Have a personal or library account? Click to login
Resistance training alone or combined with leucine supplementation improves the serum lipid profile of diabetic rats, whereas leucine alone does not Cover

Resistance training alone or combined with leucine supplementation improves the serum lipid profile of diabetic rats, whereas leucine alone does not

Open Access
|Aug 2018

References

  1. Bierman EL, Amaral JA, Belknap BH. Hyperlipidemia and diabetes mellitus. Diabetes 15, 675–679, 1966.10.2337/diab.15.9.6755916991
  2. Cartee GD. Mechanisms for greater insulin-stimulated glucose uptake in normal and insulin resistant skeletal muscle after acute exercise. Am J Physiol Endocrinol Metab 309, E949–E959, 2015.10.1152/ajpendo.00416.2015481620026487009
  3. Cauza E, Hanusch-Enserer U, Strasser B, Ludvik B, Metz-Schimmerl S, Pacini G, Wagner O, Georg P, Prager R, Kostner K, Dunky A, Haber P. The relative benefits of endurance and strength training on the metabolic factors and muscle function of people with type 2 diabetes mellitus. Arch Phys Med Rehabil 86, 1527–1533, 2005.10.1016/j.apmr.2005.01.00716084803
  4. Costa RR, Lima AC, Tagliari M, Martins KLF. Effects of resistance training on the lipid profile in obese women. J Sports Med Phys Fitness 51, 169–177, 2011.
  5. D’Souza DM, Al-Sajee D, Hawke TJ. Diabetic myopathy: impact of diabetes mellitus on skeletal muscle progenitor cells. Front Physiol 20, 379, 2013.10.3389/fphys.2013.00379386894324391596
  6. Donato JJr, Pedrosa RG, Cruzat VF, Pires IS, Tirapegui J. Effects of leucine supplementation on the body composition and protein status of rats submitted to food restriction. Nutrition 22, 520–527, 2006.10.1016/j.nut.2005.12.0081660081716600817
  7. Durak EP, Jovanovic-Peterson L, Peterson CM. Randomized crossover study of effect of resistance training on glycemic control, muscular strength, and cholesterol in type I diabetic men. Diabetes Care 13, 1039–1043, 1990.10.2337/diacare.13.10.103922093002209300
  8. Fahlman MM, Boardley D, Lambert CP, Flynn MG. Effects of endurance training and resistance training on plasma lipoprotein profiles in elderly women. J Gerontol A Biol Sci Med Sci 57, B54–B60, 2002.10.1093/gerona/57.2.B5411818424
  9. Gengiah K, Hari R, Anbu J. Antidiabetic antihyperlipidemic and hepato-protective effect of Gluconorm-5: A polyherbal formulation in steptozotocin induced hyperglycemic rats. Anc Sci Life 34, 23–32, 2014.10.4103/0257-7941.150773434264525737607
  10. Ghanbari-Niaki A, Saghebjoo M, Hedayati M. A single session of circuit-resistance exercise effects on human peripheral blood lymphocyte ABCA1 expression and plasma HDL-C level. Regul Pept 166, 42–47, 2011.10.1016/j.regpep.2010.08.00120727372
  11. Guido S, Joseph T. Effect of chemically different calcium antagonists on lipid profile in rats fed on a high fat diet. Indian J Exp Biol 30, 292–294, 1992.1459596
  12. Hinault C, Mothe-Satney I, Gautier N, Van Obberghen E. Amino acids require glucose to enhance, through phosphoinositide-dependent protein kinase 1, the insulin-activated protein kinase B cascade on insulin-resistant adipocytes. Diabetologia 49, 1017–1026, 2006.10.1007/s00125-006-0201-z16550357
  13. Holten MK, Zacho M, Gaster M, Juel C, Wojtaszewski JF, Dela F. Strength training increases insulin-mediated glucose uptake, GLUT4 content, and insulin signaling in skeletal muscle in patients with type 2 diabetes. Diabetes 53, 294–305, 2004.10.2337/diabetes.53.2.29414747278
  14. Hornberger TAJr, Farrar RP. Physiological hypertrophy of the FHL muscle following 8 weeks of progressive resistance exercise in the rat. Can J Appl Physiol 29, 16–31, 2004.10.1139/h04-00215001801
  15. Kraus WE, Houmard JA, Duscha BD, Knetzger KJ, Wharton MB, McCartney JS, Bales CW, Henes S, Samsa GP, Otvos JD, Kulkarni KR, Slentz CA. Effects of the amount and intensity of exercise on plasma lipoproteins. N Engl J Med 347, 1483–1492, 2002.10.1056/NEJMoa02019412421890
  16. Lira FS, Yamashita AS, Uchida MC, Zanchi NE, Gualano B, Martins EJr, Caperuto EC, Seelaender M. Low and moderate, rather than high intensity strength exercise induces benefit regarding plasma lipid profile. Diabetol Metab Syndr 2, 31, 2010.10.1186/1758-5996-2-3120492685288877220492685
  17. Liu H, Liu R, Xiong Y, Li X, Wang X, Ma Y, Guo H, Hao L, Yao P, Liu L, Wang D, Yang X. Leucine facilitates the insulin-stimulated glucose uptake and insulin signaling in skeletal muscle cells: involving mTORC1 and mTORC2. Amino Acids 46, 1971–1979, 2014.10.1007/s00726-014-1752-924806638
  18. Martins CEC, Lima VBS, Schoenfeld BJ, Tirapegui J. Effects of leucine supplementation and resistance training on myopathy of diabetic rats. Physiol Rep 5, e13273, 2017.10.14814/phy2.13273544955928536139
  19. Mathe D. Dyslipidemia and diabetes: animal models. Diabete Metab 21,106–111, 1995.
  20. Molanouri SM, Hassan ZM, Quinn LS, Gharakhanlou R, Baghersad L, Mahdavi M. Time course of IL-15 expression after acute resistance exercise in trained rats: effect of diabetes and skeletal muscle phenotype. Endocrine 49, 396–403, 2014.10.1007/s12020-014-0501-x25522723
  21. Morifuji M, Sakai K, Sanbongi C, Sugiura K. Dietary whey protein downregulates fatty acid synthesis in the liver, but upregulates it in skeletal muscle of exercise-trained rats. Nutrition 21, 1052–1058, 2005.1615724310.1016/j.nut.2005.01.01016157243
  22. Nicastro H, da Luz CR, Chaves DF, das Neves W, Valente KS, Lancha AHJr. Leucine supplementation combined with resistance exercise improves the plasma lipid profile of dexamethasone-treated rats. Lipids Health Dis 11, 11:7, 2012.10.1186/1476-511X-11-7326808322236609
  23. Podrez EA. Anti-oxidant properties of high-density lipoprotein and atherosclerosis. Clin Exp Pharmacol Physiol 37, 719–725, 2010.10.1111/j.1440-1681.2010.05380.x301018420374263
  24. Reeves PG, Nielsen FH, Fahey GCJr. AIN-93 purified diets for laboratory rodents: final report of the American Institute of Nutrition ad hoc writing committee on the reformulation of the AIN-76A rodent diet. J Nutr 123, 1939–1951, 1993.10.1093/jn/123.11.19398229312
  25. Safarzade A, Talebi-Garakani E. Short term resistance training enhanced plasma apoA-I and FABP4 levels in Streptozotocin-induced diabetic rats. J Diabetes Metab Disord 13, 41, 2014.10.1186/2251-6581-13-41394613024593955
  26. Saravanan R, Pari L. Antihyperlipidemic and antiperoxidative effect of Diasulin, a polyherbal formulation in alloxan induced hyperglycemic rats. BMC Complement Altern Med 5, 14, 2005.10.1186/1472-6882-5-14118318815969768
  27. Takada J, Machado MA, Peres SB, Brito LC, Borges-Silva CN, Costa CE, Fonseca-Alaniz MH, Andreotti S, Lima FB. Neonatal streptozotocin-induced diabetes mellitus: a model of insulin resistance associated with loss of adipose mass. Metabolism 56, 977–984, 2007.1757026110.1016/j.metabol.2006.05.02117570261
  28. Torres-Leal FL, Fonseca-Alaniz MH, Teodoro GF, de Capitani MD, Vianna D, Pantaleao LC, Matos-Neto EM, Rogero MM, Donato JJr, Tirapegui J. Leucine supplementation improves adiponectin and total cholesterol concentrations despite the lack of changes in adiposity or glucose homeostasis in rats previously exposed to a high-fat diet. Nutr Metab (Lond) 8, 62, 2011.10.1186/1743-7075-8-62318404321899736
  29. Williams MA, Haskell WL, Ades PA, Amsterdam EA, Bittner V, Franklin BA, Gulanick M, Laing ST, Stewart KJ. Resistance exercise in individuals with and without cardiovascular disease: 2007 update: a scientific statement from the American Heart Association Council on Clinical Cardiology and Council on Nutrition, Physical Activity, and Metabolism. Circulation 116, 572–584, 2007.10.1161/CIRCULATIONAHA.107.18521417638929
  30. Williams AD, Almond J, Ahuja KD, Beard DC, Robertson IK, Ball MJ. Cardiovascular and metabolic effects of community based resistance training in an older population. J Sci Med Sport 14, 331–337, 2011.10.1016/j.jsams.2011.02.01121441068
  31. Zhang Y, Guo K, LeBlanc RE, Loh D, Schwartz GJ, Yu YH. Increasing dietary leucine intake reduces diet-induced obesity and improves glucose and cholesterol metabolism in mice via multimechanisms. Diabetes 56, 1647–1654, 2007.1736097810.2337/db07-012317360978
DOI: https://doi.org/10.2478/enr-2018-0018 | Journal eISSN: 1336-0329 | Journal ISSN: 1210-0668
Language: English
Page range: 146 - 151
Published on: Aug 9, 2018
Published by: Slovak Academy of Sciences, Mathematical Institute
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2018 Carlos Eduardo C. Martins, Vanessa B. de Sousa Lima, Henrique Quintas T. Ribeiro, Julio Tirapegui, published by Slovak Academy of Sciences, Mathematical Institute
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.