1. Burini RC, Anderson E, Durstine JL, Carson JA. Inflammation, physical activity, and chronic disease: An evolutionary perspective. Sports Med Health Sci 2020; 2(1): 1-6. doi:10.1016/j.smhs.2020.03.004 PMid:35783338 PMCid:PMC9219305 2. Pechtl SM, Kim LP, Jacobsen KH. Physical inactivity and sedentariness: Languorous behavior among adolescents in 80 countries. J Adolesc Health 2022; 70(6): 950-60. doi:10.1016/j.jadohealth.2021.12.017 PMid:35177343 3. Paroi S, Hasanat MA, Roy BK. Study on the sedentary lifestyle of adolescents in Khulna city. Mediscope 2022;9(2):68-74 doi:10.3329/mediscope.v9i2.61707 4. Fasihi Ramandi E, Khaledi N. High intensity interval training induced changes in the hepatic FGF-21 gene expression and serum TNF-α in diabetic male rats. Res in Sports Med Tech. 2020;18(19):57-68. 5. Wang N, Zhao Tt, Li Sm, Sun X, Li Zc, Li Yh, et al. Fibroblast growth factor 21 exerts its anti‐inflammatory effects on multiple cell types of adipose tissue in obesity. Obesity (Silver Spring) 2019;27(3): 399-408. doi:10.1002/oby.22376 PMid:30703283 6. Liu M, Cao H, Hou Y, Sun G, Li D, Wang W. Liver plays a major role in FGF-21 mediated glucose homeostasis. Cell Physiol Biochem 2018;45(4):1423-33. doi:10.1159/000487568 PMid:29462809 7. Vecchiatto B, de Castro TL, Muller CR, Azevedo-Martins AK, Evangelista FS. Physical exercise-induced FGF-21 to fight obesity: An update review. Obesities 2022;2(4):372-9. doi:10.3390/obesities2040031 8. Tofighi A, Alizadeh R, Tolouei Azar J. The effect of eight weeks high intensity interval training (hiit) on serum amounts of fgf21 and irisin in sedentary obese women. Studies in Med Sci 2017;28(7):453-66. http://umj.umsu.ac.ir/article-1-4064-en.html 9. Castro CAd, Silva KAd, Rocha MC, Sene-Fiorese M, Nonaka KO, Malavazi I, et al. Exercise and omentin: their role in the crosstalk between muscle and adipose tissues in type 2 diabetes mellitus rat models. Front physiol 2019; 9: 1881. doi:10.3389/fphys.2018.01881 PMid:30666216 PMCid:PMC6330355 10. Sun X, Li T, Tian Y, Ren S, Li L, Li P. Omentin as an Independent Predictor of Metabolic Syndrome and Obesity Among Adolescents in Northeast China. Diabetes, Metab Syndr Obes: Targets and Therapy 2022:3913-22. doi:10.2147/DMSO.S388620 PMid:36545293 PMCid:PMC9762766 11. Zabetian-Targhi F, Mirzaei K, Keshavarz SA, Hossein-Nezhad A. Modulatory role of omentin-1 in inflammation: cytokines and dietary intake. J Am Coll Nutr 2016; 35 (8): 670-678. doi:10.1080/07315724.2015.1126207 PMid:27331575 12. Tanimura Y, Aoi W, Takanami Y, Kawai Y, Mizushima K, Naito Y, et al. Acute exercise increases fibroblast growth factor 21 in metabolic organs and circulation. Physiol rep 2016;4(12):e12828. doi:10.14814/phy2.12828 13. Gharakhanlou BJ, Bonab SB. The effect of 12 weeks of training in water on serum levels of SIRT1 and FGF-21, glycemic index, and lipid profile in patients with type 2 diabetes. Int J Diabetes in Developing Countries 2022:1-8. doi:10.1007/s13410-021-01032-5 14. Kong Z, Sun S, Liu M, Shi Q. Short-term high-intensity interval training on body composition and blood glucose in overweight and obese young women. J diabetes res 2016; 2016. doi:10.1155/2016/4073618 PMid:27774458 PMCid:PMC5059579 15. Garneau L, Parsons SA, Smith SR, Mulvihill EE, Sparks LM, Aguer C. Plasma myokine concentrations after acute exercise in non-obese and obese sedentary women. Front physiol 2020; 11: 18. doi:10.3389/fphys.2020.00018 PMid:32132925 PMCid:PMC7040180 16. Huang C-J, Slusher AL, Whitehurst M, Wells M, Maharaj A, Shibata Y. The impact of acute aerobic exercise on chitinase 3-like protein 1 and intelectin-1 expression in obesity. Exp Biol Med (Maywood) 2016; 241(2): 216-21. doi:10.1177/1535370215602785 PMid:26316585 PMCid:PMC4935391 17. Faramarzi M, Banitalebi E, Nori S, Farzin S, Taghavian Z. Effects of rhythmic aerobic exercise plus core stability training on serum omentin, chemerin and vaspin levels and insulin resistance of overweight women. J Sports Med Phys Fitness 2015;56(4):476-482. 18. Türk Y, Theel W, Kasteleyn M, Franssen F, Hiemstra P, Rudolphus A, et al. High intensity training in obesity: a Meta‐analysis. Obes Sci Pract 2017;3(3):258-71. doi:10.1002/osp4.109 PMid:29071102 PMCid:PMC5598019 19. Boutcher SH. High-intensity intermittent exercise and fat loss. J Obes 2011;2011. doi:10.1155/2011/868305 PMid:21113312 PMCid:PMC2991639 20. Hammoudi Halat D, Krayem M, Khaled S, Younes S. A focused insight into thyme: Biological, chemical, and therapeutic properties of an indigenous Mediterranean herb. Nutrients 2022; 14(10):2104. doi:10.3390/nu14102104 PMid:35631245 PMCid:PMC9147557 21. Eskandar Pour F, Tofighi A, Tolouei Azar J. Effects of eight-weeks of circuit resistance training with Thyme supplementation on serum FGF-21 in overweight menopausal women. J Appl Health Stud Sport Physiol 2018;5(2):20-7. 22. Jackson AS, Pollock ML. Practical assessment of body composition. Phys Sportsmed 1985; 13(5):76-90. doi:10.1080/00913847.1985.11708790 PMid:27463295 23. Jokar M, Sherafati Moghadam M, Daryanoosh F. The effect of a period of high-intensity interval training on the content of AMPK and PGC-1α proteins in the heart muscle tissue of rats with type 2 diabetes. Daneshvar Med 2021;29(1):23-34. 24. Khani M, Zolfi HR, Niknam Z. The effect of two-week high intensit interval training (HIIT) with Thyme supplementation on lipid profile, oxidative stress, body composition, and aerobic capacity of the obese and overweight women. J Appl Health Stud Sport Physiol 2023. 25. Group JJW. Guidelines for Rehabilitation in Patients with Cardiovascular Disease (JCS 2012)-Digest Version-. Circ J 2014; 78(8):2022-93. doi:10.1253/circj.CJ-66-0094 PMid:25047729 26. Liu Y, Dong G, Zhao X, Huang Z, Li P, Zhang H. Post-exercise effects and long-term training adaptations of hormone sensitive lipase lipolysis induced by high-intensity interval training in adipose tissue of mice. Front Physiol 2020;11:535722. doi:10.3389/fphys.2020.535722 PMid:33324231 PMCid:PMC7723847 27. Zhan J, Ling R, Guanghua W, Rongping W. Effects of high-intensity interval exercise on obesity. Front Sport Research 2022;4(5). doi:10.25236/FSR.2022.040510 28. Rizwan B. Therapeutic potential of Thymus vulgaris: A Review. doi:10.31219/osf.io/3fzvt 29. Keshavarzi E, Shakerian S. Effect of HIIT Exercises with Thyme Supplement on Plasma Lipoproteins and Liver Enzymes of Men with Fatty Liver: A Semi-experimental Study. Navid No 2020; 23(75):51-61. 30. Chau MD, Gao J, Yang Q, Wu Z, Gromada J. Fibroblast growth factor 21 regulates energy metabolism by activating the AMPK-SIRT1-PGC-1α pathway. Proc Natl Acad Sci U S A 2010; 107 (28): 12553-8. doi:10.1073/pnas.1006962107 PMid:20616029 PMCid:PMC2906565 31. Lee JS, Yoon ES, Jung SY, Yim KT, Kim DY. Effect of high-intensity circuit training on obesity indices, physical fitness, and browning factors in inactive female college students. J Exerc Rehabil 2021;17(3):207. doi:10.12965/jer.2142260.130 PMid:34285899 PMCid:PMC8257432 32. Taniguchi H, Tanisawa K, Sun X, Kubo T, Higuchi M. Endurance exercise reduces hepatic fat content and serum fibroblast growth factor 21 levels in elderly men. J Clin Endocrinol Metab 2016; 101(1): 191-8. doi:10.1210/jc.2015-3308 PMid:26562755 33. Mohammadi A, Gholamhoseinian A, Fallah H. Zataria multiflora increases insulin sensitivity and PPARγ gene expression in high fructose fed insulin resistant rats. Iran J Basic Med Sci 2014; 17(4):263. doi: 10.22038/IJBMS.2014.2584 PMid: 24904719 PMCid: PMC4046234 34. Makiel K, Suder A, Targosz A, Maciejczyk M, Kozioł-Kozakowska A, Haim A. Impact of two types of exercise interventions on leptin and omentin concentrations and indicators of lipid and carbohydrate metabolism in males with metabolic syndrome. J Clin Med 2023;12(8):2822. doi:10.3390/jcm12082822 PMid:37109160 PMCid:PMC10144374 35. Wilms B, Ernst B, Gerig R, Schultes B. Plasma omentin-1 levels are related to exercise performance in obese women and increase upon aerobic endurance training. Exp Clin Endocrinol Diabetes 2015;123(03):187-92 doi:10.1055/s-0034-1398504 PMid:25789872
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