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Souza KL, Gurgul-Convey E, Elsner M, Lenzen S. Interaction between pro-inflammatory and anti-inflammatory cytokines in insulin-producing cells. J Endocrinol. 2008 Apr;197(1):139-50. doi: 10.1677/JOE-07-0638. PMID: 18372240.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2. Riyahi Malayeri S, Azadniya A, Rasaee M J. Effect of eight-week High intensity interval training nd resveratrol intake on serum adiponectin and resistin in type 2 diabetic rats. Ijdld 2019; 18 (1) :8-1. URL: http://ijdld.tums.ac.ir/article-1-5708-en.html.</unstructured_citation></citation><citation key="ref3"><unstructured_citation>3. Riyahi Malayeri S, Kaka Abdullah Shirazi S, Behdari R, mousavi Sadati K. Effect of 8-week Swimming training and garlic intake on serum ICAM and VCAM adhesion molecules in male obese rats. JSSU 2019; 26 (10): 867-878.URL: http://jssu.ssu.ac.ir/article-1-4695-en.html.</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Martin-Cordero L, Garcia JJ, Giraldo E, De la Fuente M, Manso R, Ortega E. Influence of exercise on the circulating levels and macrophage production of IL-1beta and IFNgamma affected by metabolic syndrome: an obese Zucker rat experimental animal model. Eur J Appl Physiol. 2009 Nov;107(5):535-43. doi: 10.1007/s00421-009-1140-4. Epub 2009 Aug 18. PMID: 19688220.</unstructured_citation></citation><citation key="ref5"><unstructured_citation>5. Peiró C, Lorenzo Ó, Carraro R, Sánchez-Ferrer CF. IL-1β Inhibition in Cardiovascular Complications Associated to Diabetes Mellitus. Front Pharmacol. 2017 Jun 13;8:363. doi: 10.3389/fphar.2017.00363. PMID: 28659798; PMCID: PMC5468794.</unstructured_citation></citation><citation key="ref6"><unstructured_citation>6. van Asseldonk EJ, Stienstra R, Koenen TB, Joosten LA, Netea MG, Tack CJ. Treatment with Anakinra improves disposition index but not insulin sensitivity in nondiabetic subjects with the metabolic syndrome: a randomized, double-blind, placebo-controlled study. J Clin Endocrinol Metab. 2011 Jul;96(7):2119-26. doi: 10.1210/jc.2010-2992. Epub 2011 Apr 20. PMID: 21508140.</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7. Hosseini M, Ghasem Zadeh Khorasani N, Divkan B, Riyahi Malayeri S. Interactive Effect of High Intensity Interval Training with Vitamin E Consumption on the Serum Levels of Hsp70 and SOD in Male Wistar Rats. Iranian J Nutr Sci Food Technol 2019; 13 (4) :21-28URL: http://nsft.sbmu.ac.ir/article-1-2689-en.html.</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8. Froozandeh, E., Tofighi, A., Tolouei Azar, J. The Effect of 8 Weeks of Resistance and Aerobic Interval Training on Levels of GLP-1, NRG-1 and IL-33 in Type 2 Diabetic Women. Sport Physiology, 2020; 12(46): 117-138. doi: 10.22089/spj.2019.7434.1913</unstructured_citation></citation><citation key="ref9"><unstructured_citation>9. Miller AM, Liew FY. The IL-33/ST2 pathway--A new therapeutic target in cardiovascular disease. Pharmacol Ther. 2011 Aug;131(2):179-86. doi: 10.1016/j.pharmthera.2011.02.005. Epub 2011 Feb 26. PMID: 21356240.</unstructured_citation></citation><citation key="ref10"><unstructured_citation>10. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111.</unstructured_citation></citation><citation key="ref11"><unstructured_citation>11. Miller AM, Asquith DL, Hueber AJ, Anderson LA, Holmes WM, McKenzie AN, Xu D, Sattar N, McInnes IB, Liew FY. Interleukin-33 induces protective effects in adipose tissue inflammation during obesity in mice. Circ Res. 2010 Sep 3;107(5):650-8. doi: 10.1161/CIRCRESAHA.110.218867. Epub 2010 Jul 15. PMID: 20634488; PMCID: PMC4254700.</unstructured_citation></citation><citation key="ref12"><unstructured_citation>12. Berg A, Scherer P. The Online version of this article, along with updated information and services, is located on the World Wide Web. Journal of the American Heart Association. 2005; 96:939-49.</unstructured_citation></citation><citation key="ref13"><unstructured_citation>13. Ouchi N, Kihara S, Funahashi T, Matsuzawa Y, Walsh K. Obesity, adiponectin and vascular inflammatory disease. Curr Opin Lipidol. 2003 Dec;14(6):561-6. doi: 10.1097/00041433-200312000-00003. PMID: 14624132.</unstructured_citation></citation><citation key="ref14"><unstructured_citation>14. Peterson JM, Wei Z, Wong GW. C1q/TNF-related protein-3 (CTRP3), a novel adipokine that regulates hepatic glucose output. J Biol Chem. 2010 Dec 17;285(51):39691-701. doi: 10.1074/jbc.M110.180695. Epub 2010 Oct 15. PMID: 20952387; PMCID: PMC3000950.</unstructured_citation></citation><citation key="ref15"><unstructured_citation>15. Zhang J, Zhang B, Cheng Y, Xu J. Low serum CTRP3 levels are associated with nonalcoholic fatty liver disease in patients with type 2 diabetes mellitus. Cytokine. 2018 Jun;106:131-135. doi: 10.1016/j.cyto.2017.10.023. Epub 2017 Nov 4. PMID: 29113741.</unstructured_citation></citation><citation key="ref16"><unstructured_citation>16. Komosinska-Vassev K, Olczyk P, Kuźnik-Trocha K, Jura-Półtorak A, Derkacz A, Purchałka M, Telega A, Olczyk K. Circulating C1q/TNF-Related Protein 3, Omentin-1 and NGAL in Obese Patients with Type 2 Diabetes During Insulin Therapy. J Clin Med. 2019 Jun 5;8(6):805. doi: 10.3390/jcm8060805. PMID: 31195747; PMCID: PMC6617185.</unstructured_citation></citation><citation key="ref17"><unstructured_citation>17. Khademi Z, Imani E, Heidary Khormizi M, Poordad Khodaei A, Sarneyzadeh M, Nikparvar M. A Study on The Variation of Medicinal Plants Used for Controlling Blood Sugar and Causes of Self – Medication by Patients Referred to Bandarabbas Diabetic Center. J Diabetes Nurs 2013; 1 (1) :12-20</unstructured_citation></citation><citation key="ref18"><unstructured_citation>18. darabi S, hasanvand A, nourollahi A. Effects of garlic extract, olive leaf extract, nettle extract on serum inflammatory markers hsCRP and IL-6 and TNF-α in rats with diabetes. cmja 2016; 6 (1) :1452-1460.</unstructured_citation></citation><citation key="ref19"><unstructured_citation>19. Genc Z, Yarat A, Tunali-Akbay T, Sener G, Cetinel S, Pisiriciler R, Caliskan-Ak E, Altıntas A, Demirci B. The effect of stinging nettle (Urtica dioica) seed oil on experimental colitis in rats. J Med Food. 2011 Dec;14(12):1554-61. doi: 10.1089/jmf.2011.0028. Epub 2011 Aug 23. PMID: 21861725.</unstructured_citation></citation><citation key="ref20"><unstructured_citation>20. arighat esfanjani A, Namazi N, Bahrami A, Ehteshami M. Effect of Hydroalcoholic extract of Nettle (Urtica Dioica) on Glycemic Index and Insulin Resistance Index in Type 2 Diabetic Patients. Iranian Journal of Endocrinology and Metabolism 2012; 13 (6) :561-568</unstructured_citation></citation><citation key="ref21"><unstructured_citation>21. Jafari, Z., Samani, S.A. &amp; Jafari, M. Insights into the bioactive compounds and physico-chemical characteristics of the extracted oils from Urtica dioica and Urtica pilulifera. SN Appl. Sci. 2, 416 (2020). https://doi.org/10.1007/s42452-020-2219-0</unstructured_citation></citation><citation key="ref22"><unstructured_citation>22. Ziaei R, Foshati S, Hadi A, Kermani MAH, Ghavami A, Clark CCT, Tarrahi MJ. The effect of nettle (Urtica dioica) supplementation on the glycemic control of patients with type 2 diabetes mellitus: A systematic review and meta-analysis. Phytother Res. 2020 Feb;34(2):282-294. doi: 10.1002/ptr.6535. Epub 2019 Dec 4. PMID: 31802554.</unstructured_citation></citation><citation key="ref23"><unstructured_citation>23. Saeid DabaghMasoud NikbakhtGlycemic Control by Exercise and Urtica Dioica Supplements in Men With Type 2 Diabetes.Jundishapur J Chronic Dis Care.2016;5(1):e31745.https://doi.org/10.17795/jjcdc-31745.</unstructured_citation></citation><citation key="ref24"><unstructured_citation>24. Nikroo H, Hosseini SRA, Fathi M, Sardar MA, Khazaei M. The effect of aerobic, resistance, and combined training on PPAR-α, SIRT1 gene expression, and insulin resistance in high-fat diet-induced NAFLD male rats. Physiol Behav. 2020 Dec 1;227:113149. doi: 10.1016/j.physbeh.2020.113149. Epub 2020 Sep 2. PMID: 32888948.</unstructured_citation></citation><citation key="ref25"><unstructured_citation>25. Petersen AM, Pedersen BK. The anti-inflammatory effect of exercise. J Appl Physiol (1985). 2005 Apr;98(4):1154-62. doi: 10.1152/japplphysiol.00164.2004. PMID: 15772055.</unstructured_citation></citation><citation key="ref26"><unstructured_citation>26. Trøseid M, Lappegård KT, Mollnes TE, Arnesen H, Seljeflot I. The effect of exercise on serum levels of interleukin-18 and components of the metabolic syndrome. Metab Syndr Relat Disord. 2009 Dec;7(6):579-84. doi: 10.1089/met.2009.0003. PMID: 19900154.</unstructured_citation></citation><citation key="ref27"><unstructured_citation>27. Nasr Esfahani N, Taghian F. Effect of Eight Weeks of Yoga Training and Zinc Supplementation on the Levels of Interleukin-1 and C-reactive Protein in Women with Type II Diabetes. J Diabetes Nurs 2018; 6 (1) :374-385.</unstructured_citation></citation><citation key="ref28"><unstructured_citation>28. Chen HF, Chuang HC, Tan TH. Regulation of Dual-Specificity Phosphatase (DUSP) Ubiquitination and Protein Stability. Int J Mol Sci. 2019 May 30;20(11):2668. doi: 10.3390/ijms20112668. PMID: 31151270; PMCID: PMC6600639.</unstructured_citation></citation><citation key="ref29"><unstructured_citation>29. Liu Y, Liu SX, Cai Y, Xie KL, Zhang WL, Zheng F. Effects of combined aerobic and resistance training on the glycolipid metabolism and inflammation levels in type 2 diabetes mellitus. J Phys Ther Sci. 2015 Jul;27(7):2365-71. doi: 10.1589/jpts.27.2365. Epub 2015 Jul 22. PMID: 26311110; PMCID: PMC4540883.</unstructured_citation></citation><citation key="ref30"><unstructured_citation>30. Dadvar, N., Ghalavand, A., Zakerkish, M., Hojat, S., Alijani, E., Mahmoodkhanikooshkaki, R. The Effect of Aerobic Training and Urtica Dioica on Lipid Profile and Fasting Blood Glucose in Middle Age Female with Type II Diabetes. Jundishapur Scientific Medical Journal, 2017; 15(6): 507-516.</unstructured_citation></citation><citation key="ref31"><unstructured_citation>31. Dadvar N, Ghalavand A, Zakerkish M, Hojat S, Alijani E, Mahmoodkhanikooshkaki R. The effect of aerobic training and Urtica Dioica on lipid profile and fasting blood glucose in middle age female with type II diabetes. Jundishapur Scientific Medical Journal. 2017;15(6):507-16.</unstructured_citation></citation><citation key="ref32"><unstructured_citation>32. Hosseinpour Delavar, S., Boyerahmadi, A., Soleymani, A., Ghalavand, A. Effect of eight weeks of aerobic interval training and urtica dioica supplement on some inflammatory indicators and glycemic control in men with type 2 diabetes. Jundishapur Scientific Medical Journal, 2020; 19(2): 123-135. doi: 10.22118/jsmj.2020.200813.1814</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Effects of  Exercise-induced myokines on cardiac function: Muscle– cardiac Crosstalk in health and diseases</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Reza </given_name><surname>Sabzevari Rad</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>13</day><year>2025</year></publication_date><pages><first_page>41</first_page><last_page>43</last_page></pages><doi_data><doi>10.66224/jspac.49166.5.15.41</doi><resource>http://jspac.etb.iau.ir/en/Article/49166</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item><item crawler="google"><resource>http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item><item crawler="msn"><resource>http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item><item crawler="altavista"><resource>http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item><item crawler="yahoo"><resource>http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item><item crawler="scirus"><resource>http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://jspac.etb.iau.ir/en/Article/Download/49166</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>1, Giudice, Jimena, and Joan M. Taylor. "Muscle as a paracrine and endocrine organ." Current opinion in pharmacology 34 (2017): 49-55. https://doi.org/10.1016/j.coph.2017.05.005</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2. Mohammadi, S., Rostamkhani, F., Riyahi Malayeri, S. et al. High-intensity interval training with probiotic supplementation decreases gene expression of NF-κβ and CXCL2 in small intestine of rats with steatosis. Sport Sci Health 2021. https://doi.org/10.1007/s11332-021-00829-5.</unstructured_citation></citation><citation key="ref3"><unstructured_citation>3. So, Byunghun, et al. "Exercise-induced myokines in health and metabolic diseases." Integrative medicine research 3.4 (2014): 172-179.https://doi.org/10.1016/j.imr.2014.09.007</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111.</unstructured_citation></citation><citation key="ref5"><unstructured_citation>5. Huh, Joo Young. "The role of exercise-induced myokines in regulating metabolism." Archives of pharmacal research 41.1 (2018): 14-29.. https://doi. org/10.1007/s12272-017-0994-y</unstructured_citation></citation><citation key="ref6"><unstructured_citation>6. Motl, Robert W., and Lara A. Pilutti. "The benefits of exercise training in multiple sclerosis." Nature Reviews Neurology 8.9 (2012): 487-497. https:// doi.org/10.1038/nrneurol.2012.136</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7. Riyahi Malayeri S, Azadniya A, Rasaee M J. Effect of eight-week High intensity interval training nd resveratrol intake on serum adiponectin and resistin in type 2 diabetic rats. Ijdld 2019; 18 (1) :8-1. URL: http://ijdld.tums.ac.ir/article-1-5708-en.html.</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8. Esposito, Giovanni, et al. "Dermcidin: a skeletal muscle myokine modulating cardiomyocyte survival and infarct size after coronary artery ligation." Cardiovascular research 107.4 (2015): 431-441.. https://doi.org/10.1093/cvr/cvv173</unstructured_citation></citation><citation key="ref9"><unstructured_citation>9. Görgens, S. W., Raschke, S., Holven, K. B., Jensen, J., Eckardt, K., &amp; Eckel, J. (2013). Regulation of follistatin-like protein 1 expression and secretion in primary human skeletal muscle cells. Archives of physiology and biochemistry, 119(2), 75-80.https://doi.org/10.3109/ 13813455.2013.768270</unstructured_citation></citation><citation key="ref10"><unstructured_citation>10. Miyabe, Megumi, et al. "Muscle-derived follistatin-like 1 functions to reduce neointimal formation after vascular injury." Cardiovascular research 103.1 (2014): 111-120.https://doi.org/10.1093/cvr/cvu105</unstructured_citation></citation><citation key="ref11"><unstructured_citation>11Norheim, Frode, et al. "Proteomic identification of secreted proteins from human skeletal muscle cells and expression in response to strength training." American Journal of Physiology-Endocrinology and Metabolism 301.5 (2011): E1013-E1021.. https://doi.org/10.1152/ajpendo.00326.2011</unstructured_citation></citation><citation key="ref12"><unstructured_citation>12. Ouchi, Noriyuki, et al. "Follistatin-like 1, a secreted muscle protein, promotes endothelial cell function and revascularization in ischemic tissue through a nitric-oxide synthase-dependent mechanism." Journal of Biological Chemistry 283.47 (2008): 32802-32811.. https://doi.org/10. 1074/jbc.M803440200</unstructured_citation></citation><citation key="ref13"><unstructured_citation>13. Otaka, Naoya, et al. "Myonectin is an exercise-induced myokine that protects the heart from ischemia-reperfusion injury." Circulation research 123.12 (2018): 1326-1338.https://doi.org/10.1161/CIRCRESAHA. 118.313777</unstructured_citation></citation><citation key="ref14"><unstructured_citation>14. Parikh, Victoria N., et al. "Apelin and APJ orchestrate complex tissue-specific control of cardiomyocyte hypertrophy and contractility in the hypertrophy-heart failure transition." American Journal of Physiology-Heart and Circulatory Physiology 315.2 (2018): H348-H356. https://doi.org/ 10.1152/ajpheart.00693.2017</unstructured_citation></citation><citation key="ref15"><unstructured_citation>15. Zhang, Zhen-Zhou, et al. "Apelin is a negative regulator of angiotensin II–mediated adverse myocardial remodeling and dysfunction." Hypertension 70.6 (2017): 1165-1175.. https://doi.org/10.1161/ HYPERTENSIONAHA.117.10156</unstructured_citation></citation><citation key="ref16"><unstructured_citation>16. Li, Ying-Xiao, et al. "Role of musclin in the pathogenesis of hypertension in rat." PLoS One 8.8 (2013): e72004.https://doi.org/10.1371/journal.pone. 0072004</unstructured_citation></citation><citation key="ref17"><unstructured_citation>17. Lin, Jia-Wei, et al. "Characterization of musclin as a new target for treatment of hypertension." BioMed Research International 2014.1 (2014): 354348.. https:// doi.org/10.1155/2014/354348.</unstructured_citation></citation><citation key="ref18"><unstructured_citation>18. Ashtary-Larky D, Lamuchi-Deli N, Kashkooli S, Mombaini D, Alipour M, Khodadadi F, Bagheri R, Dutheil F, Wong A. The effects of exercise training on serum concentrations of chemerin in individuals with overweight and obesity: a systematic review, meta-analysis, and meta-regression of 43 clinical trials. Arch Physiol Biochem. 2023 Oct;129(5):1012-1027. doi: 10.1080/13813455.2021.1892148. Epub 2021 Mar 12. PMID: 33706633.</unstructured_citation></citation><citation key="ref19"><unstructured_citation>19. Hedayati S, Riyahi Malayeri S, Hoseini M. The Effect of Eight Weeks of High and Moderate Intensity Interval Training Along with Aloe Vera Consumption on Serum Levels of Chemerin, Glucose and Insulin in Streptozotocin-induced Diabetic Rats: An Experimental Study. JRUMS. 2018; 17 (9) :801-814. URL: http://journal.rums.ac.ir/article-1-4209-fa.html.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>The effects of aerobic exercise and Pistacia vera hull ethanol extract on the expression of superoxide dismutase in rats on a high-fat diet.</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Hadi </given_name><surname>Barshan</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Mohammad Ali </given_name><surname>Azarbayjani</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Saleh </given_name><surname>Rahmati</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Maghsoud</given_name><surname>Peeri</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>13</day><year>2025</year></publication_date><pages><first_page>31</first_page><last_page>40</last_page></pages><doi_data><doi>10.66224/jspac.49275.5.15.31</doi><resource>http://jspac.etb.iau.ir/en/Article/49275</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item><item crawler="google"><resource>http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item><item crawler="msn"><resource>http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item><item crawler="altavista"><resource>http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item><item crawler="yahoo"><resource>http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item><item crawler="scirus"><resource>http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://jspac.etb.iau.ir/en/Article/Download/49275</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>1. Roh HT, So WY. The effects of aerobic exercise training on oxidant-antioxidant balance, neurotrophic factor levels, and blood-brain barrier function in obese and non-obese men. J Sport Health Sci. 2017 Dec;6(4):447-453. doi: 10.1016/j.jshs.2016.07.006. Epub 2016 Jul 18. PMID: 30356625; PMCID: PMC6189263.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2. Azizbeigi,K., Stannard,S.R., Atashak,S.,Mosalman Haghighi,M. (2014)  Antioxidant enzymes and oxidative stress adaptation to exercise training:Comparison of endurance, resistance, and concurrent training in untrained males.  Journal of Exercise Science &amp; Fitness 12 1e6 http://dx.doi.org/10.1016/j.jesf.2013.12.001</unstructured_citation></citation><citation key="ref3"><unstructured_citation>3. Radak Z, Chung HY, Goto S. Systemic adaptation to oxidative challenge induced by regular exercise. Free Radic Biol Med. 2008 Jan 15;44(2):153-9. doi: 10.1016/j.freeradbiomed.2007.01.029. Epub 2007 Jan 23. PMID: 18191751.</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111..</unstructured_citation></citation><citation key="ref5"><unstructured_citation>5. Seker G, Akbas MY. Evaluation of bioactivities of Pistacia vera L. hull extracts as a potential antimicrobial and antioxidant natural source. Food Sci Technol Int. 2024 Dec;30(8):722-730. doi: 10.1177/10820132231193478. Epub 2023 Aug 8. PMID: 37552931.</unstructured_citation></citation><citation key="ref6"><unstructured_citation>6. Hollander J, Fiebig R, Gore M, Bejma J, Ookawara T, Ohno H, Ji LL. Superoxide dismutase gene expression in skeletal muscle: fiber-specific adaptation to endurance training. Am J Physiol. 1999 Sep;277(3):R856-62. doi: 10.1152/ajpregu.1999.277.3.R856. PMID: 10484504.</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7. shirebrahimi E, Ramezan poor M R, Hejazi M. A Comparison of the Effect of Eight Weeks Aerobic Training and Vitamin C Supplements Consumption on Antioxidant Enzymes in Men With Type 2 Diabetes. Intern Med Today 2018; 24 (2) :103-110.</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8. Kocyigit, A., Koylu, A.A.,Keles. H. (2006)Effects of pistachio nuts consumption on plasma lipid profile and oxidative status in healthy volunteers.Nutrition, Metabolism &amp; Cardiovascular Diseases 16, 202-209. doi:10.1016/j.numecd.2005.08.004</unstructured_citation></citation><citation key="ref9"><unstructured_citation>10. Bouriche,H.,Saidi,A., Ferradji,A., Amel Belambri,S., Senator,A.( 2016) Anti-inflammatory and immunomodulatory properties of Pistacia lentiscus extracts Journal of Applied Pharmaceutical Science Vol. 6 (07), pp. 140-146, July,. DOI: 10.7324/JAPS.2016.60721</unstructured_citation></citation><citation key="ref10"><unstructured_citation>11. Fathollahi M, Aminzare M, Mohseni M, Hassanzadazar H. Antioxidant capacity, antimicrobial activities and chemical composition of Pistacia atlantica subsp. kurdica essential oil. Vet Res Forum. 2019 Fall;10(4):299-305. doi: 10.30466/vrf.2018.83910.2103. Epub 2019 Dec 15. PMID: 32206225; PMCID: PMC7065580.</unstructured_citation></citation><citation key="ref11"><unstructured_citation>12. Od-Ek P, Deenin W, Malakul W, Phoungpetchara I, Tunsophon S. Anti-obesity effect of Carica papaya in high-fat diet fed rats. Biomed Rep. 2020 Oct;13(4):30. doi: 10.3892/br.2020.1337. Epub 2020 Jul 31. PMID: 32802327; PMCID: PMC7412661.</unstructured_citation></citation><citation key="ref12"><unstructured_citation>13. Nikbin S, Tajik A, Allahyari P, Matin G, Hoseini Roote SS, Barati E, Ayazi M, Karimi L, Dayani Yazdi F, Javadinejad N, Azarbayjani MA. Aerobic exercise and eugenol supplementation ameliorated liver injury induced by chlorpyrifos via modulation acetylcholinesterase activation and antioxidant defense. Environmental toxicology. 2020 Jul;35(7):783-93</unstructured_citation></citation><citation key="ref13"><unstructured_citation>14. Dal S, Jeandidier N, Seyfritz E, Bietiger W, Péronet C, Moreau F, Pinget M, Maillard E, Sigrist S. Featured Article: Oxidative stress status and liver tissue defenses in diabetic rats during intensive subcutaneous insulin therapy. Exp Biol Med (Maywood). 2016 Jan;241(2):184-92. doi: 10.1177/1535370215603837. Epub 2015 Sep 18. PMID: 26385497; PMCID: PMC4935385.</unstructured_citation></citation><citation key="ref14"><unstructured_citation>15. Furukawa S, Fujita T, Shimabukuro M, Iwaki M, Yamada Y, Nakajima Y, Nakayama O, Makishima M, Matsuda M, Shimomura I. Increased oxidative stress in obesity and its impact on metabolic syndrome. J Clin Invest. 2004 Dec;114(12):1752-61. doi: 10.1172/JCI21625. PMID: 15599400; PMCID: PMC535065.</unstructured_citation></citation><citation key="ref15"><unstructured_citation>16. Manna P, Jain SK. Obesity, Oxidative Stress, Adipose Tissue Dysfunction, and the Associated Health Risks: Causes and Therapeutic Strategies. Metab Syndr Relat Disord. 2015 Dec;13(10):423-44. doi: 10.1089/met.2015.0095. PMID: 26569333; PMCID: PMC4808277.</unstructured_citation></citation><citation key="ref16"><unstructured_citation>17. Birben E, Sahiner UM, Sackesen C, Erzurum S, Kalayci O. Oxidative stress and antioxidant defense. World Allergy Organ J. 2012 Jan;5(1):9-19. doi: 10.1097/WOX.0b013e3182439613. Epub 2012 Jan 13. PMID: 23268465; PMCID: PMC3488923.</unstructured_citation></citation><citation key="ref17"><unstructured_citation>18. Dworzański J, Strycharz-Dudziak M, Kliszczewska E, Kiełczykowska M, Dworzańska A, Drop B, Polz-Dacewicz M. Glutathione peroxidase (GPx) and superoxide dismutase (SOD) activity in patients with diabetes mellitus type 2 infected with Epstein-Barr virus. PLoS One. 2020 Mar 25;15(3):e0230374. doi: 10.1371/journal.pone.0230374. PMID: 32210468; PMCID: PMC7094858.</unstructured_citation></citation><citation key="ref18"><unstructured_citation>19. Ismaeel A, Laudato JA, Fletcher E, Papoutsi E, Tice A, Hwa LS, Miserlis D, Jamurtas AZ, Steiner J, Koutakis P. High-Fat Diet Augments the Effect of Alcohol on Skeletal Muscle Mitochondrial Dysfunction in Mice. Nutrients. 2022 Feb 28;14(5):1016. doi: 10.3390/nu14051016. PMID: 35267991; PMCID: PMC8912391.</unstructured_citation></citation><citation key="ref19"><unstructured_citation>20. Dhibi M, Brahmi F, Mnari A, Houas Z, Chargui I, Bchir L, Gazzah N, Alsaif MA, Hammami M. The intake of high fat diet with different trans fatty acid levels differentially induces oxidative stress and non alcoholic fatty liver disease (NAFLD) in rats. Nutr Metab (Lond). 2011 Sep 23;8(1):65. doi: 10.1186/1743-7075-8-65. PMID: 21943357; PMCID: PMC3192664.</unstructured_citation></citation><citation key="ref20"><unstructured_citation>21. Yu Q, Xia Z, Liong EC, Tipoe GL. Chronic aerobic exercise improves insulin sensitivity and modulates Nrf2 and NF κB/IκBα pathways in the skeletal muscle of rats fed with a high fat diet. Mol Med Rep. 2019 Dec;20(6):4963-4972. doi: 10.3892/mmr.2019.10787. Epub 2019 Oct 31. PMID: 31702809; PMCID: PMC6854540.</unstructured_citation></citation><citation key="ref21"><unstructured_citation>22. Sampath Kumar A, Maiya AG, Shastry BA, Vaishali K, Ravishankar N, Hazari A, Gundmi S, Jadhav R. Exercise and insulin resistance in type 2 diabetes mellitus: A systematic review and meta-analysis. Ann Phys Rehabil Med. 2019 Mar;62(2):98-103. doi: 10.1016/j.rehab.2018.11.001. Epub 2018 Dec 13. PMID: 30553010.</unstructured_citation></citation><citation key="ref22"><unstructured_citation>23. Rafiee Z., Barzegar M., Sahari M.A., Maherani B. Nano liposomes containing pistachio green hull's phenolic compounds as natural bio-preservatives for mayonnaise. Eur. J. Lipid Sci. Technol. 2018;120.</unstructured_citation></citation><citation key="ref23"><unstructured_citation>24. Rajaei A, Barzegar M, Mobarez AM, Sahari MA, Esfahani ZH. Antioxidant, anti-microbial and antimutagenicity activities of pistachio (Pistachia vera) green hull extract. Food Chem Toxicol. 2010 Jan;48(1):107-12. doi: 10.1016/j.fct.2009.09.023. Epub 2009 Sep 23. PMID: 19781589.</unstructured_citation></citation><citation key="ref24"><unstructured_citation>25. Abolhasani A., Barzegar M., Sahari M.A. Effect of gamma irradiation on the extraction yield, antioxidant, and anti tyrosinase activities of pistachio green hull extract. Radiat. Phys. Chem. 2018;144:373–378.</unstructured_citation></citation><citation key="ref25"><unstructured_citation>26. Hedayati S, Riyahi Malayeri S, Hoseini M. The Effect of Eight Weeks of High and Moderate Intensity Interval Training Along with Aloe Vera Consumption on Serum Levels of Chemerin, Glucose and Insulin in Streptozotocin-induced Diabetic Rats: An Experimental Study. JRUMS. 2018; 17 (9) :801-814. URL: http://journal.rums.ac.ir/article-1-4209-fa.html</unstructured_citation></citation><citation key="ref26"><unstructured_citation>27. Riyahi Malayeri S, Azadniya A, Rasaee M J. Effect of eight-week High intensity interval training nd resveratrol intake on serum adiponectin and resistin in type 2 diabetic rats. Ijdld 2019; 18 (1) :8-1. URL: http://ijdld.tums.ac.ir/article-1-5708-en.html.</unstructured_citation></citation><citation key="ref27"><unstructured_citation>28. Ashtary-Larky D, Lamuchi-Deli N, Kashkooli S, Mombaini D, Alipour M, Khodadadi F, Bagheri R, Dutheil F, Wong A. The effects of exercise training on serum concentrations of chemerin in individuals with overweight and obesity: a systematic review, meta-analysis, and meta-regression of 43 clinical trials. Arch Physiol Biochem. 2023 Oct;129(5):1012-1027. doi: 10.1080/13813455.2021.1892148. Epub 2021 Mar 12. PMID: 33706633.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>The selected rehabilitation exercise program effect on the social development of autistic children - a single-subject study</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Seyedeh Maedeh</given_name><surname> Basamtabar</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Keyvan</given_name><surname> Molanorouzi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Elahe </given_name><surname> Arabameri</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Ali </given_name><surname>Kashi</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>13</day><year>2025</year></publication_date><pages><first_page>11</first_page><last_page>30</last_page></pages><doi_data><doi>10.66224/jspac.49318.5.15.11</doi><resource>http://jspac.etb.iau.ir/en/Article/49318</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item><item crawler="google"><resource>http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item><item crawler="msn"><resource>http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item><item crawler="altavista"><resource>http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item><item crawler="yahoo"><resource>http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item><item crawler="scirus"><resource>http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://jspac.etb.iau.ir/en/Article/Download/49318</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>1. Aarabi, M. A., Abdi, K., Khanjani, M. Saeid Using of Rehabilitation Services, The Main Concern of Autism Spectrum Disorder: What Can Be Done?. Journal of Rehabilitation Sciences &amp; Research, 2020; 7(4): 189-190. doi: 10.30476/jrsr.2020.89004.1121.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2. Ahmadi A, Beh Pagouh A. The effectiveness of sensory-motor, sacial interactive skills and formal behaviors in children with autism spectrum disorders. Journal of behavioral science research, 2017. 14 (2).1.</unstructured_citation></citation><citation key="ref3"><unstructured_citation>3. Asgharzadeh N. The effect of eight weeks of ball games on the communication skills of children with autism. Master's thesis in physical education of Azad University of research Sciences; 2018.</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Association Ap. Diagnostic statistical manual of disorders (DSM-50): American Psychiatric pub; 2014. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>5. Boon-Yasidhi V, Jearnarongrit P, Tulayapichitchock P, Tarugsa J. Adverse effects of risperidone in children with autism spectrum disorders in a naturalistic clinical setting at siriraj hospital, Thailand. Psychiatry J. 2014;2014:136158. doi: 10.1155/2014/136158. Epub 2014 Feb 3. PMID: 24790986; PMCID: PMC3979146.</unstructured_citation></citation><citation key="ref6"><unstructured_citation>6. Grigory Payne, V. Larry D. Khalji, H. khagawi, D. translators. Human motor development, a Life Long approach. Arak university publications, 2006.</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7. •  Hambrick, Marion E., 2017. "Sport communication research: A social network analysis," Sport Management Review, Elsevier, vol. 20(2), pages 170-183.</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8. Hosseinzadeh K, Gamari S, Askari A, Abdizadad K. The effect of games in teaching social skills of autistic children. www.irijournals.com.2022,322-332.</unstructured_citation></citation><citation key="ref9"><unstructured_citation>9. Li, HJ., Chen, CY., Tsai, CH. et al. Utilization and medical costs of outpatient rehabilitation among children with autism spectrum conditions in Taiwan. BMC Health Serv Res 19, 354 (2019). https://doi.org/10.1186/s12913-019-4193-z</unstructured_citation></citation><citation key="ref10"><unstructured_citation>10. Liao, Y., Dillenburger, K., He, W., Xu, Y., &amp; Cai, H. (2020). A Systematic Review of Applied Behavior Analytic Interventions for Children with Autism in Mainland China. Review Journal of Autism and Developmental Disorders, 7(4), 333–351. https://doi.org/10.1007/S40489-020-00196-W</unstructured_citation></citation><citation key="ref11"><unstructured_citation>11. Miller, A.R., Vernon, T.W., Wu, V.L., &amp; Russo, K. (2014). Social Skill Group Interventions for Adolescents with Autism Spectrum Disorders: a Systematic Review. Review Journal of Autism and Developmental Disorders, 1, 254-265.</unstructured_citation></citation><citation key="ref12"><unstructured_citation>12. noferesti A, Hassanabadi H R. (2019). Data analysis in single case experimental design studies. Rooyesh. 7(12), 291-306.</unstructured_citation></citation><citation key="ref13"><unstructured_citation>URL: http://frooyesh.ir/article-1-1567-en.html. </unstructured_citation></citation><citation key="ref14"><unstructured_citation>13. Pashazadeh Azari Z, Hosseini SA, Rassafiani M, Samadi SA, Hoseinzadeh S, Dunn W. Contextual Intervention Adapted for Autism Spectrum Disorder: An RCT of a Parenting Program with Parents of Children Diagnosed with Autism Spectrum Disorder (ASD). Iran J Child Neurol. 2019 Fall;13(4):19-35. PMID: 31645864; PMCID: PMC6789080.</unstructured_citation></citation><citation key="ref15"><unstructured_citation>14. Pourmohamadreza Tajrishi B, Rajabi-Shamami M, Haghgoo H. The Pivotal Response Training (PRT) in Children with Autism Disorder. J Except Educ 2013; 8 (121) :56-61/URL: http://exceptionaleducation.ir/article-1-230-en.html.</unstructured_citation></citation><citation key="ref16"><unstructured_citation>15. Ershad Sarabi R, Hashemi Razini H, Abdollahi M H. Comparing Parental Stress, Parenting Styles, and Social Problem Solving in Mothers of Children with Autism Spectrum Disorder, ADHD, and Typically Developing Children . J Child Ment Health 2018; 4 (4) :165-179</unstructured_citation></citation><citation key="ref17"><unstructured_citation>URL: http://childmentalhealth.ir/article-1-280-en.html. </unstructured_citation></citation><citation key="ref18"><unstructured_citation>16. Soleimany Adriany S, Sadeghi Hosnije AH, Zerehpoush A, Rabie M, Abedi A, Esmaeeli S. Effectiveness of rhythmic games on social skills of children with attention deficit hyperactive disorder. J Gorgan Univ Med Sci 2016; 18 (2) :91-96-URL: http://goums.ac.ir/journal/article-1-2767-en.html.</unstructured_citation></citation><citation key="ref19"><unstructured_citation>17. Stevenson, B. S., &amp; Correa, V. I. (2019). Applied behavior analysis, students with autism, and the requirement to provide a free appropriate public education. Journal of Disability Policy Studies, 29, 206-215. (Original DOI: https://doi.org/10.1177/1044207318799644)</unstructured_citation></citation><citation key="ref20"><unstructured_citation>18. Syriopoulou-Delli CK, Gkiolnta E. Review of assistive technology in the training of children with autism spectrum disorders. Int J Dev Disabil. 2020 Jan 20;68(2):73-85. doi: 10.1080/20473869.2019.1706333. PMID: 35309695; PMCID: PMC8928843.</unstructured_citation></citation><citation key="ref21"><unstructured_citation>19.Tabatabai S, Shabazi M, Bagherzade F. The relationship between motor development and Social development in children 6 to 20 years in Mashhad. Sports of Motor Development and Learning Journal; 2017. 2 (8).</unstructured_citation></citation><citation key="ref22"><unstructured_citation>20. Taziki T, Hasanzadeh S, Afrour Gh, Chobari Bonab B. Ghasem zadeh S. The effectiveness of intervention using pets and pets on the cognitive, social, and behavior of children in autism spectrum.</unstructured_citation></citation><citation key="ref23"><unstructured_citation>21. Tonge BJ, Bull K, Brereton A, Wilson R. A review of evidence-based early intervention for behavioural problems in children with autism spectrum disorder: the core components of effective programs, child-focused interventions and comprehensive treatment models. Curr Opin Psychiatry. 2014 Mar;27(2):158-65. doi: 10.1097/YCO.0000000000000043. PMID: 24452070.</unstructured_citation></citation><citation key="ref24"><unstructured_citation>22. Varogiz, T. Teaching and using signs of social communication for minors with autism spectrum disorders and similar problems. Translated Sajjadian M, Shahrivar. Z. Tehran. Arjmand. 2017. </unstructured_citation></citation><citation key="ref25"><unstructured_citation>23. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111.</unstructured_citation></citation><citation key="ref26"><unstructured_citation>24. Vakilizade N, Malekpour M, Faramarzi A. Investigating the effect of joint attention training on the degree of social initiation responding of children with autism spectrum disorder : single-subject research. The journal of paramedical science and rehabilitation. 2016, 6(3): 68-79.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>The effect of resistance training and testosterone consumption on Caspse3 gene expression in the heart tissue of male Wistar rats</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Reyhane</given_name><surname>Ghanei</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>َAbdolali</given_name><surname>Banaeifar</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Sajad</given_name><surname>Arshadi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Ali</given_name><surname>Gorzi</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>13</day><year>2025</year></publication_date><pages><first_page>1</first_page><last_page>10</last_page></pages><doi_data><doi>10.66224/jspac.49796.5.15.1</doi><resource>http://jspac.etb.iau.ir/en/Article/49796</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item><item crawler="google"><resource>http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item><item crawler="msn"><resource>http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item><item crawler="altavista"><resource>http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item><item crawler="yahoo"><resource>http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item><item crawler="scirus"><resource>http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://jspac.etb.iau.ir/en/Article/Download/49796</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>1. Abdi Hamzekolai H, Gaeini AA, Kordi MR, Dabidi Roshan V. The monitoring of prolonged effects of anabolic-androgenic steroid on cardiovascular indices in former bodybuilders. Journal of Practical Studies of Biosciences in Sport. 2016 Aug 22;4(7):55-  66.  https://doi.org/10.22077/jpsbs.2016.383</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2. Baytugan NZ, Kandemir HÇ. The effect of anabolic androgenic steroids on heart rate recovery index and electrocardiographic parameters in male bodybuilders. Journal of Electrocardiology. 2024 May 1;84:95-9. DOI: 10.1016/j.jelectrocard.2024.03.015 PMID: 38579637.</unstructured_citation></citation><citation key="ref3"><unstructured_citation>3.Bond, P., Smit, D.L. and de Ronde, W., 2022. Anabolic–androgenic steroids: How do they work and what are the risks?. Frontiers in Endocrinology, 13, p.1059473. PMCID: PMC9837614 DOI: 10.3389/fendo.2022.1059473</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Hammoud S, van den Bemt BJ, Jaber A, Kurdi M. Chronic anabolic androgenic steroid administration reduces global longitudinal strain among off-cycle bodybuilders. International Journal of Cardiology. 2023 Jun 15;381:153-60. DOI: 10.1016/j.ijcard.2023.03.057 PMID: 37003371</unstructured_citation></citation><citation key="ref5"><unstructured_citation>5. Sagoe D, Andreassen CS, Pallesen S. The aetiology and trajectory of anabolic-androgenic steroid use initiation: a systematic review and synthesis of qualitative research. Substance abuse treatment, prevention, and policy. 2014 Dec;9:1-4.DOI: 10.1186/1747-597X-9-27 PMCID: PMC4091955. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>6. Goldman A, Basaria S. Adverse health effects of androgen use. Molecular and cellular endocrinology. 2018 Mar 15;464:46-55 DOI: 10.1016/j.mce.2017.06.009. PMID: 28606866</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7. Lopez P, Radaelli R, Taaffe DR, Newton RU, Galvão DA, Trajano GS, Teodoro JL, Kraemer WJ, Häkkinen K, Pinto RS. Resistance training load effects on muscle hypertrophy and strength gain: systematic review and network meta-analysis. Medicine and science in sports and exercise. 2020 Dec 26;53(6):1206.  DOI: 10.1249/MSS.0000000000002585 PMCID: PMC8126497</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8.  Zaugg M, Jamali NZ, Lucchinetti E, Xu W, Alam M, Shafiq SA, Siddiqui MA. Anabolic‐androgenic steroids induce apoptotic cell death in adult rat ventricular myocytes. Journal of cellular physiology. 2001 Apr;187(1):90-5. DOI: 10.1002/1097-4652(2001)9999:9999&lt;00::AID-JCP1057&gt;3.0.CO;2-Y PMID: 11241353</unstructured_citation></citation><citation key="ref9"><unstructured_citation>1.	Momoh R. Anabo</unstructured_citation></citation><citation key="ref10"><unstructured_citation>9. Momoh R. Anabolic-androgenic steroid abuse causes cardiac dysfunction. American Journal of Men's Health. 2024 Apr;18(2):15579883241249647. DOI: 10.1177/15579883241249647 PMCID: PMC11062222</unstructured_citation></citation><citation key="ref11"><unstructured_citation>10. Angelini G, Pollice P, Lepera ME, Favale S, Caiati C. Irreversible dilated cardiomyopathy after abuse of anabolic androgenic steroids: A case report and literature review. Biomedical Journal of Scientific &amp; Technical Research. 2019;21:16106-11. DOI: 10.26717/BJSTR.2019.21.003648</unstructured_citation></citation><citation key="ref12"><unstructured_citation>11. Cecchi R, Muciaccia B, Ciallella C, Di Luca NM, Kimura A, Sestili C, Nosaka M, Kondo T. Ventricular androgenic-anabolic steroid-related remodeling: an immunohistochemical study. International journal of legal medicine. 2017 Nov;131:1589-95. DOI: 10.1007/s00414-017-1589-3 PMID: 28432434</unstructured_citation></citation><citation key="ref13"><unstructured_citation>12. Santagostino SF, Assenmacher CA, Tarrant JC, Adedeji AO, Radaelli E. Mechanisms of regulated cell death: current perspectives. Veterinary Pathology. 2021 Jul;58(4):596-623. DOI: 10.1177/03009858211005537 PMID: 34039100</unstructured_citation></citation><citation key="ref14"><unstructured_citation>13. Würstle ML, Laussmann MA, Rehm M. The central role of initiator caspase-9 in apoptosis signal transduction and the regulation of its activation and activity on the apoptosome. Experimental cell research. 2012 Jul 1;318(11):1213-20. DOI: 10.1016/j.yexcr.2012.02.013 PMID: 22406265</unstructured_citation></citation><citation key="ref15"><unstructured_citation>14. Moore SC, Lee IM, Weiderpass E, Campbell PT, Sampson JN, Kitahara CM, Keadle SK, Arem H, De Gonzalez AB, Hartge P, Adami HO. Association of leisure-time physical activity with risk of 26 types of cancer in 1.44 million adults. JAMA internal medicine. 2016 Jun 1;176(6):816-25. DOI: 10.1001/jamainternmed.2016.1548 PMCID: PMC5812009</unstructured_citation></citation><citation key="ref16"><unstructured_citation>15. Liu WY, He W, Li H. Exhaustive Training Increases Uncoupling Protein 2 Expression and Decreases Bcl‐2/Bax Ratio in Rat Skeletal Muscle. Oxidative medicine and cellular longevity. 2013;2013(1):780719. DOI: 10.1155/2013/780719 PMCID: PMC3556863</unstructured_citation></citation><citation key="ref17"><unstructured_citation>16. Vainshtein A, Kazak L, Hood DA. Effects of endurance training on apoptotic susceptibility in striated muscle. Journal of applied physiology. 2011 Jun;110(6):1638-45. DOI: 10.1152/japplphysiol.00020.2011 PMID: 21474699</unstructured_citation></citation><citation key="ref18"><unstructured_citation>17. Kara M, Ozcagli E, Kotil T, Alpertunga B. Effects of stanozolol on apoptosis mechanisms and oxidative stress in rat cardiac tissue. Steroids. 2018 Jun 1;134:96-100. DOI: 10.1016/j.steroids.2018.02.004 PMID: 29477345</unstructured_citation></citation><citation key="ref19"><unstructured_citation>18. Hassan AF, Kamal MM. Effect of exercise training and anabolic androgenic steroids on hemodynamics, glycogen content, angiogenesis and apoptosis of cardiac muscle in adult male rats. International journal of health sciences. 2013 Jan;7(1):47.  DOI: 10.12816/0006020 PMCID: PMC3612416</unstructured_citation></citation><citation key="ref20"><unstructured_citation>19. El-hanbuli HM, Abo-sief AF, Mostafa T. Protective effect of silymarin on the testes of rats treated with anabolic androgenic steroid: A biochemical, histological, histochemical and immunohistochemical study. Histol Histopathol. 2017;4(10).</unstructured_citation></citation><citation key="ref21"><unstructured_citation>20. Man SM, Kanneganti TD. Converging roles of caspases in inflammasome activation, cell death and innate immunity. Nature Reviews Immunology. 2016 Jan;16(1):7-21. DOI: 10.1038/nri.2015.7 PMCID: PMC4915362</unstructured_citation></citation><citation key="ref22"><unstructured_citation>21. Banaeifar A, Gorzi A, Hedayati M, Nabiollahi Z, Rahmani-Moghaddam N, Khantan M. Effect of an 8-week resistance training program on acetylcholinesterase activity in rat muscle. Feyz Journal of Kashan University of Medical Sciences. 2012 Jan 1;16(1).</unstructured_citation></citation><citation key="ref23"><unstructured_citation>22. Joksimović J, Selaković D, Jakovljević V, Mihailović V, Katanić J, Boroja T, Rosić G. Alterations of the oxidative status in rat hippocampus and prodepressant effect of chronic testosterone enanthate administration. Molecular and cellular biochemistry. 2017 Sep;433:41-50. DOI: 10.1007/s11010-017-3014-0 PMID: 28342008</unstructured_citation></citation><citation key="ref24"><unstructured_citation>23. Ho TJ, Huang CC, Huang CY, Lin WT. Fasudil, a Rho-kinase inhibitor, protects against excessive endurance exercise training-induced cardiac hypertrophy, apoptosis and fibrosis in rats. European journal of applied physiology. 2012 Aug;112:2943-55. DOI: 10.1007/s00421-011-2270-z PMID: 22160250</unstructured_citation></citation><citation key="ref25"><unstructured_citation>24. Sharafi H, Rahimi R. The effect of resistance exercise on p53, caspase-9, and caspase-3 in trained and untrained men. The Journal of Strength &amp; Conditioning Research. 2012 Apr 1;26(4):1142-8. DOI: 10.1519/JSC.0b013e31822e58e5 PMID: 22446679</unstructured_citation></citation><citation key="ref26"><unstructured_citation>25. Bouviere J, Fortunato RS, Dupuy C, Werneck-de-Castro JP, Carvalho DP, Louzada RA. Exercise-stimulated ROS sensitive signaling pathways in skeletal muscle. Antioxidants. 2021 Mar 30;10(4):537.  DOI: 10.3390/antiox10040537 PMCID: PMC8066165</unstructured_citation></citation><citation key="ref27"><unstructured_citation>26. Jokar M, Moghadam MS. Effect of 4 weeks of high-intensity interval training on P53 and caspase-3 proteins content in the heart muscle tissue of rats with type 1 diabetes. Journal of Shahid Sadoughi University of Medical Sciences. 2021.</unstructured_citation></citation><citation key="ref28"><unstructured_citation>27. Huang CY, Lin YY, Hsu CC, Cheng SM, Shyu WC, Ting H, Yang AL, Ho TJ, Lee SD. Antiapoptotic effect of exercise training on ovariectomized rat hearts. Journal of applied physiology. 2016 Aug 1;121(2):457-65. DOI: 10.1152/japplphysiol.01042.2015 PMID: 27339185</unstructured_citation></citation><citation key="ref29"><unstructured_citation>28. Papamitsou T, Barlagiannis D, Papaliagkas V, Kotanidou E, Dermentzopoulou-Theodoridou M. Testosterone-induced hypertrophy, fibrosis and apoptosis of cardiac cells–an ultrastructural and immunohistochemical study. Medical science monitor: international medical journal of experimental and clinical research. 2011 Sep 1;17(9):BR266.  DOI: 10.12659/msm.881930 PMCID: PMC3560513</unstructured_citation></citation><citation key="ref30"><unstructured_citation>29. Fanton L, Belhani D, Vaillant F, Tabib A, Gomez L, Descotes J, Dehina L, Bui-Xuan B, Malicier D, Timour Q. Heart lesions associated with anabolic steroid abuse: comparison of post-mortem findings in athletes and norethandrolone-induced lesions in rabbits. Experimental and toxicologic Pathology. 2009 Jul 1;61(4):317-23. DOI: 10.1016/j.etp.2008.09.007 PMID: 19027274</unstructured_citation></citation><citation key="ref31"><unstructured_citation>30. D'Errico S, Di Battista B, Di Paolo M, Fiore C, Pomara C. Renal heat shock proteins over-expression due to anabolic androgenic steroids abuse. Mini Reviews in Medicinal Chemistry. 2011 May 1;11(5):446-50. DOI: 10.2174/138955711795445934 PMID: 21443506</unstructured_citation></citation><citation key="ref32"><unstructured_citation>31. do Nascimento AM, de Lima EM, Boëchat GA, Meyrelles SD, Bissoli NS, Lenz D, Endringer DC, de Andrade TU. Testosterone induces apoptosis in cardiomyocytes by increasing proapoptotic signaling involving tumor necrosis factor-α and renin angiotensin system. Human &amp; Experimental Toxicology. 2015 Nov;34(11):1139-47. DOI: 10.1177/0960327115571766 PMID: 25673179. </unstructured_citation></citation><citation key="ref33"><unstructured_citation>32. M Vicencio J, Estrada M, Galvis D, Bravo R, E Contreras A, Rotter D, Szabadkai G, A Hill J, A Rothermel B, Jaimovich E, Lavandero S. Anabolic androgenic steroids and intracellular calcium signaling: a mini review on mechanisms and physiological implications. Mini reviews in medicinal chemistry. 2011 May 1;11(5):390-8.  DOI: 10.2174/138955711795445880 PMCID: PMC4416211</unstructured_citation></citation><citation key="ref34"><unstructured_citation>33. Liu JD, Wu YQ. Anabolic-androgenic steroids and cardiovascular risk. Chinese medical journal. 2019 Sep 20;132(18):2229-36. DOI: 10.1097/CM9.0000000000000407 PMCID: PMC6797160</unstructured_citation></citation><citation key="ref35"><unstructured_citation>34. Suvakov S, Bonner E, Nikolic V, Jerotic D, Simic TP, Garovic VD, Lopez-Campos G, McClements L. Overlapping pathogenic signalling pathways and biomarkers in preeclampsia and cardiovascular disease. Pregnancy Hypertension. 2020 Apr 1;20:131-6. DOI: 10.1016/j.preghy.2020.03.011 PMID: 32299060</unstructured_citation></citation><citation key="ref36"><unstructured_citation>35. Vasilaki F, Tsitsimpikou C, Tsarouhas K, Germanakis I, Tzardi M, Kavvalakis M, Ozcagli E, Kouretas D, Tsatsakis AM. Cardiotoxicity in rabbits after long-term nandrolone decanoate administration. Toxicol Lett. 2016 Jan 22;241:143-51. doi: 10.1016/j.toxlet.2015.10.026. Epub 2015 Nov 2. PMID: 26541207.</unstructured_citation></citation><citation key="ref37"><unstructured_citation>36. Ashtary-Larky D, Kashkooli S, Bagheri R, Lamuchi-Deli N, Alipour M, Mombaini D, Baker JS, Ramezani Ahmadi A, Wong A. The effect of exercise training on serum concentrations of chemerin in patients with metabolic diseases: a systematic review and meta-analysis. Arch Physiol Biochem. 2023 Oct;129(5):1028-1037. doi: 10.1080/13813455.2021.1892149. Epub 2021 Mar 2. PMID: 33651961.</unstructured_citation></citation><citation key="ref38"><unstructured_citation>37. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Analysis of Physical fitness  and Anthropometric Fitness with Respect to Ranking in the Iranian National Table Tennis Team Selection</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Mehran</given_name><surname>Ahadi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Reza</given_name><surname>Behdari</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Behzad</given_name><surname>Divkan</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>13</day><year>2025</year></publication_date><pages><first_page>72</first_page><last_page>84</last_page></pages><doi_data><doi>10.66224/jspac.50489.5.15.72</doi><resource>http://jspac.etb.iau.ir/en/Article/50489</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item><item crawler="google"><resource>http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item><item crawler="msn"><resource>http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item><item crawler="altavista"><resource>http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item><item crawler="yahoo"><resource>http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item><item crawler="scirus"><resource>http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://jspac.etb.iau.ir/en/Article/Download/50489</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>1.Pradas, Francisco, Ana de la Torre, Luis Carrasco, Diego Muñoz, Javier Courel-Ibáñez, and José Antonio González-Jurado. 2021. "Anthropometric Profiles in Table Tennis Players: Analysis of Sex, Age, and Ranking" Applied Sciences 11, no. 2: 876. https://doi.org/10.3390/app11020876</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2.Bencke, J., Damsgaard, R., Saekmose, A., Jorgensen, P., Jorgesen, K., &amp; Klausen, K. (2002). Anaerobic power and muscle strength characteristics of 11 year old elite and non-elite boys and girls from gymnastics, team handball, tennis and swimming. Scandinavian Journal of Medicine and Science in Sports, 12, 171–178.</unstructured_citation></citation><citation key="ref3"><unstructured_citation>3.Kondrič M, Zagatto AM, Sekulić D. The physiological demands of table tennis: a review. J Sports Sci Med. 2013 Sep 1;12(3):362-70. PMID: 24149139; PMCID: PMC3772576.</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111.</unstructured_citation></citation><citation key="ref5"><unstructured_citation>5.Zagatto, A. M. et al. (2017) ‘Energetic demand and physical conditioning of table tennis players. A study review’, Journal of Sports Sciences, 36(7), pp. 724–731. doi: 10.1080/02640414.2017.1335957.</unstructured_citation></citation><citation key="ref6"><unstructured_citation>6.Picabea, Jon Mikel, Jesús Cámara, and Javier Yanci. 2021. "Physical Fitness Profiling of National Category Table Tennis Players: Implication for Health and Performance" International Journal of Environmental Research and Public Health 18, no. 17: 9362. https://doi.org/10.3390/ijerph18179362</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7.Pradas F, Toro-Román V, de la Torre A, Moreno-Azze A, Gutiérrez-Betancur JF, Ortega-Zayas MÁ. Analysis of Specific Physical Fitness in High-Level Table Tennis Players-Sex Differences. Int J Environ Res Public Health. 2022 Apr 22;19(9):5119. doi: 10.3390/ijerph19095119. PMID: 35564512; PMCID: PMC9105729.</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8. Ghoochani, S., Riyahi Malayeri, S., Daneshjo, A. Short-term effect of Citrulline Malate supplement on LDH and Lactate levels and Resistance Exercise Performance. Journal of Military Medicine, 2022; 22(4): 154-162.</unstructured_citation></citation><citation key="ref9"><unstructured_citation>9.Zagatto AM, Morel EA, Gobatto CA. Physiological responses and characteristics of table tennis matches determined in official tournaments. J Strength Cond Res. 2010 Apr;24(4):942-9. doi: 10.1519/JSC.0b013e3181cb7003. PMID: 20300034.</unstructured_citation></citation><citation key="ref10"><unstructured_citation>10.Milioni, F., Leite, J., Beneke, R., de Poli, R., Papoti, M., and Zagatto, A. M. (2018). Table tennis playing styles require specific energy systems demands. PLoS One 13:e0199985. doi: 10.1371/journal.pone.0199985</unstructured_citation></citation><citation key="ref11"><unstructured_citation>11.Pluta B, Galas S, Krzykała M, Andrzejewski M, Podciechowska K. Somatic Characteristics and Special Motor Fitness of Young Top-Level Polish Table Tennis Players. Int J Environ Res Public Health. 2021 May 16;18(10):5279. doi: 10.3390/ijerph18105279. PMID: 34065622; PMCID: PMC8156341.</unstructured_citation></citation><citation key="ref12"><unstructured_citation>12.Sánchez-Muñoz C, Muros JJ, Cañas J, Courel-Ibáñez J, Sánchez-Alcaraz BJ, Zabala M. Anthropometric and Physical Fitness Profiles of World-Class Male Padel Players. Int J Environ Res Public Health. 2020 Jan 13;17(2):508. doi: 10.3390/ijerph17020508. PMID: 31941164; PMCID: PMC7014060.</unstructured_citation></citation><citation key="ref13"><unstructured_citation>13.Robertson K, Pion J, Mostaert M, Norjali Wazir MRW, Kramer T, Faber IR, Vansteenkiste P, Lenoir M. A coaches' perspective on the contribution of anthropometry, physical performance, and motor coordination in racquet sports. J Sports Sci. 2018 Dec;36(23):2706-2715. doi: 10.1080/02640414.2018.1441941. Epub 2018 Feb 21. PMID: 29465332.</unstructured_citation></citation><citation key="ref14"><unstructured_citation>14.Picabea, Jon Mikel, Jesús Cámara, and Javier Yanci. 2021. "Physical Fitness Profiling of National Category Table Tennis Players: Implication for Health and Performance" International Journal of Environmental Research and Public Health 18, no. 17: 9362. https://doi.org/10.3390/ijerph18179362</unstructured_citation></citation><citation key="ref15"><unstructured_citation>15.Pradas F, de la Torre A, Castellar C, Toro-Román V. Physiological Profile, Metabolic Response and Temporal Structure in Elite Individual Table Tennis: Differences According to Gender. Int J Environ Res Public Health. 2021 Nov 12;18(22):11898. doi: 10.3390/ijerph182211898. PMID: 34831651; PMCID: PMC8623913.</unstructured_citation></citation><citation key="ref16"><unstructured_citation>16.Zagatto, A. M., Leite, J. V., Papoti, M., and Beneke, R. (2016). Energetics of table tennis and table tennis-specific exercise testing. Int. J. Sports Physiol. Perform. 11, 1012–1017. doi: 10.1123/ijspp.2015-0746</unstructured_citation></citation><citation key="ref17"><unstructured_citation>17.Pradas F, Sánchez-Pay A, Muñoz D, Sánchez-Alcaraz BJ. Gender Differences in Physical Fitness Characteristics in Professional Padel Players. Int J Environ Res Public Health. 2021 Jun 2;18(11):5967. doi: 10.3390/ijerph18115967. PMID: 34199473; PMCID: PMC8199605.</unstructured_citation></citation><citation key="ref18"><unstructured_citation>18.Ozaeta, Eñaut, Uxue Fernández-Lasa, Inmaculada Martínez-Aldama, Ruth Cayero, and Daniel Castillo. 2022. "Match Physical and Physiological Response of Amateur Soccer Referees: A Comparison between Halves and Match Periods" International Journal of Environmental Research and Public Health 19, no. 3: 1306. https://doi.org/10.3390/ijerph19031306</unstructured_citation></citation><citation key="ref19"><unstructured_citation>19.Cádiz Gallardo MP, Pradas de la Fuente F, Moreno-Azze A, Carrasco Páez L. Physiological demands of racket sports: a systematic review. Front Psychol. 2023 Mar 30;14:1149295. doi: 10.3389/fpsyg.2023.1149295. PMID: 37063547; PMCID: PMC10101231.</unstructured_citation></citation><citation key="ref20"><unstructured_citation>20.Ooi CH, Tan A, Ahmad A, Kwong KW, Sompong R, Ghazali KA, Liew SL, Chai WJ, Thompson MW. Physiological characteristics of elite and sub-elite badminton players. J Sports Sci. 2009 Dec;27(14):1591-9. doi: 10.1080/02640410903352907. PMID: 19967588.</unstructured_citation></citation><citation key="ref21"><unstructured_citation>21.Alen, Gd. (1986). Physiologic Characteristics of Elite Table Tennis Players and Their Responses to Hige Level Competitions, ASI, Journal Science And Medicine. 32, 68-94.</unstructured_citation></citation><citation key="ref22"><unstructured_citation>22.Fernandez-Fernandez, J, Mendez-Villanueva, A, Fernandez-Garcia, B, and Terrados, N. Match activity and physiological responses during a junior female singles tennis tournament. Br J Sports Med 41: 711– 716, 2007.</unstructured_citation></citation><citation key="ref23"><unstructured_citation>23.Pluta, B., Galas, S., Krzykała, M., Andrzejewski, M., and Podciechowska, K. (2021). Somatic characteristics and special motor fitness of young top-level polish table tennis players. Int. J. Environ. Res. Public Health 18:5729. doi: 10.3390/ijerph18105279</unstructured_citation></citation><citation key="ref24"><unstructured_citation>24.Sperlich, B., Koehler, K., Holmberg, H.-C., Zinner, C., and Mester, J. (2011). Table tennis: cardiorespiratory and metabolic analysis of match and exercise in elite junior national players. Int. J. Sports Physiol. Perform. 6, 234–242. doi: 10.1123/ijspp.6.2.234</unstructured_citation></citation><citation key="ref25"><unstructured_citation>25.Torre, A., Gonzalez-Jurado, J., Vicente-Rodríguez, G., Castellar, C., and Pradas, F. (2022). Analysis of the physiological, metabolic and structural profile of table tennis from a gender perspective. J. Sport Health Res. 14, 235–246.</unstructured_citation></citation><citation key="ref26"><unstructured_citation>26.LE Mansec Y, Seve C, Jubeau M. Neuromuscular fatigue and time motion analysis during a table tennis competition. J Sports Med Phys Fitness. 2017 Apr;57(4):353-361. doi: 10.23736/S0022-4707.16.06129-6. Epub 2016 Mar 24. PMID: 27012311.</unstructured_citation></citation><citation key="ref27"><unstructured_citation>27.Leite JV, Barbieri FA, Miyagi W, Malta ES, Zagatto AM. Influence of Game Evolution and the Phase of Competition on Temporal Game Structure in High-Level Table Tennis Tournaments. J Hum Kinet. 2017 Jan 30;55:55-63. doi: 10.1515/hukin-2016-0048. PMID: 28210338; PMCID: PMC5304269.</unstructured_citation></citation><citation key="ref28"><unstructured_citation>28.Torre, A., Gonzalez-Jurado, J., Vicente-Rodríguez, G., Castellar, C., and Pradas, F. (2022). Analysis of the physiological, metabolic and structural profile of table tennis from a gender perspective. J. Sport Health Res. 14, 235–246.</unstructured_citation></citation><citation key="ref29"><unstructured_citation>29.Jones, T. W., Williams, B. K., Kilgallen, C., Horobeanu, C., Shillabeer, B. C., Murray, A., &amp; Cardinale, M. (2018). A review of the performance requirements of squash. International Journal of Sports Science &amp; Coaching, 13(6), 1223-1232. https://doi.org/10.1177/1747954118792492 (Original work published 2018)</unstructured_citation></citation><citation key="ref30"><unstructured_citation>30.García-Benítez S, Courel-Ibáñez J, Pérez-Bilbao T, Felipe JL. Game Responses During Young Padel Match Play: Age and Sex Comparisons. J Strength Cond Res. 2018 Apr;32(4):1144-1149. doi: 10.1519/JSC.0000000000001951. Erratum in: J Strength Cond Res. 2018 Aug;32(8):e11. doi: 10.1519/JSC.0000000000002775. PMID: 29112057.</unstructured_citation></citation><citation key="ref31"><unstructured_citation>31.Fett J, Ulbricht A, Ferrauti A. Impact of Physical Performance and Anthropometric Characteristics on Serve Velocity in Elite Junior Tennis Players. J Strength Cond Res. 2020 Jan;34(1):192-202. doi: 10.1519/JSC.0000000000002641. PMID: 29912079.</unstructured_citation></citation><citation key="ref32"><unstructured_citation>32. Riyahi Malayeri, S., Saei, M. Changes in Insulin resistance and serum levels of resistin after 10 weeks high intensity interval training in overweight and obese men.. Sport Physiology &amp; Management Investigations, 2019; 10(4): 31-42.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>The effect of aerobic exercise on the oxidative stress of brown adipose tissue</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Nazanin </given_name><surname> Rahmannezhad</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Mohammad Ali </given_name><surname>Azarbayjani</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Saleh </given_name><surname>Rahmati Ahmadabad </surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Maghsoud</given_name><surname>Peeri</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Hoseyn </given_name><surname>fatolahi </surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>13</day><year>2025</year></publication_date><pages><first_page>62</first_page><last_page>71</last_page></pages><doi_data><doi>10.66224/jspac.50619.5.15.62</doi><resource>http://jspac.etb.iau.ir/en/Article/50619</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item><item crawler="google"><resource>http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item><item crawler="msn"><resource>http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item><item crawler="altavista"><resource>http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item><item crawler="yahoo"><resource>http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item><item crawler="scirus"><resource>http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://jspac.etb.iau.ir/en/Article/Download/50619</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>1. Mota de Sá P, Richard AJ, Hang H, Stephens JM. Transcriptional Regulation of Adipogenesis. Compr Physiol. 2017 Mar 16;7(2):635-674. doi: 10.1002/cphy.c160022. PMID: 28333384.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>2. White U. Adipose tissue expansion in obesity, health, and disease. Front Cell Dev Biol. 2023 Apr 26; 11:1188844. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>3. Takhti M, Riyahi Malayeri S, Behdari R. Comparison of two methods of concurrent training and ginger intake on visfatin and metabolic syndrome in overweight women. Razi Journal of Medical Sciences. 2020;27(9):98-111.</unstructured_citation></citation><citation key="ref4"><unstructured_citation>4. Avgerinos KI, Spyrou N, Mantzoros CS, Dalamaga M. Obesity and cancer risk: Emerging biological mechanisms and perspectives. Metabolism. 2019 Mar;92:121-135. doi: 10.1016/j.metabol.2018.11.001. Epub 2018 Nov 13. PMID: 30445141.</unstructured_citation></citation><citation key="ref5"><unstructured_citation>5. Hedayati S, Riyahi Malayeri S, Hoseini M. The Effect of Eight Weeks of High and Moderate Intensity Interval Training Along with Aloe Vera Consumption on Serum Levels of Chemerin, Glucose and Insulin in Streptozotocin-induced Diabetic Rats: An Experimental Study. JRUMS. 2018; 17 (9) :801-814. URL: http://journal.rums.ac.ir/article-1-4209-fa.html.</unstructured_citation></citation><citation key="ref6"><unstructured_citation>6. Harvey I, Boudreau A, Stephens JM. Adipose tissue in health and disease. Open Biol. 2020 Dec;10(12):200291. doi: 10.1098/rsob.200291. Epub 2020 Dec 9. PMID: 33292104; PMCID: PMC7776562.</unstructured_citation></citation><citation key="ref7"><unstructured_citation>7. Ghesmati Z, Rashid M, Fayezi S, Gieseler F, Alizadeh E, Darabi M. An update on the secretory functions of brown, white, and beige adipose tissue: Towards therapeutic applications. Rev Endocr Metab Disord. 2024 Apr;25(2):279-308. doi: 10.1007/s11154-023-09850-0. Epub 2023 Dec 5. PMID: 38051471; PMCID: PMC10942928.</unstructured_citation></citation><citation key="ref8"><unstructured_citation>8. McNeill BT, Suchacki KJ, Stimson RH. MECHANISMS IN ENDOCRINOLOGY: Human brown adipose tissue as a therapeutic target: warming up or cooling down? Eur J Endocrinol. 2021 May 4;184(6):R243-R259. doi: 10.1530/EJE-20-1439. PMID: 33729178; PMCID: PMC8111330.</unstructured_citation></citation><citation key="ref9"><unstructured_citation>9. Kajimura S, Saito M. A new era in brown adipose tissue biology: molecular control of brown fat development and energy homeostasis. Annu Rev Physiol. 2014;76:225-49. doi: 10.1146/annurev-physiol-021113-170252. Epub 2013 Nov 4. PMID: 24188710; PMCID: PMC4090362.</unstructured_citation></citation><citation key="ref10"><unstructured_citation>10. Maharjan BR, Martinez-Huenchullan SF, Mclennan SV, Twigg SM, Williams PF. Exercise induces favorable metabolic changes in white adipose tissue preventing high-fat diet obesity. Physiol Rep. 2021 Aug;9(16):e14929. doi: 10.14814/phy2.14929. PMID: 34405572; PMCID: PMC8371352.</unstructured_citation></citation><citation key="ref11"><unstructured_citation>11. Meng Q, Su CH. The Impact of Physical Exercise on Oxidative and Nitrosative Stress: Balancing the Benefits and Risks. Antioxidants (Basel). 2024 May 7;13(5):573. doi: 10.3390/antiox13050573. PMID: 38790678; PMCID: PMC11118032. </unstructured_citation></citation><citation key="ref12"><unstructured_citation>12. Luo B, Xiang D, Ji X, Chen X, Li R, Zhang S, Meng Y, Nieman DC, Chen P. The anti-inflammatory effects of exercise on autoimmune diseases: A 20-year systematic review. J Sport Health Sci. 2024 May;13(3):353-367. doi: 10.1016/j.jshs.2024.02.002. Epub 2024 Feb 9. PMID: 38341137; PMCID: PMC11117003.</unstructured_citation></citation><citation key="ref13"><unstructured_citation>13. Sies H. Oxidative stress: a concept in redox biology and medicine. Redox Biol. 2015;4:180-3. doi: 10.1016/j.redox.2015.01.002. Epub 2015 Jan 3. PMID: 25588755; PMCID: PMC4309861.</unstructured_citation></citation><citation key="ref14"><unstructured_citation>14. Jones DP. Radical-free biology of oxidative stress. Am J Physiol Cell Physiol. 2008 Oct;295(4):C849-68. doi: 10.1152/ajpcell.00283.2008. Epub 2008 Aug 6. PMID: 18684987; PMCID: PMC2575825.</unstructured_citation></citation><citation key="ref15"><unstructured_citation>15. Shimizu I, Aprahamian T, Kikuchi R, Shimizu A, Papanicolaou KN, MacLauchlan S, Maruyama S, Walsh K. Vascular rarefaction mediates whitening of brown fat in obesity. J Clin Invest. 2014 May;124(5):2099-112. doi: 10.1172/JCI71643. Epub 2014 Apr 8. PMID: 24713652; PMCID: PMC4001539.</unstructured_citation></citation><citation key="ref16"><unstructured_citation>16. Graja A, Schulz TJ. Mechanisms of aging-related impairment of brown adipocyte development and function. Gerontology. 2015;61(3):211-7. doi: 10.1159/000366557. Epub 2014 Dec 20. PMID: 25531079.</unstructured_citation></citation><citation key="ref17"><unstructured_citation>17. Ro SH, Nam M, Jang I, Park HW, Park H, Semple IA, Kim M, Kim JS, Park H, Einat P, Damari G, Golikov M, Feinstein E, Lee JH. Sestrin2 inhibits uncoupling protein 1 expression through suppressing reactive oxygen species. Proc Natl Acad Sci U S A. 2014 May 27;111(21):7849-54. doi: 10.1073/pnas.1401787111. Epub 2014 May 13. PMID: 24825887; PMCID: PMC4040599.</unstructured_citation></citation><citation key="ref18"><unstructured_citation>26. Narasimhan M, Hong J, Atieno N, Muthusamy VR, Davidson CJ, Abu-Rmaileh N, Richardson RS, Gomes AV, Hoidal JR, Rajasekaran NS. Nrf2 deficiency promotes apoptosis and impairs PAX7/MyoD expression in aging skeletal muscle cells. Free Radic Biol Med. 2014 Jun;71:402-414. doi: 10.1016/j.freeradbiomed.2014.02.023. Epub 2014 Mar 6. PMID: 24613379; PMCID: PMC4493911.</unstructured_citation></citation><citation key="ref19"><unstructured_citation>27. Priestley JR, Kautenburg KE, Casati MC, Endres BT, Geurts AM, Lombard JH. The NRF2 knockout rat: a new animal model to study endothelial dysfunction, oxidant stress, and microvascular rarefaction. Am J Physiol Heart Circ Physiol. 2016 Feb 15;310(4):H478-87. doi: 10.1152/ajpheart.00586.2015. Epub 2015 Dec 4. PMID: 26637559; PMCID: PMC4796617.</unstructured_citation></citation><citation key="ref20"><unstructured_citation>28. Jin Y, Miao W, Lin X, Pan X, Ye Y, Xu M, Fu Z. Acute exposure to 3-methylcholanthrene induces hepatic oxidative stress via activation of the Nrf2/ARE signaling pathway in mice. Environ Toxicol. 2014 Dec;29(12):1399-408. doi: 10.1002/tox.21870. Epub 2013 May 27. PMID: 23712962.</unstructured_citation></citation><citation key="ref21"><unstructured_citation>29. Periyasamy P, Shinohara T. Age-related cataracts: Role of unfolded protein response, Ca2+ mobilization, epigenetic DNA modifications, and loss of Nrf2/Keap1 dependent cytoprotection. Prog Retin Eye Res. 2017 Sep;60:1-19. doi: 10.1016/j.preteyeres.2017.08.003. Epub 2017 Aug 31. PMID: 28864287; PMCID: PMC5600869.</unstructured_citation></citation><citation key="ref22"><unstructured_citation>30. Ramos-Gomez M, Kwak MK, Dolan PM, Itoh K, Yamamoto M, Talalay P, Kensler TW. Sensitivity to carcinogenesis is increased and chemoprotective efficacy of enzyme inducers is lost in nrf2 transcription factor-deficient mice. Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):3410-5. doi: 10.1073/pnas.051618798. PMID: 11248092; PMCID: PMC30667.</unstructured_citation></citation><citation key="ref23"><unstructured_citation>31. Kang, J.S., Kim, D.J., Kim, GY. et al. Ethanol extract of Prunus mume fruit attenuates hydrogen peroxide-induced oxidative stress and apoptosis involving Nrf2/HO-l activation in C2C12 myoblasts. Revista Brasileira de Farmacognosia 26, 184–190 (2016). https://doi.org/10.1016/j.bjp.2015.06.012.</unstructured_citation></citation><citation key="ref24"><unstructured_citation>32.  Xu Y., Liu F., Xu Z., Liu Z., Zhang J. Soyasaponins protects against physical fatigue and improves exercise performance in mice. International Journal of Clinical and Experimental Medicine. 2017;10(8):11856–11865. </unstructured_citation></citation><citation key="ref25"><unstructured_citation>18. Lee JH, Budanov AV, Talukdar S, Park EJ, Park HL, Park HW, Bandyopadhyay G, Li N, Aghajan M, Jang I, Wolfe AM, Perkins GA, Ellisman MH, Bier E, Scadeng M, Foretz M, Viollet B, Olefsky J, Karin M. Maintenance of metabolic homeostasis by Sestrin2 and Sestrin3. Cell Metab. 2012 Sep 5;16(3):311-21. doi: 10.1016/j.cmet.2012.08.004. PMID: 22958918; PMCID: PMC3687365.</unstructured_citation></citation><citation key="ref26"><unstructured_citation>19. Pan R, Chen Y. Management of Oxidative Stress: Crosstalk Between Brown/Beige Adipose Tissues and Skeletal Muscles. Front Physiol. 2021 Sep 16;12:712372. doi: 10.3389/fphys.2021.712372. PMID: 34603076; PMCID: PMC8481590.</unstructured_citation></citation><citation key="ref27"><unstructured_citation>20. Alcalá M, Calderon-Dominguez M, Bustos E, Ramos P, Casals N, Serra D, Viana M, Herrero L. Increased inflammation, oxidative stress and mitochondrial respiration in brown adipose tissue from obese mice. Sci Rep. 2017 Nov 22;7(1):16082. doi: 10.1038/s41598-017-16463-6. PMID: 29167565; PMCID: PMC5700117.</unstructured_citation></citation><citation key="ref28"><unstructured_citation>21. Tsuzuki T, Yoshihara T, Ichinoseki-Sekine N, Kobayashi H, Negishi T, Yukawa K, Naito H. Exercise training improves obesity-induced inflammatory signaling in rat brown adipose tissue. Biochem Biophys Rep. 2022 Nov 28;32:101398. doi: 10.1016/j.bbrep.2022.101398. PMID: 36467545; PMCID: PMC9713272.</unstructured_citation></citation><citation key="ref29"><unstructured_citation>22. de Lemos ET, Oliveira J, Pinheiro JP, Reis F. Regular physical exercise as a strategy to improve antioxidant and anti-inflammatory status: benefits in type 2 diabetes mellitus. Oxid Med Cell Longev. 2012;2012:741545. doi: 10.1155/2012/741545. Epub 2012 Aug 13. PMID: 22928086; PMCID: PMC3425959.</unstructured_citation></citation><citation key="ref30"><unstructured_citation>23. Park HS, Lee JS, Huh SH, Seo JS, Choi EJ. Hsp72 functions as a natural inhibitory protein of c-Jun N-terminal kinase. EMBO J. 2001 Feb 1;20(3):446-56. doi: 10.1093/emboj/20.3.446. PMID: 11157751; PMCID: PMC133486.</unstructured_citation></citation><citation key="ref31"><unstructured_citation>24. Ostrom EL, Traustadóttir T. Aerobic exercise training partially reverses the impairment of Nrf2 activation in older humans. Free Radic Biol Med. 2020 Nov 20;160:418-432. doi: 10.1016/j.freeradbiomed.2020.08.016. Epub 2020 Aug 28. PMID: 32866619; PMCID: PMC7704731.</unstructured_citation></citation><citation key="ref32"><unstructured_citation>25. Kensler TW, Wakabayashi N, Biswal S. Cell survival responses to environmental stresses via the Keap1-Nrf2-ARE pathway. Annu Rev Pharmacol Toxicol. 2007;47:89-116. doi: 10.1146/annurev.pharmtox.46.120604.141046. PMID: 16968214.</unstructured_citation></citation><citation key="ref33"><unstructured_citation>26. Narasimhan M, Hong J, Atieno N, Muthusamy VR, Davidson CJ, Abu-Rmaileh N, Richardson RS, Gomes AV, Hoidal JR, Rajasekaran NS. Nrf2 deficiency promotes apoptosis and impairs PAX7/MyoD expression in aging skeletal muscle cells. Free Radic Biol Med. 2014 Jun;71:402-414. doi: 10.1016/j.freeradbiomed.2014.02.023. Epub 2014 Mar 6. PMID: 24613379; PMCID: PMC4493911.</unstructured_citation></citation><citation key="ref34"><unstructured_citation>27. Priestley JR, Kautenburg KE, Casati MC, Endres BT, Geurts AM, Lombard JH. The NRF2 knockout rat: a new animal model to study endothelial dysfunction, oxidant stress, and microvascular rarefaction. Am J Physiol Heart Circ Physiol. 2016 Feb 15;310(4):H478-87. doi: 10.1152/ajpheart.00586.2015. Epub 2015 Dec 4. PMID: 26637559; PMCID: PMC4796617.</unstructured_citation></citation><citation key="ref35"><unstructured_citation>28. Jin Y, Miao W, Lin X, Pan X, Ye Y, Xu M, Fu Z. Acute exposure to 3-methylcholanthrene induces hepatic oxidative stress via activation of the Nrf2/ARE signaling pathway in mice. Environ Toxicol. 2014 Dec;29(12):1399-408. doi: 10.1002/tox.21870. Epub 2013 May 27. PMID: 23712962.</unstructured_citation></citation><citation key="ref36"><unstructured_citation>29. Periyasamy P, Shinohara T. Age-related cataracts: Role of unfolded protein response, Ca2+ mobilization, epigenetic DNA modifications, and loss of Nrf2/Keap1 dependent cytoprotection. Prog Retin Eye Res. 2017 Sep;60:1-19. doi: 10.1016/j.preteyeres.2017.08.003. Epub 2017 Aug 31. PMID: 28864287; PMCID: PMC5600869.</unstructured_citation></citation><citation key="ref37"><unstructured_citation>30. Ramos-Gomez M, Kwak MK, Dolan PM, Itoh K, Yamamoto M, Talalay P, Kensler TW. Sensitivity to carcinogenesis is increased and chemoprotective efficacy of enzyme inducers is lost in nrf2 transcription factor-deficient mice. Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):3410-5. doi: 10.1073/pnas.051618798. PMID: 11248092; PMCID: PMC30667.</unstructured_citation></citation><citation key="ref38"><unstructured_citation>31. Kang, J.S., Kim, D.J., Kim, GY. et al. Ethanol extract of Prunus mume fruit attenuates hydrogen peroxide-induced oxidative stress and apoptosis involving Nrf2/HO-l activation in C2C12 myoblasts. Revista Brasileira de Farmacognosia 26, 184–190 (2016). https://doi.org/10.1016/j.bjp.2015.06.012.</unstructured_citation></citation><citation key="ref39"><unstructured_citation>32.  Xu Y., Liu F., Xu Z., Liu Z., Zhang J. Soyasaponins protects against physical fatigue and improves exercise performance in mice. International Journal of Clinical and Experimental Medicine. 2017;10(8):11856–11865. </unstructured_citation></citation><citation key="ref40"><unstructured_citation>33. Long M, Li X, Li L, Dodson M, Zhang DD, Zheng H. Multifunctional p62 Effects Underlie Diverse Metabolic Diseases. Trends Endocrinol Metab. 2017 Nov;28(11):818-830. doi: 10.1016/j.tem.2017.09.001. Epub 2017 Sep 28. PMID: 28966079.</unstructured_citation></citation><citation key="ref41"><unstructured_citation>34. Tsai YC, Wang CW, Wen BY, Hsieh PS, Lee YM, Yen MH, Cheng PY. Involvement of the p62/Nrf2/HO-1 pathway in the browning effect of irisin in 3T3-L1 adipocytes. Mol Cell Endocrinol. 2020 Aug 20;514:110915. doi: 10.1016/j.mce.2020.110915. Epub 2020 Jun 12. PMID: 32540261.</unstructured_citation></citation><citation key="ref42"><unstructured_citation>35. Tebay LE, Robertson H, Durant ST, Vitale SR, Penning TM, Dinkova-Kostova AT, Hayes JD. Mechanisms of activation of the transcription factor Nrf2 by redox stressors, nutrient cues, and energy status and the pathways through which it attenuates degenerative disease. Free Radic Biol Med. 2015 Nov;88(Pt B):108-146. doi: 10.1016/j.freeradbiomed.2015.06.021. Epub 2015 Jun 27. PMID: 26122708; PMCID: PMC4659505.</unstructured_citation></citation><citation key="ref43"><unstructured_citation>36. Suh JH, Shenvi SV, Dixon BM, Liu H, Jaiswal AK, Liu RM, Hagen TM. Decline in transcriptional activity of Nrf2 causes age-related loss of glutathione synthesis, which is reversible with lipoic acid. Proc Natl Acad Sci U S A. 2004 Mar 9;101(10):3381-6. doi: 10.1073/pnas.0400282101. Epub 2004 Feb 25. PMID: 14985508; PMCID: PMC373470.</unstructured_citation></citation><citation key="ref44"><unstructured_citation>37. Asghar M, George L, Lokhandwala MF. Exercise decreases oxidative stress and inflammation and restores renal dopamine D1 receptor function in old rats. Am J Physiol Renal Physiol. 2007 Sep;293(3):F914-9. doi: 10.1152/ajprenal.00272.2007. Epub 2007 Jul 18. PMID: 17634393.</unstructured_citation></citation><citation key="ref45"><unstructured_citation>38. Yu M, Zhang H, Wang B, Zhang Y, Zheng X, Shao B, Zhuge Q, Jin K. Key Signaling Pathways in Aging and Potential Interventions for Healthy Aging. Cells. 2021 Mar 16;10(3):660. doi: 10.3390/cells10030660. PMID: 33809718; PMCID: PMC8002281.</unstructured_citation></citation><citation key="ref46"><unstructured_citation>39. Yu Q, Xia Z, Liong EC, Tipoe GL. Chronic aerobic exercise improves insulin sensitivity and modulates Nrf2 and NF κB/IκBα pathways in the skeletal muscle of rats fed with a high fat diet. Mol Med Rep. 2019 Dec;20(6):4963-4972. doi: 10.3892/mmr.2019.10787. Epub 2019 Oct 31. PMID: 31702809; PMCID: PMC6854540.</unstructured_citation></citation><citation key="ref47"><unstructured_citation>40. Ahmed SM, Luo L, Namani A, Wang XJ, Tang X. Nrf2 signaling pathway: Pivotal roles in inflammation. Biochim Biophys Acta Mol Basis Dis. 2017 Feb;1863(2):585-597. doi: 10.1016/j.bbadis.2016.11.005. Epub 2016 Nov 4. PMID: 27825853.</unstructured_citation></citation><citation key="ref48"><unstructured_citation>41. Liu GH, Qu J, Shen X. NF-kappaB/p65 antagonizes Nrf2-ARE pathway by depriving CBP from Nrf2 and facilitating recruitment of HDAC3 to MafK. Biochim Biophys Acta. 2008 May;1783(5):713-27. doi: 10.1016/j.bbamcr.2008.01.002. Epub 2008 Jan 12. PMID: 18241676.</unstructured_citation></citation><citation key="ref49"><unstructured_citation>42. Jiang T, Tian F, Zheng H, Whitman SA, Lin Y, Zhang Z, Zhang N, Zhang DD. Nrf2 suppresses lupus nephritis through inhibition of oxidative injury and the NF-κB-mediated inflammatory response. Kidney Int. 2014 Feb;85(2):333-343. doi: 10.1038/ki.2013.343. Epub 2013 Sep 11. PMID: 24025640; PMCID: PMC3992978.</unstructured_citation></citation><citation key="ref50"><unstructured_citation>43. Chowdhry S, Nazmy MH, Meakin PJ, Dinkova-Kostova AT, Walsh SV, Tsujita T, Dillon JF, Ashford ML, Hayes JD. Loss of Nrf2 markedly exacerbates nonalcoholic steatohepatitis. Free Radic Biol Med. 2010 Jan 15;48(2):357-71. doi: 10.1016/j.freeradbiomed.2009.11.007. Epub 2009 Nov 13. PMID: 19914374.</unstructured_citation></citation><citation key="ref51"><unstructured_citation>44. Liu Z, Dou W, Ni Z, Wen Q, Zhang R, Qin M, Wang X, Tang H, Cao Y, Wang J, Zhao S. Deletion of Nrf2 leads to hepatic insulin resistance via the activation of NF-κB in mice fed a high-fat diet. Mol Med Rep. 2016 Aug;14(2):1323-31. doi: 10.3892/mmr.2016.5393. Epub 2016 Jun 10. PMID: 27315552.</unstructured_citation></citation><citation key="ref52"><unstructured_citation>45. Vatner DE, Oydanich M, Zhang J, Campbell SC, Vatner SF. Exercise enhancement by RGS14 disruption is mediated by brown adipose tissue. Aging Cell. 2023 Apr;22(4):e13791. doi: 10.1111/acel.13791. Epub 2023 Mar 10. PMID: 36905127; PMCID: PMC10086526.</unstructured_citation></citation><citation key="ref53"><unstructured_citation>46. Sebaa R, Johnson J, Pileggi C, Norgren M, Xuan J, Sai Y, Tong Q, Krystkowiak I, Bondy-Chorney E, Davey NE, Krogan N, Downey M, Harper ME. SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1. Mol Metab. 2019 Jul;25:35-49. doi: 10.1016/j.molmet.2019.04.008. Epub 2019 Apr 17. PMID: 31060926; PMCID: PMC6601363.</unstructured_citation></citation><citation key="ref54"><unstructured_citation>: PMC6092475.</unstructured_citation></citation><citation key="ref55"><unstructured_citation>47. Koltai E, Bori Z, Osvath P, Ihasz F, Peter S, Toth G, Degens H, Rittweger J, Boldogh I, Radak Z. Master athletes have higher miR-7, SIRT3 and SOD2 expression in skeletal muscle than age-matched sedentary controls. Redox Biol. 2018 Oct;19:46-51. doi: 10.1016/j.redox.2018.07.022. Epub 2018 Aug 7. PMID: 30107294; PMCID: PMC6092475.</unstructured_citation></citation><citation key="ref56"><unstructured_citation>48. Cheng A, Yang Y, Zhou Y, Maharana C, Lu D, Peng W, Liu Y, Wan R, Marosi K, Misiak M, Bohr VA, Mattson MP. Mitochondrial SIRT3 Mediates Adaptive Responses of Neurons to Exercise and Metabolic and Excitatory Challenges. Cell Metab. 2016 Jan 12;23(1):128-42. doi: 10.1016/j.cmet.2015.10.013. Epub 2015 Nov 19. PMID: 26698917; PMCID: PMC5141613.</unstructured_citation></citation><citation key="ref57"><unstructured_citation>49. Lin L, Chen K, Abdel Khalek W, Ward JL 3rd, Yang H, Chabi B, Wrutniak-Cabello C, Tong Q. Regulation of skeletal muscle oxidative capacity and muscle mass by SIRT3. PLoS One. 2014 Jan 15;9(1):e85636. doi: 10.1371/journal.pone.0085636. PMID: 24454908; PMCID: PMC3893254.</unstructured_citation></citation><citation key="ref58"><unstructured_citation>50. Qiu X, Brown K, Hirschey MD, Verdin E, Chen D. Calorie restriction reduces oxidative stress by SIRT3-mediated SOD2 activation. Cell Metab. 2010 Dec 1;12(6):662-7. doi: 10.1016/j.cmet.2010.11.015. PMID: 21109198.</unstructured_citation></citation><citation key="ref59"><unstructured_citation>51, Chen Y, Zhang J, Lin Y, Lei Q, Guan KL, Zhao S, Xiong Y. Tumour suppressor SIRT3 deacetylates and activates manganese superoxide dismutase to scavenge ROS. EMBO Rep. 2011 Jun;12(6):534-41. doi: 10.1038/embor.2011.65. Epub 2011 May 13. PMID: 21566644; PMCID: PMC3128277.</unstructured_citation></citation><citation key="ref60"><unstructured_citation>52. Cho SY, Chung YS, Yoon HK, Roh HT. Impact of Exercise Intensity on Systemic Oxidative Stress, Inflammatory Responses, and Sirtuin Levels in Healthy Male Volunteers. Int J Environ Res Public Health. 2022 Sep 8;19(18):11292. doi: 10.3390/ijerph191811292. PMID: 36141561; PMCID: PMC9516970.</unstructured_citation></citation><citation key="ref61"><unstructured_citation>53. Zhou L, Pinho R, Gu Y, Radak Z. The Role of SIRT3 in Exercise and Aging. Cells. 2022 Aug 20;11(16):2596. doi: 10.3390/cells11162596. PMID: 36010672; PMCID: PMC9406297.</unstructured_citation></citation></citation_list></journal_article></journal></body></doi_batch>