|
1. Singer ME, Dorrance KA, Oxenreiter MM, Yan KR, Close KL. The type 2 diabetes 'modern preventable pandemic'and replicable lessons from the COVID-19 crisis. Prev Med Rep. 2022;25:101636. doi:10.1016/j.pmedr.2021.101636 PMid:34909369 PMCid:PMC8660571 2. Fan D, Wang Y, Liu B, Yin F. Hypoglycemic drug liraglutide alleviates low muscle mass by inhibiting the expression of MuRF1 and MAFbx in diabetic muscle atrophy. J Chin Med Assoc. 2023;86(2):166-75. doi:10.1097/JCMA.0000000000000807 PMid:36279106 PMCid:PMC12755461 3. Frontera WR, Ochala J. Skeletal muscle: a brief review of structure and function. Calcif Tissue Int. 2015;96:183-95. doi:10.1007/s00223-014-9915-y PMid:25294644 4. Zuo L, Pannell BK. Redox characterization of functioning skeletal muscle. Front Physiol. 2015; 6:338. doi:10.3389/fphys.2015.00338 PMid:26635624 PMCid:PMC4649055 5. Sartori R, Romanello V, Sandri M. Mechanisms of muscle atrophy and hypertrophy: implications in health and disease. Nat Commun. 2021;12(1):330. doi:10.1038/s41467-020-20123-1 PMid:33436614 PMCid:PMC7803748 6. Perry BD, Caldow MK, Brennan-Speranza TC, Sbaraglia M, Jerums G, Garnham A, et al. Muscle atrophy in patients with Type 2 Diabetes Mellitus: roles of inflammatory pathways, physical activity and exercise. Exerc Immunol Rev. 2016;22:94. 7. Barle H, Nyberg B, Essen P, Andersson K, McNurlan MA, Wernerman J, et al. The synthesis rates of total liver protein and plasma albumin determined simultaneously in vivo in humans. Hepatology. 1997;25(1):154-8. doi:10.1002/hep.510250128 PMid:8985282 8. Yoshioka G, Tanaka A, Nishihira K, Shibata Y, Node K. Prognostic impact of serum albumin for developing heart failure remotely after acute myocardial infarction. Nutrients. 2020;12(9):2637. doi:10.3390/nu12092637 PMid:32872477 PMCid:PMC7551643 9. Liao LZ, Zhang SZ, Li WD, Liu Y, Li JP, Zhuang X-D, et al. Serum albumin and atrial fibrillation: insights from epidemiological and mendelian randomization studies. Eur J Epidemiol. 2020; 35:113-22. doi:10.1007/s10654-019-00583-6 PMid:31741136 10. Hu Y, Wang J, Zeng S, Chen M, Zou G, Li Y, et al. Association between serum albumin levels and diabetic peripheral neuropathy among patients with type 2 diabetes: Effect modification of body mass index. Diabetes Metab Syndr Obes. 2022:527-34. doi:10.2147/DMSO.S347349 PMid:35228809 PMCid:PMC8881928 11. Cabrerizo S, Cuadras D, Gomez-Busto F, Artaza-Artabe I, Marín-Ciancas F, Malafarina V. Serum albumin and health in older people: review and meta analysis. Maturitas. 2015;81(1):17-27. doi:10.1016/j.maturitas.2015.02.009 PMid:25782627 12. Silva-Fhon JR, Rojas-Huayta VM, Aparco-Balboa JP, Céspedes-Panduro B, Partezani-Rodrigues RA. Sarcopenia y albúmina sanguínea: revisión sistemática con metaanálisis. Biomédica. 2021;41(3):590-603. doi:10.7705/biomedica.5765 PMid:34559500 PMCid:PMC8527986 13. Kwon J, Suzuki T, Yoshida H, Kim H, Yoshida Y, Iwasa H. Concomitant lower serum albumin and vitamin D levels are associated with decreased objective physical performance among Japanese community-dwelling elderly. Gerontology. 2007; 53(5):322-8. doi:10.1159/000103257 PMid:17536208 14. Baumgartner RN, Koehler KM, Romero L, Garry PJ. Serum albumin is associated with skeletal muscle in elderly men and women. Am J Clin Nutr. 1996; 64(4):552-8. doi:10.1093/ajcn/64.4.552 PMid:8839499 15. Snyder CK, Lapidus JA, Cawthon PM, Dam TTL, Sakai LY, Marshall LM, et al. Serum albumin in relation to change in muscle mass, muscle strength, and muscle power in older men. J Am Geriatr Soc. 2012;60(9):1663-72. doi:10.1111/j.1532-5415.2012.04115.x PMid:22905696 PMCid:PMC3445747 16. Kaushik AS, Strath LJ, Sorge RE. Dietary interventions for treatment of chronic pain: oxidative stress and inflammation. Pain Ther. 2020;9:487-98. doi:10.1007/s40122-020-00200-5 PMid:33085012 PMCid:PMC7648781 17. Yeon M, Choi H, Jun H-S. Preventive effects of Schisandrin A, a bioactive component of Schisandra chinensis, on dexamethasone-induced muscle atrophy. Nutrients. 2020;12(5):1255. doi:10.3390/nu12051255 PMid:32354126 PMCid:PMC7282012 18. Marshall RN, Smeuninx B, Morgan PT, Breen L. Nutritional strategies to offset disuse-induced skeletal muscle atrophy and anabolic resistance in older adults: from whole-foods to isolated ingredients. Nutrients. 2020;12(5):1533. doi:10.3390/nu12051533 PMid:32466126 PMCid:PMC7284346 19. Yanai H, Adachi H, Masui Y, Katsuyama H, Kawaguchi A, Hakoshima M, et al. Exercise therapy for patients with type 2 diabetes: a narrative review. J Clin Med Res. 2018;10(5):365. doi:10.14740/jocmr3382w PMid:29581797 PMCid:PMC5862082 20. Lazarevic G, Antic S, Vlahovic P, Djordjevic V, Zvezdanovic L, Stefanovic V. Effects of aerobic exercise on microalbuminuria and enzymuria in type 2 diabetic patients. Ren Fail. 2007;29(2):199-205. doi:10.1080/08860220601098870 PMid:17365936 21. Brzezinski RY, Friedensohn L, Shapira I, Zeltser D, Rogowski O, Berliner S, et al. Exercise-induced albuminuria increases over time in individuals with impaired glucose metabolism. Cardiovasc Diabetol. 2020; 19(1):1-8. doi:10.1186/s12933-020-01058-9 PMid:32539802 PMCid:PMC7296954 22. Brzycki M. Strength testing-predicting a one-rep max from reps-to-fatigue. J Phys Educ Recreat Dance. 1993;64(1):88-90. doi:10.1080/07303084.1993.10606684 23. Libardi CA, De Souza GV, Cavaglieri CR, Madruga VA, Chacon-Mikahil M. Effect of resistance, endurance, and concurrent training on TNF-a, IL-6, and CRP. Med Sci Sports Exerc. 2012; 44(1):50-6. doi:10.1249/MSS.0b013e318229d2e9 PMid:21697747 24. Shirzad J, Tofighi A, Tolouei Azar J, Khadem Ansari MH. Adaptation of Irisin, Follistatin and Myostatin to 8 weeks of Resistance, Endurance and Concurrent Training in Obese Men. Sport Physiol Manag Investig. 2021;12(4):23-41. 25. Banitalebi E, Faramarzi M, Nasiri S, Mardaniyan M, Rabiee V. Effects of different exercise modalities on novel hepatic steatosis indices in overweight women with type 2 diabetes. Clin Mol Hepatol. 2019; 25(3):294. doi:10.3350/cmh.2018.0086 PMid:31142104 PMCid:PMC6759427 26. Ambelu T, Teferi G. The impact of exercise modalities on blood glucose, blood pressure and body composition in patients with type 2 diabetes mellitus. BMC Sports Sci Med Rehabil. 2023; 15(1):153. doi:10.1186/s13102-023-00762-9 PMid:37964349 PMCid:PMC10644520 27. Hordern MD, Dunstan DW, Prins JB, Baker MK, Singh MAF, Coombes JS. Exercise prescription for patients with type 2 diabetes and pre-diabetes: a position statement from Exercise and Sport Science Australia. J Sci Med Sport. 2012;15(1):25-31. doi:10.1016/j.jsams.2011.04.005 PMid:21621458 28. Ramezani S, Poorrahim A, Yaghoubi M, Rasuli M. The effect of different types of exercise on indicators related to type 2 diabetes: A systematic review. Feyz Med Sci J. 2023;27(3):340-54. 29. Kang SJ, Ko KJ, Baek UH. Effects of 12 weeks combined aerobic and resistance exercise on heart rate variability in type 2 diabetes mellitus patients. J Phys Ther Sci. 2016;28(7):2088-93. doi:10.1589/jpts.28.2088 PMid:27512271 PMCid:PMC4968512 30. Liu Y, Ye W, Chen Q, Zhang Y, Kuo C-H, Korivi M. Resistance exercise intensity is correlated with attenuation of HbA1c and insulin in patients with type 2 diabetes: a systematic review and meta-analysis. Int J Environ Res Public Health. 2019; 16(1):140. doi:10.3390/ijerph16010140 PMid:30621076 PMCid:PMC6339182 31. Sigal RJ, Kenny GP, Boulé NG, Wells GA, Prud'homme D, Fortier M, et al. Effects of aerobic training, resistance training, or both on glycemic control in type 2 diabetes: a randomized trial. Ann Intern Med. 2007;147(6):357-69. doi:10.7326/0003-4819-147-6-200709180-00005 PMid:17876019 32. Colberg SR, Sigal RJ, Yardley JE, Riddell MC, Dunstan DW, Dempsey PC, et al. Physical activity/exercise and diabetes: a position statement of the American Diabetes Association. Diabetes Care. 2016;39(11):2065. doi:10.2337/dc16-1728 PMid:27926890 PMCid:PMC6908414 33. Dunstan DW, Daly RM, Owen N, Jolley D, De Courten M, Shaw J, et al. High-intensity resistance training improves glycemic control in older patients with type 2 diabetes. Diabetes Care. 2002;25(10):1729-36. doi:10.2337/diacare.25.10.1729 PMid:12351469 34. Frøsig C, Rose AJ, Treebak JT, Kiens B, Richter EA, Wojtaszewski JF. Effects of endurance exercise training on insulin signaling in human skeletal muscle: interactions at the level of phosphatidylinositol 3-kinase, Akt, and AS160. Diabetes. 2007;56(8):2093-102. doi:10.2337/db06-1698 PMid:17513702 35. Koopman R, Manders RJ, Zorenc AH, Hul GB, Kuipers H, Keizer HA, et al. A single session of resistance exercise enhances insulin sensitivity for at least 24 h in healthy men. Eur J Appl Physiol. 2005;94:180-7. doi:10.1007/s00421-004-1307-y PMid:15761746 36. Brooks N, Layne JE, Gordon PL, Roubenoff R, Nelson ME, Castaneda-Sceppa C. Strength training improves muscle quality and insulin sensitivity in Hispanic older adults with type 2 diabetes. Int J Med Sci. 2007;4(1):19. doi:10.7150/ijms.4.19 PMid:17211497 PMCid:PMC1752232 37. Omidi M, Moghadasi M. Effect of 8 weeks aerobic training on pancreatic β-cells function and insulin resistance of female patients with type 2 diabetes. Iran J Diabetes Metab. 2018;17(2):79-86. 38. Mir MM, Mir R, Alghamdi MAA, Wani JI, Sabah ZU, Jeelani M, et al. Differential association of selected adipocytokines, adiponectin, leptin, resistin, visfatin and chemerin, with the pathogenesis and progression of type 2 diabetes mellitus (T2DM) in the asir region of Saudi Arabia: A case control study. J Pers Med. 2022;12(5):735. doi:10.3390/jpm12050735 PMid:35629157 PMCid:PMC9143828 39. Hosseini F, Abdollahpur N, Bahrami Abdehgah E. Effect of eight weeks high intensity aerobic exercise on C-reactive protein levels in obese middle-aged men. J Phys Act Horm. 2019;2(4):15-26. 40. Franklin BA, Quindry JC. Biochemistry of exercise training and mitigation of cardiovascular disease. In: The Routledge Handbook on Biochemistry of Exercise. Routledge; 2020. p. 455-78. doi:10.4324/9781003123835-29 41. Kadoglou NP, Vrabas IS, Kapelouzou A, Lampropoulos S, Sailer N, Kostakis A, et al. The impact of aerobic exercise training on novel adipokines, apelin and ghrelin, in patients with type 2 diabetes. Med Sci Monit. 2012;18(5):CR290. doi:10.12659/MSM.882734 PMid:22534708 PMCid:PMC3560628 42. Evans EM, Racette SB, Peterson LR, Villareal DT, Greiwe JS, Holloszy JO. Aerobic power and insulin action improve in response to endurance exercise training in healthy 77-87 yr olds. J Appl Physiol. 2005;98(1):40-5. doi:10.1152/japplphysiol.00928.2004 PMid:15591302 43. Tani S, Imatake K, Suzuki Y, Yagi T, Takahashi A. Association of aerobic exercise habits with higher albumin-globulin ratio and lower cellular immune-inflammatory markers: implication of the preventive effect of aerobic exercise on atherosclerotic cardiovascular disease. Heart Vessels. 2025; 40(6):509-22. doi:10.1007/s00380-024-02490-7 PMid:39625493 44. Kim H, Suzuki T, Kim M, Kojima N, Yoshida Y, Hirano H, et al. Incidence and predictors of sarcopenia onset in community-dwelling elderly Japanese women: 4-year follow-up study. J Am Med Dir Assoc. 2015;16(1):85.e1-.e8. doi:10.1016/j.jamda.2014.10.006 PMid:25458445 45. Visser M, Kritchevsky SB, Newman AB, Goodpaster BH, Tylavsky FA, Nevitt MC, et al. Lower serum albumin concentration and change in muscle mass: the Health, Aging and Body Composition Study. Am J Clin Nutr. 2005; 82(3):531-7. doi:10.1093/ajcn/82.3.531 PMid:16155264 46. Hai S, Cao L, Wang H, Zhou J, Liu P, Yang Y, et al. Association between sarcopenia and nutritional status and physical activity among community‐dwelling Chinese adults aged 60 years and older. Geriatr Gerontol Int. 2017;17(11):1959-66. doi:10.1111/ggi.13001 PMid:28188973 47. Chen Q, Hao Q, Ding Y, Dong B. The association between sarcopenia and prealbumin levels among elderly Chinese inpatients. J Nutr Health Aging. 2019;23(2):122-7. doi:10.1007/s12603-018-1130-5 PMid:30697620 PMCid:PMC12280389 48. Xiu S, Sun L, Mu Z, Fu J. Low prealbumin levels are associated with sarcopenia in older men with type 2 diabetes mellitus: A cross-sectional study. Nutrition. 2021;91:111415. doi:10.1016/j.nut.2021.111415 PMid:34399401 49. Chen Z, Song C, Yao Z, Sun J, Liu W. Associations between albumin, globulin, albumin to globulin ratio and muscle mass in adults: results from the national health and nutrition examination survey 2011-2014. BMC Geriatr. 2022;22(1):383. doi:10.1186/s12877-022-03094-4 PMid:35501822 PMCid:PMC9059414
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