Have a personal or library account? Click to login
Effects of aerobic exercise on adiponectin levels potentially mediated by vitamin D in type 2 diabetic patients Cover

Effects of aerobic exercise on adiponectin levels potentially mediated by vitamin D in type 2 diabetic patients

Open Access
|Jul 2022

References

  1. Achari AE, Jain SK. Adiponectin, a therapeutic target for obesity, diabetes, and endothelial dysfunction. Int J Mol Sci 18, 1321, 2017.10.3390/ijms18061321548614228635626
  2. Aly FA, Alghadir AH, Gabr SA. Adiponectin response to supervised aerobic training in type II diabetic patients. Asian Biomed 8, 597–602, 2014.10.5372/1905-7415.0805.332
  3. Aly YE, Abdou AS, Rashad MM, Nassef MM. Effect of exercise on serum vitamin D and tissue vitamin D receptors in experimentally induced type 2 diabetes mellitus. J Adv Res 7, 671–679, 2016.10.1016/j.jare.2016.07.001496924127504197
  4. American Diabetes Association. Diagnosis and classification of diabetes mellitus. Diabetes Care 36, 67–74, 2013.10.2337/dc13-S067353727323264425
  5. Banerjee A, Khemka V, Roy D, Poddar J, Roy TKS, Karnam SA. Role of serum adiponectin and vitamin D in prediabetes and diabetes mellitus. Can J Diabetes 41, 1–7, 2016.10.1016/j.jcjd.2016.10.00628236525
  6. Bayani MA, Akbari R, Banasaz B, Saeedi F. Status of Vitamin-D in diabetic patients. Caspian J Intern Med 5, 40–42, 2014.
  7. Becic T, Studenik C, Hoffman G. Exercise increases adiponectin and reduces leptin levels in prediabetic and diabetic individuals: systematic review and meta-analysis of randomized controlled trials. Med Sci 6, 1–18, 2018.10.3390/medsci6040097631875730380802
  8. Bidulescu A, Morris AA, Stoyanova N, Meng Y, Voccarino V, Quyyumi AA. Association between vitamin d and adiponectin and its relationship with body mass index: the META health study. Front Pub Health 2, 1–6, 2014.10.3389/fpubh.2014.00193419651225353014
  9. Chin K, Zhao D, Tibuakuu M, Martin SS, Ndumele CE, Florido R. Physical activity, vitamin D, and incident atherosclerotic cardiovascular disease in whites and blacks: the ARIC study. J Clin Endocrinol Metabol 102, 1227–1236, 2017.10.1210/jc.2016-3743546073028323928
  10. Cnop M, Havel PJ, Utzschneider KM, Carr DB, Sinha MK, Boyko EJ, Retzlaff BM, Knopp RH, Brunzell JD, Kahn SE. Relationship of adiponectin to body fat distribution, insulin sensitivity and plasma lipoproteins: evidence for independent roles of age and sex. Diabetologia 46, 459–469, 2003.10.1007/s00125-003-1074-z12687327
  11. Duncan BB, Schmidt MI, Pankow JS, Bang H, Couper D, Ballantyne CM, Hoogeveen RC, Heiss G. Adiponectin and the development of type 2 diabetes: the atherosclerosis risk in communities study. Diabetes 53, 2473–2478, 2004.10.2337/diabetes.53.9.247315331562
  12. Foula WH, Emara RH, Eldeeb MK, Mokhtar SA, El-Sahn FA. Effect of a weight loss program on serum adiponectin and insulin resistance among overweight and obese premenopausal females. J Egypt Public Health Assoc 95, 32, 2020.10.1186/s42506-020-00060-z770854933259020
  13. Gannage-Yared M, Chedid R, Khalife S, Azzi E, Zoghbi F, Halaby G. Vitamin D in relation to metabolic risk factors, insulin sensitivity and adiponectin in a young Middle-Eastern population. Eur J Endocrinol 160, 965–971, 2009.10.1530/EJE-08-095219289535
  14. Hengist A, Perkin O, Gonzalez JT, Betts JA, Hewison M, Manolopoulos KN, Jones KS, Koulman A, Thompson D. Mobilising vitamin D from adipose tissue: The potential impact of exercise. Nutrition Bull 44, 25–35, 2019.10.1111/nbu.12369860943434853551
  15. Isobe T, Saitoh S, Takagi S, Takeuchi H, Chiba Y, Katoh N, Shimamoto K. Influence of gender, age, and renal function on plasma adiponectin level: the Tanno and Sobetsu study. Eur J Endocrinol 153, 91–98, 2005.10.1530/eje.1.0193015994750
  16. Kim SJ, Yoon ES, Jung SY, Kim DY. Effect of uphill walking on browning factor and high molecular weight-adiponectin in postmenopausal women. J Exerc Rehabil 16, 265–271, 2020.10.12965/jer.2040334.167736572432724784
  17. Li S, Shin HJ, Ding EL, Dam RM. Adiponectin levels and risk of type 2 diabetes: a systematic review and meta-analysis. JAMA 302, 179–188, 2009.10.1001/jama.2009.97619584347
  18. Liu E, Meigs JB, Pittas AG, McKeown NM, Economos CD, Booth SL, Jacques PF. Plasma 25-hydroxyvitamin d is associated with markers of the insulin resistant phenotype in nondiabetic adults. J Nutrition 139, 329–334, 2009.10.3945/jn.108.093831264620819106328
  19. Mathieu C, Gysemans C. Vitamin D and diabetes. Diabetologia 48, 1247–1257, 2005.10.1007/s00125-005-1802-715971062
  20. Mittendorfer B, Fields DA, Klein S. Excess body fat in men decreases plasma fatty acid availability and oxidation during endurance exercise. Am J Physiol Endocrinol Metab 286, 354–362, 2004.10.1152/ajpendo.00301.200314625204
  21. Moro C, Pillard F, de Glisezinski I, Crampes F, Thalamas C, Harant I, Marques MA, Lafontan M, Berlan M. Sex differences in lipolysis-regulating mechanisms in overweight subjects: effect of exercise intensity. Obesity 15, 2245–2255, 2007.10.1038/oby.2007.26717890493
  22. National Health and Nutrition Examination Survey (U.S.). NHANES III plan and operations procedures manuals CD-ROM: draft. National Centers for Disease Control and Prevention, 1997.
  23. Nielsen MB, Colak Y, Benn M, Nordestgaard BG. Causal relationship between plasma adiponectin and body mass index: one- and two-sample bidirectional mendelian randomization analyses in 460 397 individuals. Clin Chem 66, 1548–1557, 2020.10.1093/clinchem/hvaa22733106853
  24. Polito R, Monda V, Nigro E, Messina A, Di Maio G, Giuliano MT, Orru S, Imperlini E, Calcagno G, Mosca L, Mollica MP, Trinchese G, Scarinci A, Sessa F, Salerno M, Marsala G, Buono P, Mancini A, Monda M, Daniele A, Messina G. The important role of adiponectin and orexin-A, two key proteins improving health status: focus on physical activity. Front Physiol 11, 1–17, 2020.10.3389/fphys.2020.00356718891432390865
  25. Simpson KA, Singh MA. Effects of exercise on adiponectin: a systematic review. Obesity 16, 241–256, 2008.10.1038/oby.2007.5318239630
  26. Vaidya A, Forman JP, Hopkins PN, Seely EW, Williams JS. 25-Hydroxyvitamin D is associated with plasma renin activity and the pressor response to dietary sodium intake in Caucasians. J Renin Ang Aldoster Syst 12, 311–320, 2011.10.1177/1470320310391922314695821330422
  27. Vaidya A, Williams JS, Forman JP. The independent association between 25-hydroxyvitamin D and adiponectin and its relation with BMI in two large cohorts: the NHS and the HPFS. Obesity 20, 86–191, 2012.10.1038/oby.2011.210346126321760630
  28. World Health Organization. Global report on diabetes. Geneva, 2016.
  29. World Health Organization. Diabetes [Fact Sheet]. https://www.who.int/news-room/fact-sheets/detail/diabetes, 2021.
DOI: https://doi.org/10.2478/enr-2022-0021 | Journal eISSN: 1336-0329 | Journal ISSN: 1210-0668
Language: English
Page range: 201 - 208
Published on: Jul 13, 2022
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2022 Sony Wibisono Mudjanarko, Anugrahini Irawati, Damayanti Tinduh, published by Slovak Academy of Sciences, Institute of Experimental Endocrinology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.