1. Schoenfeld BJ. The Use of Nonsteroidal anti-inflammatory drugs for exercise-induced muscle damage. Sports Med. 2012;42:1017-28. [ DOI:10.1007/BF03262309] 2. Griffin MR. Epidemiology of nonsteroidal anti-inflammatory drug–associated gastrointestinal injury. Am J Med. 1998;104:23S-9S. [ DOI:10.1016/S0002-9343(97)00207-6] 3. Connolly DA, Sayers SE, McHugh MP. Treatment and prevention of delayed onset muscle soreness. J Strength Cond Res. 2003;17:197-208. 4. Chazaud B. Inflammation During Skeletal Muscle Regeneration and Tissue Remodeling: Application to Exercise-Induced Muscle Damage Management. Immunology and cell biology. 2016;94:140-5. [ DOI:10.1038/icb.2015.97] 5. de Rijk MC, Breteler MM, den Breeijen JH, Launer LJ, Grobbee DE, van der Meché FG, et al. Dietary antioxidants and Parkinson disease: the Rotterdam Study. Arch Neurol. 1997;54:762-5. [ DOI:10.1001/archneur.1997.00550180070015] 6. Brown JE, Rice-Evans CA. Luteolin-rich artichoke extract protects low density lipoprotein from oxidation in vitro. Free Radic Res. 1998;29:247-55. [ DOI:10.1080/10715769800300281] 7. Dinkova-Kostova AT. Phytochemicals as protectors against ultraviolet radiation: versatility of effects and mechanisms. Planta Med. 2008;74:1548-59. [ DOI:10.1055/s-2008-1081296] 8. Croft KD. Dietary Polyphenols: Antioxidants or Not? Archives of Biochemistry and Biophysics. 2016;595:120-4. [ DOI:10.1016/j.abb.2015.11.014] 9. Tsao R. Chemistry and Biochemistry of Dietary Polyphenols. Nutrients. 2010;2:1231-46. [ DOI:10.3390/nu2121231] 10. Konrad M, Nieman D, Henson D, Kennerly K, Jin F, Wallner-Liebmann S. The acute effect of ingesting a quercetin-based supplement on exercise-induced inflammation and immune changes in runners. Int J Sport Nutr Exerc Metab. 2011;21:338. [ DOI:10.1123/ijsnem.21.4.338] 11. Sezai E, Emine O. Some physico-chemical characteristics of black mulberry (Morus nigra L.) genotypes from Northeast Anatolia region of Turkey. Sci Hortic. 2008;116:41-6. [ DOI:10.1016/j.scienta.2007.10.021] 12. Mahmoud MY. Natural antioxidants effect of mulberry fruits (Morus nigra and Morus alba L.) on lipids profile and oxidative stress in hypercholestrolemic rats. Pakistan J Nutr. 2013;12:665-72. [ DOI:10.3923/pjn.2013.665.672] 13. Tunde J, Jiri S, Otakar R, Jiří M, Štefan B, Ladislav S, et al. Evaluation of polyphenolic profile and nutritional value of non-traditional fruit species in the Czech Republic—A comparative study. Molecules. 2012;17:8968-81. [ DOI:10.3390/molecules17088968] 14. Sofia P, Ariana-Bianca V, Corina C, Gogoasa I, Corina G, Cerasela P. Chemical characterisation of white (Morus alba), and black (Morus nigra) mulberry fruits. J Horticultural Fore Biotech. 2014;18:133-5. 15. Radojković MM, Zeković ZP, Vidović SS, Kočar DD, Mašković PZ. Free radical scavenging activity and total phenolic and flavonoid contents of mulberry (Morus spp. L., Moraceae) extracts. Hemijska industrija. 2012;66:547-52. [ DOI:10.2298/HEMIND111111002R] 16. Nikkhab E, Khayami M, Heidari M. Evaluation of nitric oxide scavenging activity of anthocyanins from black berry (Morus nigra L.), strawberry (Fragaria vesca L.) and berry (Morus alba L. var. nigra) extracts. Iran J Med Arom Plants. 2009;25:120-8. 17. Budiman A, Aulifa DL, Kusuma ASW, Sulastri A. Antibacterial and Antioxidant Activity of Black Mulberry (Morus nigra l.) Extract for Acne Treatment. Pharmacognosy Journal. 2017;9. 18. Steensberg A, Keller C, Starkie RL, Osada T, Febbraio MA, Pedersen BK. IL-6 and TNF-α expression in, and release from, contracting human skeletal muscle. Am J Physiol Endocrinol Metab. 2002;283:E1272-E8. [ DOI:10.1152/ajpendo.00255.2002] 19. Bruunsgaard H, Galbo H, Halkjaer-Kristensen J, Johansen T, MacLean D, Pedersen B. Exercise-induced increase in serum interleukin-6 in humans is related to muscle damage. J Physiol. 1997;499:833. [ DOI:10.1113/jphysiol.1997.sp021972] 20. Rynders CA, Weltman J, Rynders S, Patrie J, McKnight J, Katch F, et al. Effect of an herbal/botanical supplement on recovery from delayed onset muscle soreness: a randomized placebo-controlled trial. J Int Soc Sports Nutr. 2014;11:1. [ DOI:10.1186/1550-2783-11-27] 21. Klarlund PB, Dyhr TA. Effects of exercise on lymphocytes and cytokines. Br J Sports Med. 2000;34:246-51. [ DOI:10.1136/bjsm.34.4.246] 22. Pedersen BK, Febbraio MA. Muscle as an endocrine organ: focus on muscle-derived interleukin-6. Physiol Rev. 2008;88:1379-406. [ DOI:10.1152/physrev.90100.2007] 23. Sadowska-Krępa E, Kłapcińska B, Podgórski T, Szade B, Tyl K, Hadzik A. Effects of supplementation with acai (Euterpe oleracea Mart.) berry-based juice blend on the blood antioxidant defence capacity and lipid profile in junior hurdlers. A pilot study. Biol Sport. 2015;32:161-8. [ DOI:10.5604/20831862.1144419] 24. McLeay Y, Barnes M, Mundel T, Hurst S, Hurst R, Stannard S. Effect of New Zealand blueberry consumption on recovery from eccentric exercise-induced muscle damage. J Int Soc Sports Nutr. 2012;9:1. [ DOI:10.1186/1550-2783-9-19] 25. McAnulty LS, Nieman DC, Dumke CL, Shooter LA, Henson DA, Utter AC, et al. Effect of blueberry ingestion on natural killer cell counts, oxidative stress, and inflammation prior to and after 2.5 h of running. Appl Physiol Nutr Metab. 2011;36:976-84. [ DOI:10.1139/h11-120] 26. McAnulty SR, McAnulty LS, Nieman DC, Dumke CL, Morrow JD, Uttera AC, et al. Consumption of blueberry polyphenols reduces exercise induced oxidative stress compared to vitamin C. Nutr Res. 2004;24:209-21. [ DOI:10.1016/j.nutres.2003.10.003] 27. Borg GA. Psychophysical bases of perceived exertion. Med Sci Sports Exerc. 1982;14:377-81. [ DOI:10.1249/00005768-198205000-00012] 28. KeshtkarAghaBabaei S, Vafa M, Shidfar F, Gohari M, Katebi D, Mohammadi V. Effect of Black Mulberry (Morus Nigra L.) Consumption on Serum Concentrations of Lipoproteins, Apo-A1, Apo-B and hs-CRP and Blood Pressure in Dyslipidemic Patients. Iran J Nutr Sci Food Technol. 2014;8:67-81. 29. Tapiero H, Tew K, Ba GN, Mathe G. Polyphenols: do they play a role in the prevention of human pathologies? Biomed Pharmacother. 2002;56:200-7. [ DOI:10.1016/S0753-3322(02)00178-6] 30. Scanlan A, Dascombe B, Reaburn P. A comparison between the activity demands of elite and sub-elite Australian men's basketball competition. J Sports Sci. 2011;29:1153-60. [ DOI:10.1080/02640414.2011.582509] 31. Nieman DC, Dumke CI, Henson DA, McAnulty SR, McAnulty LS, Lind RH, et al. Immune and oxidative changes during and following the Western States Endurance Run. Int J Sports Med. 2003;24:541-7. [ DOI:10.1055/s-2003-42018] 32. Zwetsloot KA, Nieman DC, Knab A, John CS, Lomiwes DD, Hurst RD, et al. Effect of 4 weeks of high-intensity interval training on exercise performance and markers of inflammation and oxidative stress. The FASEB Journal. 2017;31:839.1-.1. 33. Helge JW, Stallknecht B, Pedersen BK, Galbo H, Kiens B, Richter EA. The effect of graded exercise on IL‐6 release and glucose uptake in human skeletal muscle. J Physiol. 2003;546:299-305. [ DOI:10.1113/jphysiol.2002.030437] 34. Malaguti M, Angeloni C, Hrelia S. Polyphenols in exercise performance and prevention of exercise-induced muscle damage. Oxid Med Cell Longev. 2013;2013. 35. Pedersen BK. Muscular interleukin-6 and its role as an energy sensor. Med Sci Sports Exer. 2012;44:392-6. [ DOI:10.1249/MSS.0b013e31822f94ac] 36. Bernecker C, Scherr J, Schinner S, Braun S, Scherbaum WA, Halle M. Evidence for an exercise induced increase of TNF-alpha and IL-6 in marathon runners. Scand J Med Sci Sports. 2013;23(2):207-14 [ DOI:10.1111/j.1600-0838.2011.01372.x] 37. Ghorbani P, Kordi M, Arbab G. Responses of Tumor Necrosis Factor and C– Reactive Protein to One Bout High Intensity Interval Training in Elite Soccer Players. Glob Journal of Sci Eng Technol. 2012:1-6. 38. Moldoveanu AI, Shephard RJ, Shek PN. The cytokine response to physical activity and training. Sports Med. 2001;31:115-44. [ DOI:10.2165/00007256-200131020-00004] 39. Joseph SV, Edirisinghe I, Burton-Freeman BM. Berries: anti-inflammatory effects in humans. J Agric Food Chem. 2014;62:3886-903. [ DOI:10.1021/jf4044056] 40. Lee J, Kim S, Namgung H, Jo Y-H, Bao C, Choi H-K, et al. Ellagic acid identified through metabolomic analysis is an active metabolite in strawberry ('Seolhyang') regulating lipopolysaccharide-induced inflammation. J Agric Food Chem. 2013;62:3954-62. [ DOI:10.1021/jf4038503] 41. Labonté K, Couillard C, Motard-Bélanger A, Paradis M-E, Couture P, Lamarche B. Acute effects of polyphenols from cranberries and grape seeds on endothelial function and performance in elite athletes. Sports. 2013;1:55-68. [ DOI:10.3390/sports1030055] 42. Carvalho-Peixoto J, Moura MRL, Cunha FA, Lollo PCB, Monteiro WD, Carvalho LMJd, et al. Consumption of açai (Euterpe oleracea Mart.) functional beverage reduces muscle stress and improves effort tolerance in elite athletes: a randomized controlled intervention study. Appl Physiol Nutr Metab. 2015;40:725-33. [ DOI:10.1139/apnm-2014-0518] 43. Nieman DC, Henson DA, Davis JM, Dumke CL, Gross SJ, Jenkins DP, et al. Quercetin ingestion does not alter cytokine changes in athletes competing in the Western States Endurance Run. J Interferon Cytokine Res. 2007;27:1003- 11. [ DOI:10.1089/jir.2007.0050] 44. Manach C, Williamson G, Morand C, Scalbert A, Rémésy C. Bioavailability and bioefficacy of polyphenols in humans. I. Review of 97 bioavailability studies. Am J Clin Nutr. 2005;81:230S-42S. [ DOI:10.1093/ajcn/81.1.230S] 45. Scanlan AT, Dascombe BJ, Reaburn PR. The construct and longitudinal validity of the basketball exercise simulation test. J Strength Cond Res. 2012;26:523-30. [ DOI:10.1519/JSC.0b013e318220dfc0] 46. Gentle HL, Love TD, Howe AS, Black KE. A randomised trial of pre-exercise meal composition on performance and muscle damage in well-trained basketball players. J Int Soc Sports Nutr. 2014;11:1. [ DOI:10.1186/1550-2783-11-33]
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