题名

Preventing c2c12 muscular cells damage combining magnesium and potassium with vitamin D3 and curcumin

DOI

10.1016/j.jtcme.2021.05.003

作者

Claudio Molinari;Sara Ruga;Mahitab Farghali;Rebecca Galla;Ahmad Bassiouny;Francesca Uberti

关键词

C2C12 cells ; Fatigue ; Muscle recovery ; Nutraceuticals ; Physical activity

期刊名称

Journal of Traditional and Complementary Medicine

卷期/出版年月

11卷6期(2021 / 11 / 01)

页次

532 - 544

内容语文

英文

中文摘要

Background and aim: Physical activity is defined as any bodily movement produced by skeletal muscles which causes energy consumption; moderate and constant physical activity is known to be beneficial and to slow the muscle loss process associated with aging. The aim of the present study was to test, in an in vitro exercise model, the biological effects of a new formulation composed of magnesium and potassium combined with vitamin D and curcumin created to support muscle activity and to prevent hypercontraction damage. Experimental procedure: C2C12 cells were treated with vitamin D, buffered magnesium bisglycinate, curcumin, and potassium citrate. Cell viability, morpho-functional changes, calcium and magnesium movements, and the main kinases involved in glucose uptake were analyzed. The glycogen level and lactate were also evaluated. Results and conclusion: Important results about a positive effect on mitochondrial activity, ATP production, oxygen consumption and in the physiological differentiation of C2C12 cells were obtained. Further experiments were performed under conditions that mimic the biological aspects of strenuous exercise. The combination of magnesium, vitamin D3, curcumin, and potassium citrate revealed beneficial effects on skeletal muscle cells under physiological conditions as well as while mimicking intense activity. In particular, in an in vitro model, they were able to control the hypercontraction, restoring ion fluxes, reducing inflammation signaling and supporting the main mechanism involved on aerobic activity. Our results have indicated for the first time that this new combination could be considered as a new nutraceutical formulation to improve physical performance and muscle recovery.

主题分类 醫藥衛生 > 中醫藥學
参考文献
  1. Aggarwal, BB,Sundaram, C,Malani, N,Ichikawa, H(2007).Curcumin: the Indian solid gold.Adv Exp Med Biol,595,1-75.
  2. Barker, T,Henriksen, VT,Martins, TB(2015).Higher serum 25-hydroxyvitamin D concentrations associate with a faster recovery of skeletal muscle strength after muscular injury.Nutrients,5(4),1253-1275.
  3. Berger, MM(2005).Can oxidative damage be treated nutritionally?.Clin Nutr,24(2),172-183.
  4. Bohl, CH,Volpe, SL(2002).Magnesium and exercise.Crit Rev Food Sci Nutr,42(6),533-563.
  5. Bosaeus, I,Rothenberg, E(2016).Nutrition and physical activity for the prevention and treatment of age-related sarcopenia.Proc Nutr Soc,75(2),174-180.
  6. Carter, S,Solomon, TPJ(2019).In vitro experimental models for examining the skeletal muscle cell biology of exercise: the possibilities, challenges and future developments.Pflügers Archiv,471(3),413-429.
  7. Chen, HW,Huang, HC(1998).Effect of curcumin on cell cycle progression and apoptosis in vascular smooth muscle cells.Br J Pharmacol,124(6),1029-1040.
  8. Chen, SE,Jin, B,Li, YP(2007).TNF-alpha regulates myogenesis and muscle regeneration by activating p38 MAPK.Am J Physiol Cell Physiol,292(5),C1660-C1671.
  9. Deane, CS,Wilkinson, DJ,Phillips, BE,Smith, K,Etheridge, T,Atherton, PJ(2017).Nutraceuticals" in relation to human skeletal muscle and exercise.Am J Physiol Endocrinol Metab,312(4),E282-E299.
  10. Dominguez, LJ,Barbagallo, M,Lauretani, F(2006).Magnesium and muscle performance in older persons: the InCHIANTI study.Am J Clin Nutr,84(2),419-426.
  11. Ferenczi, MA,Goldman, YE,Simmons, RM(1984).The dependence of force and short-ening velocity on substrate concentration in skinned muscle fibres from Rana temporaria.J Physiol,350,519-543.
  12. Garrison, SR,Allan, GM,Sekhon, RK,Musini, VM,Khan, KM(2012).Magnesium for skeletal muscle cramps.Cochrane Database Syst Rev,2012(9),CD009402.
  13. Gartz, M,Darlington, A,Afzal, MZ,Strande, JL(2018).Exosomes exert cardioprotection in dystrophin-deficient cardiomyocytes via ERK1/2-p38/MAPK signaling.Sci Rep,8(1),16519.
  14. Girgis, CM,Clifton-Bligh, RJ,Mokbel, N,Cheng, K,Gunton, JE(2014).Vitamin D signaling regulates proliferation, differentiation, and myotube size in C2C12 skeletal muscle cells.Endocrinology,155(2),347-357.
  15. Gouadon, E,Lecerf, F,German-Fattal, M(2012).Differential effects of cyclosporin A and tacrolimus on magnesium influx in Caco2 cells.J Pharm Pharmaceut Sci.,15(3),389-398.
  16. Graham, TE(2001).Caffeine and exercise: metabolism, endurance and performance.Sports Med,31(11),785-807.
  17. Heaton, LE,Davis, JK,Rawson, ES(2017).Selected in-season nutritional strategies to enhance recovery for team sport athletes: a practical overview.Sports Med,47(11),2201-2218.
  18. Hong, J,Kim, BW,Choo, HJ(2014).Mitochondrial complex I deficiency enhances skeletal myogenesis but impairs insulin signaling through SIRT1 inactivation.J Biol Chem,289(29),20012-20025.
  19. Kerksick, CM,Arent, S,Schoenfeld, BJ(2017).International society of sports nutrition position stand: nutrient timing.J Int Soc Sports Nutr,14,33.
  20. Kulkarni, SS,Salehzadeh, F,Fritz, T(2012).Mitochondrial regulators of fatty acid metabolism reflect metabolic dysfunction in type 2 diabetes mellitus.Metabolism,61(2),175-185.
  21. Laires, MJ,Monteiro, CP,Matias, CN(2006).Magnesium status and exercise performance in athletes.Trace Elem Electrolytes,31,13-20.
  22. Mobley, CB,Fox, CD,Thompson, RM(2016).Comparative effects of whey protein versus L-leucine on skeletal muscle protein synthesis and markers of ribosome biogenesis following resistance exercise.Amino Acids,48(3),733-750.
  23. Molinari, C,Morsanuto, V,Ruga, S(2016).Role of vitamin D3 and alginates in prevention of NSAID-dependent cellular injury.Digestive System,6(3),211-223.
  24. Myers, SA,Nield, A,Chew, GS,Myers, MA(2013).The zinc transporter, Slc39a7 (Zip7) is implicated in glycaemic control in skeletal muscle cells.PloS One,8(11),e79316.
  25. Nakhostin-Roohi, B,Nasirvand, BA,Mahmoodi, HS,Ghanivand, B(2017).The effect of curcumin supplementation on selected markers of delayed onset muscle soreness (DOMS).Ann Appl Sport Sci,4(2),25-31.
  26. Ni Lochlainn, M,Bowyer, RCE,Steves, CJ(2018).Dietary protein and muscle in aging people: the potential role of the gut microbiome.Nutrients,10(7),929.
  27. Nielsen, FH,Lukaski, HC(2006).Update on the relationship between magnesium and exercise.Magnes Res,19(3),180-189.
  28. Norheim, F,Langleite, TM,Hjorth, M(2014).The effects of acute and chronic exercise on PGC-1a, irisin and browning of subcutaneous adipose tissue in humans.FEBS J,281(3),739-749.
  29. Ojuka, EO,Jones, TE,Han, DH(2002).Intermittent increases in cytosolic Ca2+ stimulate mitochondrial biogenesis in muscle cells.Am J Physiol Endocrinol Metab.,283(5),E1040-E1045.
  30. Ojuka, EO,Jones, TE,Han, DH(2003).Raising Ca2+ in L6 myotubes mimics effects of exercise on mitochondrial biogenesis in muscle.Faseb J.,17(6),675-681.
  31. Ojuka, EO,Jones, TE,Nolte, LA(2012).Regulation of GLUT4 biogenesis in muscle: evidence for involvement of AMPK and Ca2+.Am J Physiol Endocrinol Metab,282(5),E1008-E1013.
  32. Owens, DJ,Fraser, WD,Close, GL(2015).Vitamin D and the athlete: emerging insights.Eur J Sport Sci,15(1),73-84.
  33. Owens, DJ,Sharples, AP,Polydorou, I(2015).A systems-based investigation into vitamin D and skeletal muscle repair, regeneration, and hypertrophy.Am J Physiol Endocrinol Metab,309(12),E1019-E1031.
  34. Park, S,Scheffler, TL,Gunawan, AM(2009).Chronic elevated calcium blocks AMPK-induced GLUT-4 expression in skeletal muscle.Am J Physiol Cell Physiol,296(1),C106-C115.
  35. Pedersen, BK(2011).Muscles and their myokines.J Exp Biol,214(Pt 2),337-346.
  36. Petroczi, A,Naughton, DP,Pearce, G,Bailey, R,Bloodworth, A,McNamee, M(2008).Nutritional supplement use by elite young UK athletes: fallacies of advice regarding efficacy.J Int Soc Sports Nutr,5,22.
  37. Reid, MB(1985).Invited Review: redox modulation of skeletal muscle contraction: what we know and what we don't.J Appl Physiol,90(2),724-731.
  38. Sahin, K,Pala, R,Tuzcu, M(2016).Curcumin prevents muscle damage by regulating NF-kB and Nrf2 pathways and improves performance: an in vivo model.J Inflamm Res,9,147-154.
  39. Santos, DA,Matias, CN,Monteiro, CP(2011).Magnesium intake is associated with strength performance in elite basketball, handball and volleyball players.Magnes Res,24(4),215-219.
  40. Sejersted, OM,Sjøgaard, G(2000).Dynamics and consequences of potassium shifts in skeletal muscle and heart during exercise.Physiol Rev.,80(4),1411-1481.
  41. Simioni, C,Zauli, G,Martelli, AM(2018).Oxidative stress: role of physical exercise and antioxidant nutraceuticals in adulthood and aging.Oncotarget,9(24),17181-17198.
  42. Stone, MS,Martyn, L,Weaver, CM(2016).Potassium intake, bioavailability, hypertension, and glucose control.Nutrients,8(7),444.
  43. Tanabe, Y,Maeda, S,Akazawa, N(2015).Attenuation of indirect markers of eccentric exercise-induced muscle damage by curcumin.Eur J Appl Physiol,115(9),1949-1957.
  44. Tipton, KD(2015).Nutritional support for exercise-induced injuries.Sports Med,45(Suppl 1),S93-S104.
  45. Tsuda, S,Hayashi, T,Egawa, T(2019).The effects of caffeine on metabolomic responses to muscle contraction in rat skeletal muscle.Nutrients,11(8),1819.
  46. Uberti, F,Bardelli, C,Morsanuto, V,Ghirlanda, S,Cochis, A,Molinari, C(2017).Stimulation of the nonneuronal cholinergic system by highly diluted acetylcholine in keratinocytes.Cells Tissues Organs,203(4),215-230.
  47. Uberti, F,Morsanuto, V,Aprile, S(2017).Biological effects of combined resveratrol and vitamin D3 on ovarian tissue.J Ovarian Res,10(1),61.
  48. Uberti, F,Morsanuto, V,Ruga, S(2020).Study of magnesium formulations on intestinal cells to influence myometrium cell relaxation.Nutrients,12(2),573.
  49. Uberti, F,Ruga, S,Morsanuto, V(2020).Role of ribonucleotides in improving muscle cell function.Journal of Food Science and Nutrition Research,3,231-251.
  50. Wang, Y,Li, X,Duan, H,Fulton, TR,Eu, JP,Meissner, G(2009).Altered stored calcium release in skeletal myotubes deficient of triadin and junctin.Cell Calcium,45(1),29-37.
  51. Welch, AA(2014).Nutritional influences on age-related skeletal muscle loss.Proc Nutr Soc.,73(1),16-33.
  52. Williams, M(2006).Dietary supplements and sports performance: herbals.J Int Soc Sports Nutr,3(1),1-6.
  53. Wu, C,Zhao, W,Yu, J,Li, S,Lin, L,Chen, X(2018).Induction of ferroptosis and mitochondrial dysfunction by oxidative stress in PC12 cells.Sci Rep,8(1),574.
  54. Zhang, Y,Xun, P,Wang, R,Mao, L,He, K(2017).Can magnesium enhance exercise performance?.Nutrients,9(9),946.