Yıl: 2022 Cilt: 47 Sayı: 1 Sayfa Aralığı: 33 - 39 Metin Dili: İngilizce DOI: 10.1515/tjb-2021-0091 İndeks Tarihi: 17-05-2023

Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats

Öz:
Objectives: This study was performed to investigate whether exercise and quercetin have an effect on muscle energy charge in the metabolic syndrome (MetS) model of rats. Methods: Male Sprague-Dawley rats consisting of Control, Fructose, Quercetin, Exercise, Fructose + Exercise, Fructose + Quercetin, Fructose + Quercetin + Exercise groups were randomly divided into seven groups, six rats in each group. Consequently, it was determined that the 20% fructose supplement for 10 weeks with drinking water let to metabolic syndrome in the animals depending on the increase of systolic blood pressure, serum triglyceride, serum insulin and high HOMA-IR scores. MetS criteria were successfully established by oral fructose administration. Results: ATP and AMP levels were higher in fructose and exercise groups, and ADP levels were lower. The energy charge increased in quercetin treated groups. We found that regular aerobic exercise and quercetin application might be beneficial in the fructose-mediated MetS in accordance with previous studies. However it was found that quercetin was more effective than exercise in muscle. Conclusions: Consequently, it is thought that the regular aerobic exercise alone is a preventive method for the MetS and also it can be used together with quercetin as a beneficial treatment.
Anahtar Kelime:

[Ratların metabolik sendrom modelinde kas enerji yükü üzerine kuersetin ve egzersizin etkileri]

Öz:
Amaç: Bu çalışma; ratların metabolik sendrom (MetS) modelinde, egzersiz ve kuersetin’in kas enerji yükü üzerine etkisi olup olmadığını araştırmak için yapılmıştır. Gereç ve Yöntem: 42 erkek Sprague-Dawley ratları rastgele yedi gruba ayrıldı (n = 7): Kontrol, Fruktoz, Kuersetin, Egzersiz, Fruktoz + Egzersiz, Fruktoz + Kuersetin, Fruktoz + Kuersetin + Egzersiz. Sonuç olarak, içme suyu ile 10 hafta süreyle % 20 fruktoz takviyesinin; sistolik kan basıncı, serum trigliserit, serum insülin ve yüksek HOMA-IR skorlarındaki artışa bağlı olarak hayvanlarda metabolik sendroma yol açtığı belirlendi. MetS kriterleri, oral fruktoz uygulamasıyla başarıyla oluşturulmuştur. Bulgular: ATP ve AMP düzeyleri fruktoz ve egzersiz gruplarında daha yüksek, ADP düzeyleri daha düşük bulundu. Kuersetin uygulaması gruplarda enerji yükü artırdı. Düzenli aerobik egzersiz ve kuersetin uygulamasının fruktoz aracılı MetS’de, önceki çalışmalarla uyumlu olarak faydalı olabileceğini bulduk. Ancak kuersetin’in kasta egzersizden daha etkili olduğu bulundu. Sonuç: Sonuç olarak, düzenli aerobik egzersizin tek başına MetS için önleyici bir yöntem olduğu ve ayrıca yararlı bir tedavi olarak kuersetin ile birlikte kullanılabileceği düşünülmektedir.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Wang M, editor Metabolic syndrome: Underlying mechanism and drug therapies. New Jersey USA: Jhon Willey and Sons; 2011.
  • 2. Hanson RL, Imperatore G, Bennett PH, Knowler WC. Components of the “metabolic syndrome” and incidence of type 2 diabetes. Diabetes 2002;51:3120–7.
  • 3. Gaby AR. Adverse effects of dietary fructose. Alternative Med Rev 2005;10:294–306.
  • 4. Jheng HF, Huang SH, Kuo HM, Hughes MW, Tsai YS. Molecular insight and pharmacological approaches targeting mitochondrial dynamics in skeletal muscle during obesity. Ann N Y Acad Sci 2015; 1350:82–94.
  • 5. Wells GD, Noseworthy MD, Hamilton J, Tarnopolski M, Tein I. Skeletal muscle metabolic dysfunction in obesity and metabolic syndrome. Can J Neurol Sci 2008;35:31–40.
  • 6. Kiens B. Skeletal muscle lipid metabolism in exercise and insulin resistance. Physiol Rev 2006;86:205–43.
  • 7. Stump CS, Henriksen EJ,Wei Y, Sowers JR. Themetabolic syndrome: role of skeletal muscle metabolism. Ann Med 2006;38:389–402.
  • 8. Layne AS, Nasrallah S, South MA, Howell MEA, McCurry MP, Ramsey MW, et al. Impaired muscle AMPK activation in the metabolic syndrome may attenuate improved insulin action after exercise training. J Clin Endocrinol Metab 2011;96:1815–26.
  • 9. Sriramajayam K, Venkataraman AC. Insulin sensitizing actions of fenugreek seed polyphenols, quercetin & metformin in a rat model. Indian J Med Res 2009;129:401–8.
  • 10. Boots AW, Haenen GRMM, Bast A. Health effects of quercetin: from antioxidant to nutraceutical. Eur J Pharmacol 2008;585: 325–37.
  • 11. Henagan TM, Lenard NR, Gettys TW, Stewart LK. Dietary quercetin supplementation in mice increases skeletal muscle PGC1α expression, improves mitochondrial function and attenuates insulin resistance in a time-specific manner. PLoS One 2014;9: e89365.
  • 12. Bazzucchi I, Patrizio F, Ceci R, Duranti G, Sgrò P, Sabatini S, et al. The effects of quercetin supplementation on eccentric exerciseinduced muscle damage. Nutrients 2019;11:205.
  • 13. De Moura RF, Ribeiro C, De Oliveira JA, Stevanato E, De Mello MAR. Metabolic syndrome signs in wistar rats submitted to different high-fructose ingestion protocols. Br J Nutr 2009;101: 1178–84.
  • 14. Nakagawa T, Hu H, Zharikov S, Tuttle KR, Short RA, Glushakova O, et al. A causal role for uric acid in fructose-induced metabolic syndrome. Am J Physiol Ren Physiol 2006;290:F625–31.
  • 15. Sebai M, Lu S, Xiang L, Hester RL. Improved functional vasodilation in obese Zucker rats following exercise training.AmJ Physiol Heart Circ Physiol 2011;301:H1090–6.
  • 16. Vessal M, Hemmati M, Vasei M. Antidiabetic effects of quercetin in streptozocin-induced diabetic rats. Comp Biochem Physiol C Toxicol Pharmacol 2003;135C:357–64.
  • 17. Bernardis LL, Patterson BD. Correlation between ‘Lee index’ and carcass fat content in weanling and adult female rats with hypothalamic lesions. J Endocrinol 1968;40:527–8.
  • 18. Szabó C, Saunders C, O’Connor M, Salzman AL. Peroxynitrite causes energy depletion and increases permeability via activation of poly (ADP-ribose) synthetase in pulmonary epithelial cells. Am J Respir Cell Mol Biol 1997;16:105–9.
  • 19. Rochlani Y, Pothineni NV, Kovelamudi S, Mehta JL. Metabolic syndrome: pathophysiology, management, and modulation by natural compounds. Ther Adv Cardiovasc Dis 2017;11: 215–25.
  • 20. Crescenzo R, Bianco F, Coppola P, Mazzoli A, Cigliano L, Liverini G, et al. Increased skeletal muscle mitochondrial efficiency in rats with fructose-induced alteration in glucose tolerance. Br J Nutr 2013;110:1996–2003.
  • 21. Khlyntseva S, Bazel YR, Vishnikin AB, Andruch V. Methods for the determination of adenosine triphosphate and other adenine nucleotides. J Anal Chem 2009;64:657–73.
  • 22. Metzler DE, editor Biochemistry: The chemical reactions of living cells, 2nd ed. Academic Press; 2003.
  • 23. Febbraio MA, Dancey J. Skeletal muscle energy metabolism during prolonged, fatiguing exercise. J Appl Physiol 1999;87: 2341–7.
  • 24. Gorman MW, Feigl EO, Buffington CW. Human plasma ATP concentration. Clin Chem 2007;53:318–25.
  • 25. Kim EH, Koh EH, Park JY, Lee KU. Adenine nucleotide translocator as a regulator of mitochondrial function: implication in the pathogenesis of metabolic syndrome. Korean Diabetes J 2010;34: 146–53.
  • 26. Hancock CR, Brault JJ, Terjung RL. Protecting the cellular energy state during contractions: role of AMP deaminase. J Physiol Pharmacol 2006;57:17–29.
  • 27. Hellsten Y, Richter EA, Kiens B, Bangsbo J. AMP deamination and purine exchange in human skeletal muscle during and after intense exercise. J Physiol 1999;520:909–20.
  • 28. Bhagavan NV, Eun Ha C, editors Essentials of medical biochemistry with clinical cases, 2nd ed. Academic Press; 2015.
  • 29. Koves TR, Ussher JR, Noland RC, Slentz D, Mosedale M, Ilkayeva O, et al. Mitochondrial overload and incomplete fatty acid oxidation contribute to skeletal muscle insulin resistance. Cell Metabol 2008;7:45–56.
  • 30. Davis JM, Murphy EA, Carmichael MD, Davis B. Quercetin increases brain and muscle mitochondrial biogenesis and exercise tolerance. Am J Physiol Regul Integr Comp Physiol 2009; 296:R1071–7.
  • 31. Lambert K, Hokayem M, Thomas C, Fabre O, Cassan C, Bourret A, et al. Combination of nutritional polyphenols supplementation with exercise training counteracts insulin resistance and improves endurance in high-fat diet-induced obese rats. Sci Rep 2018;8:2885.
APA er f, Çimen B, YILMAZ C, zorba e, TÜRKÖZKAN N (2022). Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. , 33 - 39. 10.1515/tjb-2021-0091
Chicago er fatmanur,Çimen Behzat,YILMAZ CANAN,zorba erdal,TÜRKÖZKAN Nurten Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. (2022): 33 - 39. 10.1515/tjb-2021-0091
MLA er fatmanur,Çimen Behzat,YILMAZ CANAN,zorba erdal,TÜRKÖZKAN Nurten Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. , 2022, ss.33 - 39. 10.1515/tjb-2021-0091
AMA er f,Çimen B,YILMAZ C,zorba e,TÜRKÖZKAN N Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. . 2022; 33 - 39. 10.1515/tjb-2021-0091
Vancouver er f,Çimen B,YILMAZ C,zorba e,TÜRKÖZKAN N Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. . 2022; 33 - 39. 10.1515/tjb-2021-0091
IEEE er f,Çimen B,YILMAZ C,zorba e,TÜRKÖZKAN N "Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats." , ss.33 - 39, 2022. 10.1515/tjb-2021-0091
ISNAD er, fatmanur vd. "Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats". (2022), 33-39. https://doi.org/10.1515/tjb-2021-0091
APA er f, Çimen B, YILMAZ C, zorba e, TÜRKÖZKAN N (2022). Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. Türk Biyokimya Dergisi, 47(1), 33 - 39. 10.1515/tjb-2021-0091
Chicago er fatmanur,Çimen Behzat,YILMAZ CANAN,zorba erdal,TÜRKÖZKAN Nurten Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. Türk Biyokimya Dergisi 47, no.1 (2022): 33 - 39. 10.1515/tjb-2021-0091
MLA er fatmanur,Çimen Behzat,YILMAZ CANAN,zorba erdal,TÜRKÖZKAN Nurten Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. Türk Biyokimya Dergisi, vol.47, no.1, 2022, ss.33 - 39. 10.1515/tjb-2021-0091
AMA er f,Çimen B,YILMAZ C,zorba e,TÜRKÖZKAN N Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. Türk Biyokimya Dergisi. 2022; 47(1): 33 - 39. 10.1515/tjb-2021-0091
Vancouver er f,Çimen B,YILMAZ C,zorba e,TÜRKÖZKAN N Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats. Türk Biyokimya Dergisi. 2022; 47(1): 33 - 39. 10.1515/tjb-2021-0091
IEEE er f,Çimen B,YILMAZ C,zorba e,TÜRKÖZKAN N "Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats." Türk Biyokimya Dergisi, 47, ss.33 - 39, 2022. 10.1515/tjb-2021-0091
ISNAD er, fatmanur vd. "Effects of exercise and quercetin on muscle energy charge in metabolic syndrome model of rats". Türk Biyokimya Dergisi 47/1 (2022), 33-39. https://doi.org/10.1515/tjb-2021-0091