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Published in: Sports Medicine 7/2015

01-07-2015 | Review Article

Impact of Dietary Antioxidants on Sport Performance: A Review

Authors: Andrea J. Braakhuis, Will G. Hopkins

Published in: Sports Medicine | Issue 7/2015

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Abstract

Many athletes supplement with antioxidants in the belief this will reduce muscle damage, immune dysfunction and fatigue, and will thus improve performance, while some evidence suggests it impairs training adaptations. Here we review the effect of a range of dietary antioxidants and their effects on sport performance, including vitamin E, quercetin, resveratrol, beetroot juice, other food-derived polyphenols, spirulina and N-acetylcysteine (NAC). Older studies suggest vitamin E improves performance at altitude, with possible harmful effects on sea-level performance. Acute intake of vitamin E is worthy of further consideration, if plasma levels can be elevated sufficiently. Quercetin has a small beneficial effect for exercise of longer duration (>100 min), but it is unclear whether this benefits athletes. Resveratrol benefits trained rodents; more research is needed in athletes. Meta-analysis of beetroot juice studies has revealed that the nitrate component of beetroot juice had a substantial but unclear effect on performance when averaged across athletes, non-athletes and modes of exercise (single dose 1.4 ± 2.0 %, double dose 0.5 ± 1.9 %). The effect of addition of polyphenols and other components to beetroot juice was trivial but unclear (single dose 0.4 ± 3.2 %, double dose −0.5 ± 3.3 %). Other food-derived polyphenols indicate a range of performance outcomes from a large improvement to moderate impairment. Limited evidence suggests spirulina enhances endurance performance. Intravenous NAC improved endurance cycling performance and reduced muscle fatigue. On the basis of vitamin E and NAC studies, acute intake of antioxidants is likely to be beneficial. However, chronic intakes of most antioxidants have a harmful effect on performance.
Literature
1.
go back to reference Alessio HM. Exercise-induced oxidative stress. Med Sci Sports Exerc. 1993;25(2):218–24.PubMed Alessio HM. Exercise-induced oxidative stress. Med Sci Sports Exerc. 1993;25(2):218–24.PubMed
2.
go back to reference Sakellariou GK, Jackson MJ, Vasilaki A. Redefining the major contributors to superoxide production in contracting skeletal muscle: the role of NAD(P)H oxidases. Free Rad Res. 2014;48(1):12–29. Sakellariou GK, Jackson MJ, Vasilaki A. Redefining the major contributors to superoxide production in contracting skeletal muscle: the role of NAD(P)H oxidases. Free Rad Res. 2014;48(1):12–29.
3.
go back to reference Finaud J, Lac G, Filaire E. Oxidative stress: relationship with exercise and training. Sports Med. 2006;36(4):327–58.PubMed Finaud J, Lac G, Filaire E. Oxidative stress: relationship with exercise and training. Sports Med. 2006;36(4):327–58.PubMed
4.
go back to reference Richardson RS, Donato AJ, Uberoi A, et al. Exercise-induced brachial artery vasodilation: role of free radicals. Am J Appl Physiol. 2007;292(3):H1516–22. Richardson RS, Donato AJ, Uberoi A, et al. Exercise-induced brachial artery vasodilation: role of free radicals. Am J Appl Physiol. 2007;292(3):H1516–22.
5.
go back to reference Hurst RD, Wells RW, Hurst SM, et al. Blueberry polyphenolic suppress oxidative stress-induced skeletal muscle cell damage in vitro. Mol Nutr Food Res. 2009;53:1–11. Hurst RD, Wells RW, Hurst SM, et al. Blueberry polyphenolic suppress oxidative stress-induced skeletal muscle cell damage in vitro. Mol Nutr Food Res. 2009;53:1–11.
6.
go back to reference Gliemann L, Schmidt JF, Olesen J, et al. Resveratrol blunts the positive effects of exercise training on cardiovascular health in aged men. J Physiol. 2013;591(20):5047–59.PubMedCentralPubMed Gliemann L, Schmidt JF, Olesen J, et al. Resveratrol blunts the positive effects of exercise training on cardiovascular health in aged men. J Physiol. 2013;591(20):5047–59.PubMedCentralPubMed
7.
go back to reference Gomez-Cabrera MC, Domenech E, Romagnoli M, et al. Oral administration of vitamin C decreases muscle mitochondrial biogenesis and hampers training-induced adaptations in endurance performance. Am J Clin Nutr. 2008;87:147–9. Gomez-Cabrera MC, Domenech E, Romagnoli M, et al. Oral administration of vitamin C decreases muscle mitochondrial biogenesis and hampers training-induced adaptations in endurance performance. Am J Clin Nutr. 2008;87:147–9.
9.
go back to reference Ristow M, Zarse K, Oberbach A, et al. Antioxidants prevent health-promoting effects of physical exercise in humans. PNAS. 2009;106(21):8665–70.PubMedCentralPubMed Ristow M, Zarse K, Oberbach A, et al. Antioxidants prevent health-promoting effects of physical exercise in humans. PNAS. 2009;106(21):8665–70.PubMedCentralPubMed
10.
go back to reference Margonis K, Fatouros IG, Jamurtas AZ, et al. Oxidative stress biomarkers responses to physical overtraining: implications for diagnosis. Free Radic Biol Med. 2007;43(6):901–10.PubMed Margonis K, Fatouros IG, Jamurtas AZ, et al. Oxidative stress biomarkers responses to physical overtraining: implications for diagnosis. Free Radic Biol Med. 2007;43(6):901–10.PubMed
11.
go back to reference Devasagayam TPA, Tilak JC, Bollor KK, et al. Free radicals and antioxidants in human health: currant status and future prospects. J Assoc Physicians India. 2004;52:794–804.PubMed Devasagayam TPA, Tilak JC, Bollor KK, et al. Free radicals and antioxidants in human health: currant status and future prospects. J Assoc Physicians India. 2004;52:794–804.PubMed
12.
go back to reference Avery NG, Kaiser JL, Sharman MJ, et al. Effects of Vitamin E supplementation on recovery from repeated bouts of resistance exercise. J Strength Cond Res. 2003;17(4):801–9.PubMed Avery NG, Kaiser JL, Sharman MJ, et al. Effects of Vitamin E supplementation on recovery from repeated bouts of resistance exercise. J Strength Cond Res. 2003;17(4):801–9.PubMed
13.
go back to reference Shafat A, Butler P, Jensen RL, Donnelly AE. Effects of dietary supplementation with vitamins C and E on muscle function during and after eccentric contractions in humans. Eur J Appl Physiol. 2004;93(1–2):196–202.PubMed Shafat A, Butler P, Jensen RL, Donnelly AE. Effects of dietary supplementation with vitamins C and E on muscle function during and after eccentric contractions in humans. Eur J Appl Physiol. 2004;93(1–2):196–202.PubMed
14.
go back to reference Dekkers JC, van Doornen LJP, Kemper HCG. The role of antioxidant vitamins and enzymes in the prevention of exercise-induced muscle damage. Sports Med. 1996;21(3):213–38.PubMed Dekkers JC, van Doornen LJP, Kemper HCG. The role of antioxidant vitamins and enzymes in the prevention of exercise-induced muscle damage. Sports Med. 1996;21(3):213–38.PubMed
15.
go back to reference Sousa M, Teixeira VH, Soares J. Dietary strategies to recover from exercise-induced muscle damage. Int J Food Sci Nutr. 2014;65(2):151–63.PubMed Sousa M, Teixeira VH, Soares J. Dietary strategies to recover from exercise-induced muscle damage. Int J Food Sci Nutr. 2014;65(2):151–63.PubMed
16.
go back to reference Powers SK, Jackson MJ. Exercise-induced oxidative stress: cellular mechanisms and impact on muscle force production. Physiol Rev. 2008;88(4):1243–76.PubMedCentralPubMed Powers SK, Jackson MJ. Exercise-induced oxidative stress: cellular mechanisms and impact on muscle force production. Physiol Rev. 2008;88(4):1243–76.PubMedCentralPubMed
17.
go back to reference Urso ML, Clarkson PM. Oxidative stress, exercise, and antioxidant supplementation. Toxicology. 2003;189(1–2):41–54.PubMed Urso ML, Clarkson PM. Oxidative stress, exercise, and antioxidant supplementation. Toxicology. 2003;189(1–2):41–54.PubMed
18.
go back to reference Cobley JN, McGlory C, Morton JP, et al. N-acetylcysteine’s attenuation of fatigue after repeated bouts of intermittent exercise: practical implications for tournamant situations. Int J Sport Nutr Exerc Metab. 2011;21(6):451–61.PubMed Cobley JN, McGlory C, Morton JP, et al. N-acetylcysteine’s attenuation of fatigue after repeated bouts of intermittent exercise: practical implications for tournamant situations. Int J Sport Nutr Exerc Metab. 2011;21(6):451–61.PubMed
19.
go back to reference Braakhuis AJ. Effect of vitamin C supplements on physical performance. Curr Sports Med Rep. 2012;11(4):180–4.PubMed Braakhuis AJ. Effect of vitamin C supplements on physical performance. Curr Sports Med Rep. 2012;11(4):180–4.PubMed
20.
go back to reference Simon-Schnass I, Pabst H. Influence of vitamin E on physical performance. Int J Vitam Nutr Res. 1988;58(1):49–54.PubMed Simon-Schnass I, Pabst H. Influence of vitamin E on physical performance. Int J Vitam Nutr Res. 1988;58(1):49–54.PubMed
21.
22.
go back to reference Stevenson D. Polyphenols as adaptogens—the real mechanism of the antioxidant effect? In: Rasooli PI, editor. Bioactive compounds in phyto medicine. Croatia: Intech Com. Ltd; 2012. Stevenson D. Polyphenols as adaptogens—the real mechanism of the antioxidant effect? In: Rasooli PI, editor. Bioactive compounds in phyto medicine. Croatia: Intech Com. Ltd; 2012.
23.
go back to reference Wadley GD, McConell GK. Effect of nitric oxide synthase inhibition on mitochondrial biogenesis in rat skeletal muscle. J Appl Physiol. 2007;102(1):314–20.PubMed Wadley GD, McConell GK. Effect of nitric oxide synthase inhibition on mitochondrial biogenesis in rat skeletal muscle. J Appl Physiol. 2007;102(1):314–20.PubMed
24.
go back to reference Casuso R, Martínez-Amat A, Martínez-López E, et al. Ergogenic effects of quercetin supplementation in trained rats. J Int Soc Sports Nutr. 2013;10(1):1–7. Casuso R, Martínez-Amat A, Martínez-López E, et al. Ergogenic effects of quercetin supplementation in trained rats. J Int Soc Sports Nutr. 2013;10(1):1–7.
25.
go back to reference Hart N, Sarga L, Csende Z, et al. Resveratrol enhances exercise training responses in rats selectively bred for high running performance. Food Chem Toxicol. 2013;61:53–9.PubMed Hart N, Sarga L, Csende Z, et al. Resveratrol enhances exercise training responses in rats selectively bred for high running performance. Food Chem Toxicol. 2013;61:53–9.PubMed
26.
go back to reference Myburgh KH. Polyphenol supplementation: benefits for exercise performance or oxidative stress? Sports Med. 2014;44(Suppl 1):57–70.PubMedCentral Myburgh KH. Polyphenol supplementation: benefits for exercise performance or oxidative stress? Sports Med. 2014;44(Suppl 1):57–70.PubMedCentral
27.
go back to reference Bailey SJ, Winyard P, Vanhatalo A, et al. Dietary nitrate supplementation reduces the O2 cost of low-intensity exercise and enhances tolerance to high-intensity exercise in humans. J Appl Physiol. 2009;107(4):1144–55.PubMed Bailey SJ, Winyard P, Vanhatalo A, et al. Dietary nitrate supplementation reduces the O2 cost of low-intensity exercise and enhances tolerance to high-intensity exercise in humans. J Appl Physiol. 2009;107(4):1144–55.PubMed
28.
go back to reference Medved I, Brown MJ, Bjorksten AR, et al. N-acetylcysteine enhances muscle cysteine and glutathione availability and attenuates fatigue during prolonged exercise in endurance-trained individuals. J Appl Physiol. 2004;97(4):1477–85.PubMed Medved I, Brown MJ, Bjorksten AR, et al. N-acetylcysteine enhances muscle cysteine and glutathione availability and attenuates fatigue during prolonged exercise in endurance-trained individuals. J Appl Physiol. 2004;97(4):1477–85.PubMed
29.
go back to reference Sen CK, Atalay M, Hanninenn O. Exercise-induced oxidative stress: glutathione supplementation and deficiency. J Appl Physiol. 1994;77(5):2177–87.PubMed Sen CK, Atalay M, Hanninenn O. Exercise-induced oxidative stress: glutathione supplementation and deficiency. J Appl Physiol. 1994;77(5):2177–87.PubMed
30.
go back to reference McArdle WD, Katch FI, Katch VL. Essentials of exercise physiology. 3rd ed. Philadelphia: Lippincott Williams and Wilkins; 2006. p. 453. McArdle WD, Katch FI, Katch VL. Essentials of exercise physiology. 3rd ed. Philadelphia: Lippincott Williams and Wilkins; 2006. p. 453.
31.
go back to reference Bell PG, Walshe IH, Davison GW, et al. Montmorency cherries reduce the oxidative stress and inflammatory responses to repeated days high-intensity stochastic cycling. Nutrients. 2014;6(2):829–43.PubMedCentralPubMed Bell PG, Walshe IH, Davison GW, et al. Montmorency cherries reduce the oxidative stress and inflammatory responses to repeated days high-intensity stochastic cycling. Nutrients. 2014;6(2):829–43.PubMedCentralPubMed
32.
go back to reference Pinna M, Roberto S, Milia R, et al. Effect of beetroot juice supplementation on aerobic response during swimming. Nutrients. 2014;6(2):605–15.PubMedCentralPubMed Pinna M, Roberto S, Milia R, et al. Effect of beetroot juice supplementation on aerobic response during swimming. Nutrients. 2014;6(2):605–15.PubMedCentralPubMed
33.
go back to reference Davison GW, Hughes CM, Bell RA. Exercise and mononuclear cell DNA damage: the effects of antioxidant supplementation. Int J Sport Nutr Exerc Metab. 2005;15(5):480.PubMed Davison GW, Hughes CM, Bell RA. Exercise and mononuclear cell DNA damage: the effects of antioxidant supplementation. Int J Sport Nutr Exerc Metab. 2005;15(5):480.PubMed
34.
go back to reference Mastaloudis A, Traber MG, Carstensen K, et al. Antioxidants did not prevent muscle damage in response to an ultramarathon run. Med Sci Sports Exerc. 2006;38(1):72–80.PubMed Mastaloudis A, Traber MG, Carstensen K, et al. Antioxidants did not prevent muscle damage in response to an ultramarathon run. Med Sci Sports Exerc. 2006;38(1):72–80.PubMed
35.
go back to reference Nieman DC, Henson DA, Maxwell KR, et al. Effects of quercetin and EGCG on mitochondrial biogenesis and immunity. Med Sci Sports Exerc. 2009;41(7):1467–75.PubMed Nieman DC, Henson DA, Maxwell KR, et al. Effects of quercetin and EGCG on mitochondrial biogenesis and immunity. Med Sci Sports Exerc. 2009;41(7):1467–75.PubMed
36.
go back to reference Utter AC, Nieman DC. Quercetin does not affect rating of perceived exertion in athletes during the Western States endurance run. Res Sports Med. 2009;17:71–83.PubMed Utter AC, Nieman DC. Quercetin does not affect rating of perceived exertion in athletes during the Western States endurance run. Res Sports Med. 2009;17:71–83.PubMed
37.
go back to reference Watson T, Callister R, Taylor RD, et al. Antioxidant restriction and oxidative stress in short-duration exhaustive exercise. Med Sci Sports Exerc. 2005;37(1):63–71.PubMed Watson T, Callister R, Taylor RD, et al. Antioxidant restriction and oxidative stress in short-duration exhaustive exercise. Med Sci Sports Exerc. 2005;37(1):63–71.PubMed
38.
go back to reference Senturk UK, Yalcin O, Gunduz F, et al. Effect of antioxidant vitamin treatment on the time course of hematological and hemorheological alterations after an exhausting exercise episode in human subjects. Am J Physiol. 2005;98(4):1272–9. Senturk UK, Yalcin O, Gunduz F, et al. Effect of antioxidant vitamin treatment on the time course of hematological and hemorheological alterations after an exhausting exercise episode in human subjects. Am J Physiol. 2005;98(4):1272–9.
39.
go back to reference Davis MJ, Murphy AE, Carmichael MD, et al. Quercetin increases brain and muscle mitochondrial biogenesis and exercise tolerance. Am J Physiol. 2009;296(4):R1071–7. Davis MJ, Murphy AE, Carmichael MD, et al. Quercetin increases brain and muscle mitochondrial biogenesis and exercise tolerance. Am J Physiol. 2009;296(4):R1071–7.
40.
go back to reference Liping L, Li-an Q, Yiquan W, et al. Spirulina platensis extract supplementation attenuates oxidative stress in acute exhaustive exercise: a pilot study. Int J Phys Sci. 2011;6(12):2901–6. Liping L, Li-an Q, Yiquan W, et al. Spirulina platensis extract supplementation attenuates oxidative stress in acute exhaustive exercise: a pilot study. Int J Phys Sci. 2011;6(12):2901–6.
41.
go back to reference Wu R-E, Huang W-C, Liao C-C, et al. Resveratrol protects against physical fatigue and improves exercise performance in mice. Molecules. 2013;18(4):4689–702.PubMed Wu R-E, Huang W-C, Liao C-C, et al. Resveratrol protects against physical fatigue and improves exercise performance in mice. Molecules. 2013;18(4):4689–702.PubMed
42.
go back to reference Dolinsky VW, Jones KE, Sidhu RS, et al. Improvements in skeletal muscle strength and cardiac function induced by resveratrol during exercise training contribute to enhanced exercise performance in rats. J Physiol. 2012;590(11):2783–99.PubMedCentralPubMed Dolinsky VW, Jones KE, Sidhu RS, et al. Improvements in skeletal muscle strength and cardiac function induced by resveratrol during exercise training contribute to enhanced exercise performance in rats. J Physiol. 2012;590(11):2783–99.PubMedCentralPubMed
43.
go back to reference Murase T, Haramizu S, Ota N, et al. Suppression of the aging-associated decline in physical performance by a combination of resveratrol intake and habitual exercise in senescence-accelerated mice. Biogerontology. 2009;10(4):423–34.PubMed Murase T, Haramizu S, Ota N, et al. Suppression of the aging-associated decline in physical performance by a combination of resveratrol intake and habitual exercise in senescence-accelerated mice. Biogerontology. 2009;10(4):423–34.PubMed
44.
go back to reference Hopkins WG, Marshall SW, Batterham AM, et al. Progressive statistics for studies in sports medicine and exercise science. Med Sci Sports Exerc. 2009;41(1):3–13.PubMed Hopkins WG, Marshall SW, Batterham AM, et al. Progressive statistics for studies in sports medicine and exercise science. Med Sci Sports Exerc. 2009;41(1):3–13.PubMed
45.
go back to reference Carr AJ, Hopkins WG, Gore CJ. Effects of acute alkolosis and acidosis on performance. Sports Med. 2011;41(10):801–14.PubMed Carr AJ, Hopkins WG, Gore CJ. Effects of acute alkolosis and acidosis on performance. Sports Med. 2011;41(10):801–14.PubMed
46.
go back to reference Hoon MW, Johnson NA, Phillip GC, Burke LB. The effect of nitrate supplementation on exercise performance in healthy individuals: a systematic review and meta-analysis. Int J Sport Nutr Exerc Metab. 2013;23(5):522–32. Hoon MW, Johnson NA, Phillip GC, Burke LB. The effect of nitrate supplementation on exercise performance in healthy individuals: a systematic review and meta-analysis. Int J Sport Nutr Exerc Metab. 2013;23(5):522–32.
47.
go back to reference Cermak NM, Res P, Stikens R, et al. No improvement in endurance performance following a single dose of beetroot juice. Int J Sport Nutr Exerc Metab. 2012;22(6):470–8. Cermak NM, Res P, Stikens R, et al. No improvement in endurance performance following a single dose of beetroot juice. Int J Sport Nutr Exerc Metab. 2012;22(6):470–8.
48.
go back to reference Novelli GP, Bracciotti G, Falsini S. Spin-trappers and vitamin E prolong endurance to muscle fatigue in mice. Free Radic Biol Med. 1990;8(1):9–13.PubMed Novelli GP, Bracciotti G, Falsini S. Spin-trappers and vitamin E prolong endurance to muscle fatigue in mice. Free Radic Biol Med. 1990;8(1):9–13.PubMed
49.
go back to reference Romano-Ely BC, Todd MK, Saunders MJ, et al. Effect of an isocaloric carbohydrate–protein–antioxidant drink on cycling performance. Med Sci Sports Exerc. 2006;38(9):1608–16.PubMed Romano-Ely BC, Todd MK, Saunders MJ, et al. Effect of an isocaloric carbohydrate–protein–antioxidant drink on cycling performance. Med Sci Sports Exerc. 2006;38(9):1608–16.PubMed
50.
go back to reference Brigelius-Flohe R, Traber MG. Vitamin E: function and metabolism. FASEB J. 1999;13(10):1145–55.PubMed Brigelius-Flohe R, Traber MG. Vitamin E: function and metabolism. FASEB J. 1999;13(10):1145–55.PubMed
51.
go back to reference Yfanti C, Akerström T, Nielsen S, et al. Antioxidant supplementation does not alter endurance training adaptation. Med Sci Sports Exerc. 2010;42(7):1388–95.PubMed Yfanti C, Akerström T, Nielsen S, et al. Antioxidant supplementation does not alter endurance training adaptation. Med Sci Sports Exerc. 2010;42(7):1388–95.PubMed
52.
go back to reference Devi SA, Prathima S. Subramanyam MVV. Dietary vitamin E and physical exercise: I. Altered endurance capacity and plasma lipid profile in ageing rats. Exp Gerontol. 2003;38(3):285–90. Devi SA, Prathima S. Subramanyam MVV. Dietary vitamin E and physical exercise: I. Altered endurance capacity and plasma lipid profile in ageing rats. Exp Gerontol. 2003;38(3):285–90.
53.
go back to reference Snider IP, Bazzarre TL, Murdoch SD, et al. Effects of coenzyme athletic performance system as an ergogenic aid on endurance performance to exhaustion. Int J Sports Nutr. 1992;2(3):272–86. Snider IP, Bazzarre TL, Murdoch SD, et al. Effects of coenzyme athletic performance system as an ergogenic aid on endurance performance to exhaustion. Int J Sports Nutr. 1992;2(3):272–86.
54.
go back to reference Keong CC, Singh HJ, Singh R. Effects of palm vitamin E supplementation on exercise-induced oxidative stress and endurance performance in the heat. J Sports Sci Med. 2006;5(4):629–39.PubMedCentralPubMed Keong CC, Singh HJ, Singh R. Effects of palm vitamin E supplementation on exercise-induced oxidative stress and endurance performance in the heat. J Sports Sci Med. 2006;5(4):629–39.PubMedCentralPubMed
55.
go back to reference Oostenbrug GS, Mensink RP, Hardeman MR, et al. Exercise performance, red blood cell deformability, and lipid peroxidation: effects of fish oil and vitamin E. J Appl Physiol. 1997;83(3):746–52.PubMed Oostenbrug GS, Mensink RP, Hardeman MR, et al. Exercise performance, red blood cell deformability, and lipid peroxidation: effects of fish oil and vitamin E. J Appl Physiol. 1997;83(3):746–52.PubMed
56.
go back to reference Kang SW, Hahn S, Kim J-K, et al. Oligomerized lychee fruit extract (OLFE) and a mixture of vitamin C and vitamin E for endurance capacity in a double blind randomized controlled trial. J Clin Biochem Nutr. 2012;50(2):106.PubMedCentralPubMed Kang SW, Hahn S, Kim J-K, et al. Oligomerized lychee fruit extract (OLFE) and a mixture of vitamin C and vitamin E for endurance capacity in a double blind randomized controlled trial. J Clin Biochem Nutr. 2012;50(2):106.PubMedCentralPubMed
57.
go back to reference Lawrence J, Bower R, Riehl W, et al. Effects of alpha-tocopherol acetate on the swimming endurance of trained swimmers. Am J Clin Nutr. 1975;28(3):205–8.PubMed Lawrence J, Bower R, Riehl W, et al. Effects of alpha-tocopherol acetate on the swimming endurance of trained swimmers. Am J Clin Nutr. 1975;28(3):205–8.PubMed
58.
go back to reference Teixeira VH, Valente HF, Casal SI, et al. Antioxidants do not prevent postexercise peroxidation and may delay muscle recovery. Med Sci Sports Exerc. 2009;41(9):1752–60.PubMed Teixeira VH, Valente HF, Casal SI, et al. Antioxidants do not prevent postexercise peroxidation and may delay muscle recovery. Med Sci Sports Exerc. 2009;41(9):1752–60.PubMed
59.
go back to reference Larcombe SD, Tregaskes CA, Coffey JS, et al. The effects of short-term antioxidant supplementation on oxidative stress and flight performance in adult budgerigars Melopsittacus undulatus. J Exp Biol. 2008;211(17):2859–64.PubMed Larcombe SD, Tregaskes CA, Coffey JS, et al. The effects of short-term antioxidant supplementation on oxidative stress and flight performance in adult budgerigars Melopsittacus undulatus. J Exp Biol. 2008;211(17):2859–64.PubMed
60.
go back to reference Kobayashi Y. Effect of vitamin E on aerobic work performance in man during exposure to hypoxic hypoxia [dissertation]. Albuquerque: University of New Mexico; 1974. Kobayashi Y. Effect of vitamin E on aerobic work performance in man during exposure to hypoxic hypoxia [dissertation]. Albuquerque: University of New Mexico; 1974.
61.
go back to reference Magalhães J, Ascensão A, Marques F, et al. Effect of a high-altitude expedition to a Himalayan peak (Pumori, 7,161 m) on plasma and erythrocyte antioxidant profile. Eur J Appl Physiol. 2005;93(5–6):726–32.PubMed Magalhães J, Ascensão A, Marques F, et al. Effect of a high-altitude expedition to a Himalayan peak (Pumori, 7,161 m) on plasma and erythrocyte antioxidant profile. Eur J Appl Physiol. 2005;93(5–6):726–32.PubMed
62.
go back to reference Ilavazhagan G, Bansal A, Prasad D, et al. Effect of vitamin E supplementation on hypoxia-induced oxidative damage in male albino rats. Aviat Space Environ Med. 2001;72(10):899–903.PubMed Ilavazhagan G, Bansal A, Prasad D, et al. Effect of vitamin E supplementation on hypoxia-induced oxidative damage in male albino rats. Aviat Space Environ Med. 2001;72(10):899–903.PubMed
63.
go back to reference Bhagwat S, Haytowitz DB, Holden JM. USDA database for the flavonoid content of selected foods—release 3. Maryland: US Department of Agriculture; 2011. p. 1–156. Bhagwat S, Haytowitz DB, Holden JM. USDA database for the flavonoid content of selected foods—release 3. Maryland: US Department of Agriculture; 2011. p. 1–156.
64.
go back to reference Kressler J, Millard-Stafford M, Warren GL. Quercetin and endurance capacity: a systematic approach and meta-analysis. Med Sci Sports Exerc. 2011;43(12):2396–404.PubMed Kressler J, Millard-Stafford M, Warren GL. Quercetin and endurance capacity: a systematic approach and meta-analysis. Med Sci Sports Exerc. 2011;43(12):2396–404.PubMed
65.
go back to reference Goulet EDB, Asselin A, Lacerte G. A meta-analysis of the effect of quercetin supplementation on endurance performance and maximal oxygen consumption. Med Sci Sports Exerc. 2011;43(5):S294. Goulet EDB, Asselin A, Lacerte G. A meta-analysis of the effect of quercetin supplementation on endurance performance and maximal oxygen consumption. Med Sci Sports Exerc. 2011;43(5):S294.
66.
go back to reference Pelletier DM, Lacerte GB. Effects of quercetin supplementation on endurance performance and maximal oxygen consumption: a meta-analysis. Int J Sport Nutr Exerc Metab. 2013;23(1):73–82.PubMed Pelletier DM, Lacerte GB. Effects of quercetin supplementation on endurance performance and maximal oxygen consumption: a meta-analysis. Int J Sport Nutr Exerc Metab. 2013;23(1):73–82.PubMed
67.
go back to reference Askari G, Ghiasvand R, Paknahad Z, et al. The effects of quercetin supplementation on body composition, exercise performance and muscle damage indices in athletes. Int J Prev Med. 2013;4(1):21–6.PubMedCentralPubMed Askari G, Ghiasvand R, Paknahad Z, et al. The effects of quercetin supplementation on body composition, exercise performance and muscle damage indices in athletes. Int J Prev Med. 2013;4(1):21–6.PubMedCentralPubMed
68.
go back to reference Casuso RA, Martinez-Amat A, Martnez-Lopez EJ, et al. Ergogenic effects of quercetin supplementation in trained rats. J Int Soc Sports Nutr. 2013;10(3):1–7. Casuso RA, Martinez-Amat A, Martnez-Lopez EJ, et al. Ergogenic effects of quercetin supplementation in trained rats. J Int Soc Sports Nutr. 2013;10(3):1–7.
69.
go back to reference Daneshvar P, Hariri M, Ghiasvand R, et al. Effect of eight weeks of quercetin supplementation on exercise performance, muscle damage and body muscle in male badminton players. Int J Prev Med. 2013;4(Suppl 1):S53.PubMedCentralPubMed Daneshvar P, Hariri M, Ghiasvand R, et al. Effect of eight weeks of quercetin supplementation on exercise performance, muscle damage and body muscle in male badminton players. Int J Prev Med. 2013;4(Suppl 1):S53.PubMedCentralPubMed
70.
go back to reference Darvishi L, Ghiasvand R, Hariri M, et al. Quercetin supplementation does not attenuate exercise performance and body composition in young female swimmers. Int J Prev Med. 2013;4(Suppl 1):S43–7.PubMedCentralPubMed Darvishi L, Ghiasvand R, Hariri M, et al. Quercetin supplementation does not attenuate exercise performance and body composition in young female swimmers. Int J Prev Med. 2013;4(Suppl 1):S43–7.PubMedCentralPubMed
71.
go back to reference MacRae HSE, Mefford KM. Dietary antioxidant supplementation with quercetin improves cycling time trial performance. Int J Sport Nutr Exerc Metab. 2006;16(4):405–19.PubMed MacRae HSE, Mefford KM. Dietary antioxidant supplementation with quercetin improves cycling time trial performance. Int J Sport Nutr Exerc Metab. 2006;16(4):405–19.PubMed
72.
go back to reference Cureton KJ, Tomporowski PD, Singhal A, et al. Dietary quercetin supplementation is not ergogenic in untrained men. J Appl Physiol. 2009;107(4):1095–104.PubMed Cureton KJ, Tomporowski PD, Singhal A, et al. Dietary quercetin supplementation is not ergogenic in untrained men. J Appl Physiol. 2009;107(4):1095–104.PubMed
73.
go back to reference Nieman DC, Williams AS, Shanely RA, et al. Quercetin’s influence on exercise performance and muscle mitochondrial biogenesis. Med Sci Sports Exerc. 2010;42(2):338–45.PubMed Nieman DC, Williams AS, Shanely RA, et al. Quercetin’s influence on exercise performance and muscle mitochondrial biogenesis. Med Sci Sports Exerc. 2010;42(2):338–45.PubMed
74.
go back to reference Davis JM, Carlstedt CJ, Chen S, et al. The dietary flavonoid quercetin increases VO2 max and endurance capacity. Int J Sport Nutr Exerc Metab. 2010;20(1):56–62.PubMed Davis JM, Carlstedt CJ, Chen S, et al. The dietary flavonoid quercetin increases VO2 max and endurance capacity. Int J Sport Nutr Exerc Metab. 2010;20(1):56–62.PubMed
75.
go back to reference Ganio MS, Armstrong LE, Johnson EJ, et al. Effect of quercetin supplementation on maximal oxygen uptake in men and women. Med Sci Sports Exerc. 2011;28(2):201–8. Ganio MS, Armstrong LE, Johnson EJ, et al. Effect of quercetin supplementation on maximal oxygen uptake in men and women. Med Sci Sports Exerc. 2011;28(2):201–8.
76.
go back to reference Bigelman KA, Chapman DP, Freese EC, et al. Effects of six weeks of quercetin supplementation on physical performance in ROTC cadets. Mil Med. 2010;175(10):791–8.PubMed Bigelman KA, Chapman DP, Freese EC, et al. Effects of six weeks of quercetin supplementation on physical performance in ROTC cadets. Mil Med. 2010;175(10):791–8.PubMed
77.
go back to reference Hart N, Sarga L, Csende Z, Koch LG, et al. Resveratrol attenuates exercise-induced adaptive responses in rats selectively bred for low running performance. Dose–Response. 2014;12(1):57–71.PubMedCentralPubMed Hart N, Sarga L, Csende Z, Koch LG, et al. Resveratrol attenuates exercise-induced adaptive responses in rats selectively bred for low running performance. Dose–Response. 2014;12(1):57–71.PubMedCentralPubMed
78.
go back to reference Wootton-Beard PC, Moran A, Ryan L. Stability of the total antioxidant capacity and total polyphenol content of 23 commercially available vegetable juices before and after in vitro digestion measured by FRAP, DPPH, ABTS and Folin–Ciocalteu methods. Food Res Int. 2011;44(1):217–24. Wootton-Beard PC, Moran A, Ryan L. Stability of the total antioxidant capacity and total polyphenol content of 23 commercially available vegetable juices before and after in vitro digestion measured by FRAP, DPPH, ABTS and Folin–Ciocalteu methods. Food Res Int. 2011;44(1):217–24.
79.
go back to reference Wylie LJ, Kelly J, Bailey SJ, et al. Beetroot juice and exercise: pharmacodynamic and dose–response relationships. J Appl Physiol. 2013;115(3):325–36.PubMed Wylie LJ, Kelly J, Bailey SJ, et al. Beetroot juice and exercise: pharmacodynamic and dose–response relationships. J Appl Physiol. 2013;115(3):325–36.PubMed
80.
go back to reference Lafay S, Jan C, Nardon K, et al. Grape extract improves antioxidant status and physical performance in elite male athletes. J Sports Sci Med. 2009;8(3):468–80.PubMedCentralPubMed Lafay S, Jan C, Nardon K, et al. Grape extract improves antioxidant status and physical performance in elite male athletes. J Sports Sci Med. 2009;8(3):468–80.PubMedCentralPubMed
81.
go back to reference Oh J-K, Shin Y-O, Yoon J-H, et al. Effect of supplementation with Ecklonia cava polyphenol on endurance performance of college students. Int J Sport Nutr Exerc Metab. 2010;20(1):72–9.PubMed Oh J-K, Shin Y-O, Yoon J-H, et al. Effect of supplementation with Ecklonia cava polyphenol on endurance performance of college students. Int J Sport Nutr Exerc Metab. 2010;20(1):72–9.PubMed
82.
go back to reference Trinity JD, Pahnke MD, Trombold JR, et al. Impact of polyphenol antioxidants on cycling performance and cardiovascular function. Nutrients. 2014;6(3):1273–92.PubMedCentralPubMed Trinity JD, Pahnke MD, Trombold JR, et al. Impact of polyphenol antioxidants on cycling performance and cardiovascular function. Nutrients. 2014;6(3):1273–92.PubMedCentralPubMed
83.
go back to reference Labonté K, Couillard C, Motard-Bélanger A, et al. Acute effects of polyphenols from cranberries and grape seeds on endothelial function and performance in elite athletes. Sports. 2013;1(3):55–68. Labonté K, Couillard C, Motard-Bélanger A, et al. Acute effects of polyphenols from cranberries and grape seeds on endothelial function and performance in elite athletes. Sports. 2013;1(3):55–68.
84.
go back to reference Dartsch PC. Antioxidant potential of selected Spirulina platensis preparations. Phytother Res. 2008;22(5):627–33.PubMed Dartsch PC. Antioxidant potential of selected Spirulina platensis preparations. Phytother Res. 2008;22(5):627–33.PubMed
85.
go back to reference Kalafati M, Jamurtas AZ, Nikolaidis MG, et al. Ergogenic and antioxidant effects of spirulina supplementation in humans. Med Sci Sports Exerc. 2010;42(1):142–51.PubMed Kalafati M, Jamurtas AZ, Nikolaidis MG, et al. Ergogenic and antioxidant effects of spirulina supplementation in humans. Med Sci Sports Exerc. 2010;42(1):142–51.PubMed
86.
go back to reference Hsueh-Kuan L, Chin-Cheng H, Jen-Jung H, et al. Preventive effects of Spirulina platensis on skeletal muscle damage under exercise-induced oxidative stress. Eur J Appl Physiol. 2006;98(2):220–6. Hsueh-Kuan L, Chin-Cheng H, Jen-Jung H, et al. Preventive effects of Spirulina platensis on skeletal muscle damage under exercise-induced oxidative stress. Eur J Appl Physiol. 2006;98(2):220–6.
87.
go back to reference Matuszczak Y, Farid M, Jones J, et al. Effects of N-acetylcysteine on glutathione oxidation and fatigue during handgrip exercise. Muscle Nerve. 2005;32(5):633–8.PubMed Matuszczak Y, Farid M, Jones J, et al. Effects of N-acetylcysteine on glutathione oxidation and fatigue during handgrip exercise. Muscle Nerve. 2005;32(5):633–8.PubMed
88.
go back to reference Borgstrom L, Kagedal B, Paulsen O. Pharmacokinetics of N-acetylcysteine in man. Eur J Clin Pharmacol. 1986;31(2):217–22.PubMed Borgstrom L, Kagedal B, Paulsen O. Pharmacokinetics of N-acetylcysteine in man. Eur J Clin Pharmacol. 1986;31(2):217–22.PubMed
89.
go back to reference Cobley J, McGlory C, Morton J, et al. N-acetylcysteine’s attenuation of fatigue after repeated bouts of intermittent exercise: practical implications for tournament situations. Int J Sport Nutr Exerc Metab. 2011;21(6):451–61.PubMed Cobley J, McGlory C, Morton J, et al. N-acetylcysteine’s attenuation of fatigue after repeated bouts of intermittent exercise: practical implications for tournament situations. Int J Sport Nutr Exerc Metab. 2011;21(6):451–61.PubMed
90.
go back to reference McKenna MJ, Medved I, Goodman CA, et al. N-acetylcysteine attenuates the decline in muscle. Na+, K+-pump activity and delays fatigue during prolonged exercise in humans. J Physiol. 2006;576(1):279–88.PubMedCentralPubMed McKenna MJ, Medved I, Goodman CA, et al. N-acetylcysteine attenuates the decline in muscle. Na+, K+-pump activity and delays fatigue during prolonged exercise in humans. J Physiol. 2006;576(1):279–88.PubMedCentralPubMed
91.
go back to reference Corn SD, Barstow TJ. Effects of oral N-acetylcysteine on fatigue, critical power, and W′ in exercising humans. Respir Physiol Neurobiol. 2011;178(2):261–8.PubMed Corn SD, Barstow TJ. Effects of oral N-acetylcysteine on fatigue, critical power, and W′ in exercising humans. Respir Physiol Neurobiol. 2011;178(2):261–8.PubMed
92.
go back to reference Trewin AJ, Petersen AC, Billaut F, et al. N-acetylcysteine alters substrate metabolism during high-intensity cycle exercise in well-trained humans. Appl Physiol Nutr Metab. 2013;38(12):1217–27.PubMed Trewin AJ, Petersen AC, Billaut F, et al. N-acetylcysteine alters substrate metabolism during high-intensity cycle exercise in well-trained humans. Appl Physiol Nutr Metab. 2013;38(12):1217–27.PubMed
93.
go back to reference Holdiness MR. Clinical pharmacokinetics of N-acetylcysteine. Clin Pharmacokinet. 1991;20(2):123–34.PubMed Holdiness MR. Clinical pharmacokinetics of N-acetylcysteine. Clin Pharmacokinet. 1991;20(2):123–34.PubMed
94.
go back to reference Lagouge M, Argmann C, Gerhat-Hines Z, et al. Resveratrol improves mitochondrial function and protects against metabolic disease by activating SIRT1 and PGC-1alpha. Cell. 2006;127(6):1109–22.PubMed Lagouge M, Argmann C, Gerhat-Hines Z, et al. Resveratrol improves mitochondrial function and protects against metabolic disease by activating SIRT1 and PGC-1alpha. Cell. 2006;127(6):1109–22.PubMed
95.
go back to reference Mayers JR, Iliff BW, Swoap SJ. Resveratrol treatment in mice does not elicit the bradycardia and hypothermia associated with calorie restriction. FASEB J. 2009;23(4):1032–40.PubMedCentralPubMed Mayers JR, Iliff BW, Swoap SJ. Resveratrol treatment in mice does not elicit the bradycardia and hypothermia associated with calorie restriction. FASEB J. 2009;23(4):1032–40.PubMedCentralPubMed
96.
go back to reference Lansley KE, Winyard PG, Bailey SJ, et al. Acute dietary nitrate supplementation improves cycling time trial performance. Med Sci Sports Exerc. 2011;43(6):1125–31.PubMed Lansley KE, Winyard PG, Bailey SJ, et al. Acute dietary nitrate supplementation improves cycling time trial performance. Med Sci Sports Exerc. 2011;43(6):1125–31.PubMed
97.
go back to reference Wilkerson DP, Hayward GM, Bailey SJ, et al. Influence of acute dietary nitrate supplementation on 50 mile time trial performance in well-trained cyclists. Eur J Appl Physiol. 2012;112:4127–34.PubMed Wilkerson DP, Hayward GM, Bailey SJ, et al. Influence of acute dietary nitrate supplementation on 50 mile time trial performance in well-trained cyclists. Eur J Appl Physiol. 2012;112:4127–34.PubMed
98.
go back to reference Wylie LJ, Mohr M, Krustrup P, et al. Dietary nitrate supplementation improves team sport-specific intense intermittent exercise performance. Eur J Appl Physiol. 2013;113(7):1673–84.PubMed Wylie LJ, Mohr M, Krustrup P, et al. Dietary nitrate supplementation improves team sport-specific intense intermittent exercise performance. Eur J Appl Physiol. 2013;113(7):1673–84.PubMed
99.
go back to reference Cermak NM, Gibala MJ, van Loon LJC. Nitrate supplementation’s improvement of 10-km time-trial performance in trained cyclists. Int J Sport Nutr Exerc Metabol. 2012;22(1):64–71. Cermak NM, Gibala MJ, van Loon LJC. Nitrate supplementation’s improvement of 10-km time-trial performance in trained cyclists. Int J Sport Nutr Exerc Metabol. 2012;22(1):64–71.
100.
go back to reference Hoon MW, Jones AM, Johnson NA, et al. The effect of variable doses of inorganic nitrate-rich beetroot juice on simulated 2,000 m rowing performance in trained athletes. Int J Sports Physiol Perform. 2014;9(4):615–20.PubMed Hoon MW, Jones AM, Johnson NA, et al. The effect of variable doses of inorganic nitrate-rich beetroot juice on simulated 2,000 m rowing performance in trained athletes. Int J Sports Physiol Perform. 2014;9(4):615–20.PubMed
101.
go back to reference Hoon MW, Hopkins WG, Jones AM, et al. Nitrate supplementation and high-intensity performance in competitive cyclists. Appl Physiol Nutr Metab. 2014;39(9):1043–9.PubMed Hoon MW, Hopkins WG, Jones AM, et al. Nitrate supplementation and high-intensity performance in competitive cyclists. Appl Physiol Nutr Metab. 2014;39(9):1043–9.PubMed
103.
go back to reference Glaister M, Pattison JR, Muniz-Pumares D, et al. Effects of dietary nitrate, caffeine, and their combination on 20 km cycling time-trial performance. J Strength Cond Res. 2014;46(12):2326–34. Glaister M, Pattison JR, Muniz-Pumares D, et al. Effects of dietary nitrate, caffeine, and their combination on 20 km cycling time-trial performance. J Strength Cond Res. 2014;46(12):2326–34.
104.
105.
go back to reference Sheets AJ, Snyder BS. Effects of acute dietary nitrate consumption on running performance in ‘real-world’ environment. Int J Exerc Sci Conf Proc. 2014. (p. Article 20). Sheets AJ, Snyder BS. Effects of acute dietary nitrate consumption on running performance in ‘real-world’ environment. Int J Exerc Sci Conf Proc. 2014. (p. Article 20).
106.
go back to reference Bailey SJ, Fulford J, Vanhatalo A, et al. Dietary nitrate supplementation enhances muscle contractile efficiency during knee-extensor exercise in humans. J Appl Physiol. 2010;109(1):135–48.PubMed Bailey SJ, Fulford J, Vanhatalo A, et al. Dietary nitrate supplementation enhances muscle contractile efficiency during knee-extensor exercise in humans. J Appl Physiol. 2010;109(1):135–48.PubMed
107.
go back to reference Masschelein E, Van Thienen R, Wang X, et al. Dietary nitrate improves muscle but not cerebral oxygenation status during exercise in hypoxia. J Appl Physiol. 2012;13(5):736–45. Masschelein E, Van Thienen R, Wang X, et al. Dietary nitrate improves muscle but not cerebral oxygenation status during exercise in hypoxia. J Appl Physiol. 2012;13(5):736–45.
108.
go back to reference Murphy M, Eliot K, Heuertz RM, et al. Whole beetroot consumption acutely improves running performance. J Acad Nutr Diet. 2012;112(4):548–52.PubMed Murphy M, Eliot K, Heuertz RM, et al. Whole beetroot consumption acutely improves running performance. J Acad Nutr Diet. 2012;112(4):548–52.PubMed
109.
go back to reference Vanhatalo A, Bailey SJ, Blackwell JR, et al. Acute and chronic effects of dietary nitrate supplementation on blood pressure and the physiological responses to moderate-intensity and incremental exercise. Am J Physiol. 2010;299(4):R1121–31. Vanhatalo A, Bailey SJ, Blackwell JR, et al. Acute and chronic effects of dietary nitrate supplementation on blood pressure and the physiological responses to moderate-intensity and incremental exercise. Am J Physiol. 2010;299(4):R1121–31.
110.
go back to reference Bond H, Morton L, Braakhuis AJ. Dietary nitrate supplementation improves rowing performance in well-trained rowers. Int J Sport Nutr Exerc Metab. 2012;22(4):251–6.PubMed Bond H, Morton L, Braakhuis AJ. Dietary nitrate supplementation improves rowing performance in well-trained rowers. Int J Sport Nutr Exerc Metab. 2012;22(4):251–6.PubMed
111.
go back to reference Muggeridge DJ, Howe CCF, Spendiff O, et al. The effects of a single dose of concentrated beetroot juice on performance in trained flatwater kayakers. Int J Sport Nutr Exerc Metab. 2013;23(5):498–506.PubMed Muggeridge DJ, Howe CCF, Spendiff O, et al. The effects of a single dose of concentrated beetroot juice on performance in trained flatwater kayakers. Int J Sport Nutr Exerc Metab. 2013;23(5):498–506.PubMed
112.
go back to reference Sadowska-Krepa E, Klapcinska B, Kimsa E, et al. Effects of supplementation with red grape skin polyphenolic extract and interval swimming test on the bllod antioxidant status in healthy men. Med Sport. 2008;12(1):1–7. Sadowska-Krepa E, Klapcinska B, Kimsa E, et al. Effects of supplementation with red grape skin polyphenolic extract and interval swimming test on the bllod antioxidant status in healthy men. Med Sport. 2008;12(1):1–7.
113.
go back to reference Eichenberger P, Mettler S, Arnold M, et al. No effects of three-week consumption of a green tea extract on time trial performance in endurance-trained men. Int J Vitam Nutr Res. 2010;80(1):54–64.PubMed Eichenberger P, Mettler S, Arnold M, et al. No effects of three-week consumption of a green tea extract on time trial performance in endurance-trained men. Int J Vitam Nutr Res. 2010;80(1):54–64.PubMed
114.
go back to reference Skarpanska-Stejnborn A, Basta P, Pilaczynska-Szczesniak L. The influence of supplementation with the blackcurrant (Ribes nigrum) extract on selected prooxidative balance parameters in rowers. Stud Phys Cult Tour. 2006;13(2):51–8. Skarpanska-Stejnborn A, Basta P, Pilaczynska-Szczesniak L. The influence of supplementation with the blackcurrant (Ribes nigrum) extract on selected prooxidative balance parameters in rowers. Stud Phys Cult Tour. 2006;13(2):51–8.
115.
go back to reference Braakhuis AJ, Hopkins WG, Lowe TE. Effects of dietary antioxidants on training and performance in female runners. Euro J Sport Sci. 2013;14(2):1–9. Braakhuis AJ, Hopkins WG, Lowe TE. Effects of dietary antioxidants on training and performance in female runners. Euro J Sport Sci. 2013;14(2):1–9.
116.
go back to reference Dean S, Braakhuis AJ, Paton C. The effects of EGCG on fat oxidation and endurance performance in male cyclists. Int J Sport Nutr Exerc Metab. 2009;19(6):624–44.PubMed Dean S, Braakhuis AJ, Paton C. The effects of EGCG on fat oxidation and endurance performance in male cyclists. Int J Sport Nutr Exerc Metab. 2009;19(6):624–44.PubMed
117.
go back to reference Sandhu J, Shenoy S. Efficacy of spirulina supplementation on isometric strength and isometric endurance of quadriceps in trained and untrained individuals—a comparative study. Ibnosina J Med Biomed Sci. 2009;2(2):79–83. Sandhu J, Shenoy S. Efficacy of spirulina supplementation on isometric strength and isometric endurance of quadriceps in trained and untrained individuals—a comparative study. Ibnosina J Med Biomed Sci. 2009;2(2):79–83.
118.
go back to reference Matsumoto H, Takenami E, Iwasaki-Kurashige K, et al. Effects of blackcurrant anthocyanin intake on peripheral muscle circulation during typing work in humans. Eur J Appl Physiol. 2005;94(1):36–45.PubMed Matsumoto H, Takenami E, Iwasaki-Kurashige K, et al. Effects of blackcurrant anthocyanin intake on peripheral muscle circulation during typing work in humans. Eur J Appl Physiol. 2005;94(1):36–45.PubMed
119.
go back to reference Bailey SJ, Winyard PG, Blackwell JR, et al. Influence of N-acetylcysteine administration on pulmonary O2 uptake kinetics and exercise tolerance in humans. Respir Physiol Neurobiol. 2011;175(1):121–9.PubMed Bailey SJ, Winyard PG, Blackwell JR, et al. Influence of N-acetylcysteine administration on pulmonary O2 uptake kinetics and exercise tolerance in humans. Respir Physiol Neurobiol. 2011;175(1):121–9.PubMed
120.
go back to reference Reid MB, Stokić DS, Koch SM, et al. N-acetylcysteine inhibits muscle fatigue in humans. J Clin Invest. 1994;94(6):2468–74.PubMedCentralPubMed Reid MB, Stokić DS, Koch SM, et al. N-acetylcysteine inhibits muscle fatigue in humans. J Clin Invest. 1994;94(6):2468–74.PubMedCentralPubMed
121.
go back to reference Medved I, Brown MJ, Bjorksten AR, et al. N-acetylcysteine infusion alters blood redox status but not time to fatigue during intense exercise in humans. J Appl Physiol. 2003;94(4):1572–82.PubMed Medved I, Brown MJ, Bjorksten AR, et al. N-acetylcysteine infusion alters blood redox status but not time to fatigue during intense exercise in humans. J Appl Physiol. 2003;94(4):1572–82.PubMed
Metadata
Title
Impact of Dietary Antioxidants on Sport Performance: A Review
Authors
Andrea J. Braakhuis
Will G. Hopkins
Publication date
01-07-2015
Publisher
Springer International Publishing
Published in
Sports Medicine / Issue 7/2015
Print ISSN: 0112-1642
Electronic ISSN: 1179-2035
DOI
https://doi.org/10.1007/s40279-015-0323-x

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