Published June 15, 2014 | Version v1
Journal article Open

PROTECTIVE EFFECT OF 1-DEOXYNOJIRIMYCIN AND RESVERATROL AGAINST DIABETIC OXIDATIVE STRESS AND INFLAMMATION

  • 1. Faculty of Geography and Biology, Pedagogical University, Kraków, Poland,
  • 2. Faculty of Biotechnology and Food Sciences, Slovak University of Agriculture, Nitra, Slovakia

Description

Diabetes mellitus (DM) was induced in groups II, V, and VI. Animals III experimental group was administered 1-deoxynojirimycin (DNJ) in dose 0,75 mgKg-1 body weight/day for 14 days. Mice IV experimental group was administered resveratrol (RSV) in dose 30 mgKg-1 body weight/day for 14 days. Animals group V: diabetic group receiving DNJ, group VI: diabetic group receiving RSV. Thirty minutes after the last injection animals were anaesthetized and decapitated. Serum level of interleukin-6 (IL-6) was assessed as surrogate markers of inflammation. The livers levels of reduced glutathione (GSH), glutathione peroxidase (GPx), catalase (CAT) and superoxide dismutase (SOD) activity were measured as surrogate markers of oxidative stress. Serum level of insulin and plasma glucose levels were assessed as surrogate markers of diabetes. The administration of DNJ or RSV significantly restored glucose, insulin, IL-6, GSH levels and SOD, CAT, GPx activity in the diabetic mice to near control. The results demonstrated that DNJ and RSV with its antidiabetic, antiinflammation and antioxidant properties could be a potential herbal medicine in treating diabetes and hepatic problems.

Files

6. GREŃ et al. 2014 Vol. 63, No. 1-2 pp. 44-54.pdf

Files (1.3 MB)

Additional details

References

  • Aebi , H.: Catalase in vitro. Met. Enzym., 105:121–126, 1984.
  • Asano , N., Tomioka , E., Kizu , H., Matsui , K.: Sugars with nitrogen in the ring isolated from the leaves of Morus bombycis. Carbohydr. Res., 253:235–245, 1994.
  • Asano , N., Yamashita , T., Yasuda , K., Ikeda , K., Kizu , H., Kameda , Y., Kato , A., Nash , R.J., Lee , H.S., Ryu , K.S.: Polyhydroxylated alkaloids isolated from mulberry trees (Morus alba L.) and silkworms (Bombyc mori L.). J. Agric. Food Chem., 49:4208–4213, 2001.
  • Bradford , M.M.: A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein dye binding. Anal. Biochem., 72(1- 2)248–254, 1976.
  • Ceriello , A., Testa , R.: Antioxidant anti-inflammatory treatment in type 2 diabetes. Diab. Care., 32(2)S232–S236, 2009.
  • Chung , H.Y., Kim , H.J., Kim , J.W., Yu, B.P: The inflammation hypothesis of aging: molecular modulation by calorie restriction. Ann. NY. Acad. Sci., 928:327–335, 2001.
  • Dandona , P., Aljada , A., Bandyopadhyay , A.: I nflammation: t he l ink b etween insulin resistance, obesity and diabetes. Trends Immun., 25(1)4–7, 2004.
  • Deshpande , M.C., Venkateswarlu , V., Babu , R.K., Trivedi , R.K.: Design and evaluation of oral bioadhesive controlled release formulations of miglitol, intended for prolonged inhibition of intestinal alpha-glucosidases and enhancement of plasma glycogen like peptide-1 levels. Int. J. Pharm., 380:16–24, 2009.
  • Dhindsa , S., Tripathy , D., Mohanty , P.: Differential effects of glucose and alcohol on reactive oxygen species generation and intranuclear nuclear factor-κB in mononuclear cells. Metabolism: Clin. Exp., 53(3)330–334, 2004.
  • Flohe , L., Otting , F.: Superoxide dismutase assays. Met. Enzym., 105:93–104, 1984.
  • Gilman , A.G., Rall , T.W., Nies , A.S., Tayer , P.: Goodman and Gilman's The Pharmacological Basis of Therapeutics (8th ed.). New York: Pergamon, pp. 1317–1322, 1463–1495, 1990.
  • Greń , A., Formicki , G.: Antioxidants in therapy and prevention of diabetes mellitus. In Xenobiotics : soil, food and human health interactions, Rzeszów , Wydawnictwo Uniwersytetu Rzeszowskiego, pp. 276-291, 2012.
  • Greń , A., Formicki , G., Kapusta , E., Szaroma , W., Muchacka R., Kopańska , M., Kraska , K.: Effect of some foodstuffs on the development in diabetes. JMBFS, 2:1205-1214, 2013.
  • Hikino , H., Mizuno , T., Oshima , Y., Konno , C.: Isolation and hypoglycemic activity of moran A, a glycolprotein of Morus alba root barks. Planta Med., 51:159–160, 1985.
  • Hotamisligil , G.S., Peraldi , P., Budavari , A., Ellis , R., White , M.F., Spiegelman , B.M.: IRS-1-mediated inhibition of insulin receptor tyrosine kinase activity in TNF-α- and obesity-induced insulin resistance. Science., 271(5249)665–668, 1996.
  • Ishihara , K., Hirano , T.: IL-6 in autoimmune disease and chronic inflammatory proliferative disease. Cytok. Grow. Fact. Rev., 13(4-5)357–368, 2002.
  • Jakus , V.: The role of free radicals, oxidative stress antioxidant systems in diabetic vascular disease. Bratisl. Lek. List., 101:541–51, 2000.
  • Junge , B., Matzke , M., Stoltefuss , J.: Chemistry and structure-activity relationships of glucosidase inhibitors. In Handbook of Experimental Pharmacology, 119. Springer-Verlag; New York, pp. 411–482, 1996.
  • Kimura, M., Chen, F., Nakashima, N., Kimura, I., Asano, N., Koya, S.: Antihyperglycemic effects of N-containing sugars derived from mulberry leaves in streptozocininduced diabetic mice. J. Trad. Med., 12:214–219, 1995.
  • King , G.L., Loeken , M.R.: Hyperglycemia-induced oxidative stress in diabetic complications. Histochem. Cell Biol., 122:333–8, 2004.
  • Kong , W.H., Oh, S.H., Ahn , Y.R., Kim , K.W., Kim , J.H., Seo , S.W.: Antiobesity effects and improvement of insulin sensitivity by 1-deoxynojirimycin in animal models. J. Agric. Food Chem., 56:2613–2619, 2008.
  • Ledoux , S.P., Woodley , S.E., Patton , N.J., Wilson , L.G.: Mechanisms of nitrosourea- induced beta-cell damage. Alterations in DNA. Diabetes, 35:866–872, 1986.
  • Lin , y., Berg , A.H., Iyengar , P.: The hyperglycemia-induced inflammatory response in adipocytes: the role of reactive oxygen species. J. Biol. Chem., 280(6)4617– 4626, 2005.
  • McAnulty , L.S., Miller , L.E., Hosick , P.A., Utter , A.C., Quindry , J.C., McAnulty , S.R.: Effect of resveratrol and quercetin supplementation on redox status and inflammation after exercise. Appl. Physiol. Nutr. Metab., 38(7)760-765, 2013.
  • Murugan , P., Pari , L.: Antioxidant effect of tetrahydrocurcumin in streptozotocinnicotinamide induced diabetic rats. Life Sci., 79(18)1720–1728, 2006.
  • Paglia , D.E., Valentine , W.N.: Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase. J. Lab. Clin. Med., 70(1)158–169, 1967.
  • Pickup , J.C.: Inflammation and activated innate immunity in the pathogenesis of type 2 diabetes. Diab. Care., 27(3)813–823, 2004.
  • Pickup , J.C., Mattock , M.B. Activation of the innate immune system as a predictor of cardiovascular mortality in type 2 diabetes mellitus. Diab. Med., 20(9):723–726, 2003.
  • Rerup , C.C.: Drugs producing diabetes through damage of the insulin secreting cells. Pharmacol. Rev., 22:485–518, 1970.
  • Sakowicz -Burkiewicz , M., Kocbuch , K., Grden , M., Szutowicz , A., Pawelczyk , T.: Diabetes-induced decrease of adenosine kinase expression impairs the proliferation potential of diabetic rat T lymphocytes. Immun., 118(3)402–412, 2006.
  • Sedlak , J., Lindsay , R.H.: Estimation of total, protein-bound, and nonprotein sulfhydryl groups in tissue with Ellman's reagent. Anal. Biochem., 25(C)192–205, 1968.
  • Shoelson , S.E., Lee , J., Goldfine , A.B.: Inflammation and insulin resistance. J. Clin. Invest. 116:1793-1801, 2006.
  • Wellen , K.E., Hotamisligil , G.S.: Inflammatio n, stress, and diabetes. J. Clin. Invest. 115(5)1111–1119, 2005.
  • Yagi , M., Kouno , T., Aoyagi , Y., Murai , H.: The structure of moranoline, a piperidine alkaloid from Morus species. Nip. Nogeik. Kais., 50:571–572, 1976.
  • Zdrojewicz , Z., Belowska -Bień , K.: Resveratrol-its activity and clinical role. Adv. Clin. Exp. Med., 14(5)1051-1056, 2005.
  • Zhao , K., Su, Z.R., Yang , B.W., Tan , F., Deng , J.: Determination of resveratrol and polydatin in mulberry. Food Sci., 31(14)241-244, 2005.