of BAl...

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Autores principales: Danaher, Jessica, Gerber, Tracey, Wellard, R. Mark, Stathis, Christos G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4097338/
https://www.ncbi.nlm.nih.gov/pubmed/24832191
http://dx.doi.org/10.1007/s00421-014-2895-9
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author Danaher, Jessica
Gerber, Tracey
Wellard, R. Mark
Stathis, Christos G.
author_facet Danaher, Jessica
Gerber, Tracey
Wellard, R. Mark
Stathis, Christos G.
author_sort Danaher, Jessica
collection PubMed
description INTRODUCTION: β-alanine (BAl) and NaHCO(3) (SB) ingestion may provide performance benefits by enhancing concentrations of their respective physiochemical buffer counterparts, muscle carnosine and blood bicarbonate, counteracting acidosis during intense exercise. This study examined the effect of BAl and SB co-supplementation as an ergogenic strategy during high-intensity exercise. METHODS: Eight healthy males ingested either BAl (4.8 g day(−1) for 4 weeks, increased to 6.4 g day(−1) for 2 weeks) or placebo (Pl) (CaCO(3)) for 6 weeks, in a crossover design (6-week washout between supplements). After each chronic supplementation period participants performed two trials, each consisting of two intense exercise tests performed over consecutive days. Trials were separated by 1 week and consisted of a repeated sprint ability (RSA) test and cycling capacity test at 110 % Wmax (CCT(110 %)). Placebo (Pl) or SB (300 mg kgbw(−1)) was ingested prior to exercise in a crossover design to creating four supplement conditions (BAl-Pl, BAl-SB, Pl–Pl, Pl-SB). RESULTS: Carnosine increased in the gastrocnemius (n = 5) (p = 0.03) and soleus (n = 5) (p = 0.02) following BAl supplementation, and Pl-SB and BAl-SB ingestion elevated blood HCO(3) (−) concentrations (p < 0.01). Although buffering capacity was elevated following both BAl and SB ingestion, performance improvement was only observed with BAl-Pl and BAl-SB increasing time to exhaustion of the CCT(110 %) test 14 and 16 %, respectively, compared to Pl–Pl (p < 0.01). CONCLUSION: Supplementation of BAl and SB elevated buffering potential by increasing muscle carnosine and blood bicarbonate levels, respectively. BAl ingestion improved performance during the CCT(110 %), with no aggregating effect of SB supplementation (p > 0.05). Performance was not different between treatments during the RSA test.
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spelling pubmed-40973382014-07-21 The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males Danaher, Jessica Gerber, Tracey Wellard, R. Mark Stathis, Christos G. Eur J Appl Physiol Original Article INTRODUCTION: β-alanine (BAl) and NaHCO(3) (SB) ingestion may provide performance benefits by enhancing concentrations of their respective physiochemical buffer counterparts, muscle carnosine and blood bicarbonate, counteracting acidosis during intense exercise. This study examined the effect of BAl and SB co-supplementation as an ergogenic strategy during high-intensity exercise. METHODS: Eight healthy males ingested either BAl (4.8 g day(−1) for 4 weeks, increased to 6.4 g day(−1) for 2 weeks) or placebo (Pl) (CaCO(3)) for 6 weeks, in a crossover design (6-week washout between supplements). After each chronic supplementation period participants performed two trials, each consisting of two intense exercise tests performed over consecutive days. Trials were separated by 1 week and consisted of a repeated sprint ability (RSA) test and cycling capacity test at 110 % Wmax (CCT(110 %)). Placebo (Pl) or SB (300 mg kgbw(−1)) was ingested prior to exercise in a crossover design to creating four supplement conditions (BAl-Pl, BAl-SB, Pl–Pl, Pl-SB). RESULTS: Carnosine increased in the gastrocnemius (n = 5) (p = 0.03) and soleus (n = 5) (p = 0.02) following BAl supplementation, and Pl-SB and BAl-SB ingestion elevated blood HCO(3) (−) concentrations (p < 0.01). Although buffering capacity was elevated following both BAl and SB ingestion, performance improvement was only observed with BAl-Pl and BAl-SB increasing time to exhaustion of the CCT(110 %) test 14 and 16 %, respectively, compared to Pl–Pl (p < 0.01). CONCLUSION: Supplementation of BAl and SB elevated buffering potential by increasing muscle carnosine and blood bicarbonate levels, respectively. BAl ingestion improved performance during the CCT(110 %), with no aggregating effect of SB supplementation (p > 0.05). Performance was not different between treatments during the RSA test. Springer Berlin Heidelberg 2014-05-16 2014 /pmc/articles/PMC4097338/ /pubmed/24832191 http://dx.doi.org/10.1007/s00421-014-2895-9 Text en © The Author(s) 2014 https://creativecommons.org/licenses/by/4.0/ Open AccessThis article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Original Article
Danaher, Jessica
Gerber, Tracey
Wellard, R. Mark
Stathis, Christos G.
The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
title The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
title_full The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
title_fullStr The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
title_full_unstemmed The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
title_short The effect of β-alanine and NaHCO(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
title_sort effect of β-alanine and nahco(3) co-ingestion on buffering capacity and exercise performance with high-intensity exercise in healthy males
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4097338/
https://www.ncbi.nlm.nih.gov/pubmed/24832191
http://dx.doi.org/10.1007/s00421-014-2895-9
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