Resveratrol Supplement Could Reverse the Effect of Resistance Training on Muscular eMHC and PAX7 in BALB/C Mice Bearing CT-26 Tumor
محورهای موضوعی : Report of Health CareEnayatollah Asadmanesh 1 , Maryam Koushki Jahromi 2 , Farhad Daryanoosh 3 , Javad Neamati 4 , Mahdi Samadi 5
1 - Department of Physical Education and Sport Sciences, Shiraz University, Shiraz, Iran
2 - Department of Physical Education and Sport Sciences, Shiraz University, Shiraz, Iran
3 - Department of Physical Education and Sport Sciences, Shiraz University, Shiraz, Iran
4 - Department of Physical Education and Sport Sciences, Shiraz University, Shiraz, Iran
5 - Department of Physical Education and Sport Sciences, Shiraz University, Shiraz, Iran
کلید واژه: Cancer, Resistance Training, Resveratrol, PAX-7, eMHC, Cachexia,
چکیده مقاله :
Introduction: Although resistance training and resveratrol is recommended as a stimulant for muscle regeneration in healthy subjects their effects on cancer-related cachexia indices are unclear. This study aimed to investigate the effect of a course of resistance training with resveratrol supplement on PAX-7 and eMHC in Gastrocnemius muscle tissue of mice bearing colon cancer induced cachexia. Methods: This was an experimental study conducted on 20 six-week-old BALB/c mice implanted with CT-26 tumor. The mice were randomly divided into four groups: resistance training, resveratrol, resveratrol with resistance training, and control. The resistance training group performed 6 weeks of progressive resistance training, the resveratrol group received 100 mg/kg resveratrol per day. 48 hours after the last experimental session, the mice were sacrificed and PAX-7 and eMHC protein levels were measured using ELISA test through specimen taken from gastrocnemius muscles. Statistical test of one way ANOVA was used for data analysis. Results: PAX-7 level was significantly lower in resveratrol with resistance training group compared to control (P=0.009), resveratrol (P=0.005), and resistance training groups (P=0.002). eMHC was significantly lower in the resistance training group compared to the control (P=0.08), resistance training, and resveratrol groups (P=0.002). Conclusion: Resistance training was not an appropriate intervention for treating reduced muscular regeneration due to cachexia. However, regarding reducing effect of resveratrol supplementation with resistance training on PAX-7 level, it may be recommended to improve muscular regeneration.
1. Mattox TW. Cancer cachexia: cause, diagnosis, and treatment. Nutr Clin Pract. 2017; 32 (5): 599- 606.
2. Khamoui AV, Park BS, Kim DH, Yeh MC, Oh SL, Elam ML, et al. Aerobic and resistance training dependent skeletal muscle plasticity in the colon-26 murine model of cancer cachexia. Metab J. 2016; 65 (5): 685- 698..
3. Aoyagi T, Terracina KP, Raza A, Matsubara H, Takabe K. Cancer cachexia, mechanism and treatment. World J Gastrointest Oncol. 2015; 7 (4): 17- 27.
4. Zimmers TA, Fishel ML, Bonetto A. STAT3 in the systemic inflammation of cancer cachexia. In Seminars Cell Develop Biol. 2016; 54: 28- 41.
5. Penna F, Ballarò R, Beltrà Bach M, De Lucia S, Garcia Castillo L, Costelli P. The skeletal muscle as an active player against cancer cachexia. Front Physiol. 2019; 10: 41- 48.
6. Klimek ME, Aydogdu T, Link MJ, Pons M, Koniaris LG, Zimmers TA. Acute inhibition of myostatin-family proteins preserves skeletal muscle in mouse models of cancer cachexia. Biochem Biophys Res Commun. 2010; 391 (3): 1548- 1554.
7. Bossola M, Marzetti E, Rosa F, Pacelli F. Skeletal muscle regeneration in cancer cachexia. Clin Exp Pharmacol Physiol. 2016; 43 (5): 522- 527.
8. Buckingham M. Myogenic progenitor cells and skeletal myogenesis in vertebrates. Curr Opin Genet Dev. 2006; 16 (5): 525- 532.
9. Saini A, Al‐Shanti N, Sharples AP, Stewart CE. Sirtuin 1 regulates skeletal myoblast survival and enhances differentiation in the presence of resveratrol. Exp Physiol. 2012; 97 (3): 400- 418.
10. Montesano A, Luzi L, Senesi P, Mazzocchi N, Terruzzi I. Resveratrol promotes myogenesis and hypertrophy in murine myoblasts. J Transl Med. 2013; 11 (1): 310.
11. Cameron‐Smith D. Exercise and skeletal muscle gene expression. Clin Exp Pharmacol Physiol. 2002; 29 (3): 209- 213.
12. Nederveen JP, Snijders T, Joanisse S, Wavell CG, Mitchell CJ, Johnston LM,et al. Altered muscle satellite cell activation following 16 wk of resistance training in young men. Am J Physiol Regul Integr Comp Physiol. 2016; 312 (1): R85- 92.
13.Wellington D, Mikaelian I, Singer L. Comparison of ketamine–xylazine and ketamine–dexmedetomidine anesthesia and intraperitoneal tolerance in rats. J Am Assoc Lab Anim Sci. 2013; 52 (4): 481- 487.
14. Kwon I, Jang Y, Cho JY, Jang YC, Lee Y. Long-term resistance exercise-induced muscular hypertrophy is associated with autophagy modulation in rats. J Physiol Sci. 2018; 68 (3): 269- 280.
15. Shadfar S, Couch ME, McKinney KA, Weinstein LJ, Yin X, Rodríguez JE, et al. Oral resveratrol therapy inhibits cancer-induced skeletal muscle and cardiac atrophy in vivo. Nutr Cancer. 2011; 63 (5): 749- 762.
16. Coletti D, Aulino P, Pigna E, Barteri F, Moresi V, Annibali D, et al. Spontaneous physical activity downregulates Pax7 in cancer cachexia. Stem Cells Int. 2016; 2016: 2- 12.
17. Penna F, Costamagna D, Fanzani A, Bonelli G, Baccino FM, Costelli P. Muscle wasting and impaired myogenesis in tumor bearing mice are prevented by ERK inhibition. PloS one. 2010; 5 (10): e13604.
18. Bazgir B, Fathi R, Valojerdi MR, Mozdziak P, Asgari A. Satellite cells contribution to exercise mediated muscle hypertrophy and repair. Cell J (Yakhteh). 2017; 18 (4): 473.
19. Damas F, Libardi CA, Ugrinowitsch C, Vechin FC, Lixandrão ME, Snijders T, et al. Early-and later-phases satellite cell responses and myonuclear content with resistance training in young men. PloS one. 2018; 13 (1): e0191039.
20. Deponti D, François S, Baesso S, Sciorati C, Innocenzi A, Broccoli V, et al. Necdin mediates skeletal muscle regeneration by promoting myoblast survival and differentiation. J Cell Biol. 2007; 179 (2): 305- 319.
21. Lira FS, Neto JC, Seelaender M. Exercise training as treatment in cancer cachexia. Appl Physiol Nutr Metab. 2014; 39 (6): 679- 686.
22. Calle MC, Fernandez ML. Effects of resistance training on the inflammatory response. Nutr Res Pract. 2010; 4 (4): 259- 269.
23. Bautmans I, Njemini R, Vasseur S, Chabert H, Moens L, Demanet C, et al. Biochemical changes in response to intensive resistance exercise training in the elderly. Gerontology. 2005; 51 (4): 253- 265.
24. Prestes J, Shiguemoto G, Botero JP, Frollini A, Dias R, Leite R, et al. Effects of resistance training on resistin, leptin, cytokines, and muscle force in elderly post-menopausal women. J Sports Sci. 2009; 27 (14): 1607- 1615.
25. Creer A, Gallagher P, Slivka D, Jemiolo B, Fink W, Trappe S. Influence of muscle glycogen availability on ERK1/2 and Akt signaling after resistance exercise in human skeletal muscle. J Appl Physiol. 2005; 99 (3): 950- 956.
26. Kraemer WJ, Ratamess NA, Nindl BC. Recovery responses of testosterone, growth hormone, and IGF-1 after resistance exercise. J Appl Physiol. 2016; 122 (3): 549- 558.
27. Motallebnezhad M, Aghebati-Maleki L, Jadidi-Niaragh F, Nickho H, Samadi-Kafil H, Shamsasenjan K, et al. The insulin-like growth factor-I receptor (IGF-IR) in breast cancer: biology and treatment strategies. Tumor Biol. 2016; 37 (9): 11711- 11721.
28. Ballak SB, Jaspers RT, Deldicque L, Chalil S, Peters EL, de Haan A. Blunted hypertrophic response in old mouse muscle is associated with a lower satellite cell density and is not alleviated by resveratrol. Exp Gerontol. 2015; 62: 23- 31.
29. Kaminski J, Lançon A, Aires V, Limagne E, Tili E, Michaille JJ, et al. Resveratrol initiates differentiation of mouse skeletal muscle-derived C2C12 myoblasts. Biochem Pharmacol. 2012; 84 (10): 1251- 1259.
30. Alway SE, McCrory JL, Kearcher K, Vickers A, Frear B, Gilleland DL, et al. Resveratrol enhances exercise-induced cellular and functional adaptations of skeletal muscle in older men and women. J Gerontol A Biol Sci Med Sc. 2017; 72 (12): 1595- 1606.
31 Kadi F, Thornell LE. Training affects myosin heavy chain phenotype in the trapezius muscle of women. Histochem Cell Biol. 1999; 112 (1): 73- 78.
32. Cheung K, Hume PA, Maxwell L. Delayed onset muscle soreness. Sports Med. 2003; 33 (2): 145- 164.
33. Tidball JG. Inflammatory processes in muscle injury and repair. Am J Physiol Regul Integr Comp Physiol. 2005; 288 (2): R345- 353.