Anti-diabetic and toxicological profile of aqueous leaves extract of Ocimum gratissimum in alloxan-induced diabetic rats
الموضوعات : مجله گیاهان داروییعبدالکریم محمود 1 , بوخاری محمود 2 , آدنیک اولادیجی 3
1 - گروه بیوشیمی ، دانشکده علوم زندگی ، دانشگاه ایلورین ، ایالت کوارا ، نیجریه
2 - گروه داروسازی و درمانی ، دانشکده علوم دارویی ، دانشگاه احمد بلو ، زاریا ، ایالت کادونا ، نیجریه
3 - گروه بیوشیمی ، دانشکده علوم زندگی ، دانشگاه ایلورین ، ایالت کوارا ، نیجریه
الکلمات المفتاحية: Diabetes, Alloxan, Metformin, Ocimum gratissimum,
ملخص المقالة :
Background & Aim:Ocimum gratissimumis an aromatic plants used among traditional medicine practitioners in the treatment of warts, diarrhoea, headache, diabetes etc. This study aimed at evaluating the anti-diabetic and toxicity profile of aqueous leaf extract of the plant in alloxan-induced diabetic rats.Experimental: Thirty albino rats (111.33 ±1.50g) were grouped into six (A-F) groups of animals. Group A received 0.5 ml distilled water (p.o) for eight days. Diabetes was induced in group B-F animals using 160 mg/kg alloxan (i.p ) and thereafter administered 2.5 metformin, 125, 250 and 500 mg/kg aqueous leaves extract of Ocimum gratissimum, respectively (p.o) for 8 consecutive days. Blood sugar level was taken 1 h after drug administration every other day. Body weights of animals were taken before induction, after induction, and on the 8th day. Blood samples and organs (liver, kidney, and pancreas) were collected for biochemical assays and histopathological examinations.Results: Alloxan significantly (p <0.05) increased the glucose, albumin, urea, creatinine, bilirubin, Alkaline phosphatase (ALP), Aspartate transaminase (AST) and Alanine transaminase (ALT) levels of rats compared with the distilled water group. The aqueous leaves extract of Ocimum gratissimum significantly (p <0.05) reduced the glucose, albumin, urea, creatinine, bilirubin, ALP, AST and ALT levels compared with the diabetic untreated rats. There were no significant histological changes in the liver, pancreas and kidneys of diabetic treated rats compared with diabetic untreated rats which exhibited moderately distorted organ degeneration.Recommended applications/industries: Aqueous leaves extract of Ocimum gratissimum possesses anti-hyperglycemic effects and is relatively safe for use in the treatment of diabetics.
Akinmoladun, A.C., Ibukun, E.O., Emmanuel, A., Obuotor, E.M., Farombi, E.O. 2007. Phytochemical constituent and antioxidant activity of extract from the leaves of Ocimum gratissimum. Science Research Essay, 2: 163-6.
Bagri, P., Ali, M., Aeri, V., Bhowmik, M., Sultana, S. 2009. Antidiabetic effect of Punica granatum flowers: effect on hyperlipidemia, pancreatic cells lipid peroxidation and antioxidant enzymes in experimental diabetes. Food and Chemical Toxicology; 47(1): 50–54.
Chikezie, P.C., Ojiako, O., Nwufo, K.C. 2015. Overview of anti-diabetic medicinal plants: the Nigerian research experience. Journal of Diabetes & Metabolism, 6(6): 546-572.
Derek, L.R. 2001. Current therapeutics algorithms for type 2 diabetes. Diabetes. Clinical Cornerstone,4(2): 38- 49
Dewanjee, S., Bose, S., Sahu, R., Mandal, S. 2008. Antidiabetic effect of matured fruits of Diospyros peregrina in alloxan-induced diabetic rats. International Journal of Green Pharmacy,2(2):95-99.
Drury, R.A. and Wallington, E.A. 1980. Carleton’s histological technique. 5th ed. Oxford University Press, NewYork, pp. 195.
Effraim, K.D., Jacks, T.W., Sodipo, O.A. 2003. Histopathological studies on the toxicity of Ocimum gratissimum leave extract on some organs of rabbit. African Journal of Biomedical Research, 6(1): 21-25.
Evelyn, K.A. and Malloy, H.T. 1938. Micro determination of oxyhaemoglobin, methaemoglobin and sulphaemoglobin in a single sample of blood. Journal of Biology and Chemistry, 126: 655-661.
Ezekwe, S.A. and Chekezie, P.C. 2017. GC-MS analysis, hypoglycemic activity of aqueous root extract of Carica papaya and its effects on blood lipid profile and hepatorenal tissues biomarkers of diabetic rats. Journal of Diabetes and Metabolism. 8(5): 740-748.
Ezuruike, U.F. and Prieto, J.M. 2014. The use of plants in the traditional management of diabetes in Nigeria: Pharmacological and toxicological considerations. Journal of Ethnopharmacology, 155(2): 857–924.
Gardner, D.G. and Shoback, D. 2011. Pancreatic hormones and diabetes melitus In: Greenspan's basic & clinical endocrinology (9th ed.). New York: McGraw-Hill Medical.
Gaster, B. and Hirsch, I.B. 1998. The effects of improved glycemic control on complications in type 2 diabetes. Archive of Internal Medicine, 158:134–140.
Grant, G.H. 1987. Amino acids and proteins; fundamentals of clinical chemistry, Tiez, N. W. Editor, 3rd ed. W.B. Saunders Company Philadelphia USA, pp. 328-329.
Gupta, R.K., Kesari, A.N., Murthy, P.S., Chandra, R., Tandon, V., Watal, G. 2005. Hypoglycemic and antidiabetic effect of ethanolic extract of leaves of Annonasquamosa L. in experimental animals. Ethnopharmacol, 99 (1):75–81.
Ijeh, I.I., Omodamiro, O.D., Nwanna, I.J. 2005. Antimicrobial effects of aqueous and ethanolic fractions of two spices, Ocimum gratissimum and Xylopia aethiopica. African Journal of Biotechnology, 4 (9): 953-956.
International Diabetes Federation, 2017. Diabetes Atlas, 8th ed. Brussels, Belgium: available at: https://www.diabetesatlas.org/upload/resources/previous/files/8/IDF_DA_8e-EN-final.pdf.
Jalal, R., Bagheri, S.M., Moghimi, A., Rasuli, M.B. 2007. Hypoglycemic effect of aqueous shallot and garlic extracts in rats with fructose-induced insulin resistance. Journal of Clinical Biochemistry and Nutrition, 41(3): 218–223.
Jarald, E., Joshi, S.B. and Jain, D.C. 2008. Diabetes vs herbal medicines. Iranian Journal of Pharmacology and Therapeutics, 7(1): 97-100.
Joseph, F. 2017. Quantitative human physiology: an introduction. (2nded). Amsterdam: Elsevier/Academic Press.
Kaplan, A. 1965. Urea nitrogen and urinary ammonia. In: Standard Method of Clinical Chemistry, ed. Meites S. Academic Press Inc., New York. pp. 245-256.
Koda-Kimble, M.A. 2012. Koda-Kimble and Young's applied therapeutics: the clinical use of drugs. 9th ed. Lippincott Williams & Wilkins, Philadelphia.
Malloy, H.T. and Evelyn, K.A. 1938. Oxidation method for bilirubin determinations in bile and meconium with the photoelectric colorimeter. Journal of Biological Chemistry, 122: 597-603.
Marles, R.J. and Farnsworth, N.R. 1994. Plants as sources of antidiabetic agents In: Wagner, H. and Farnsworth, N.R., Eds, Economic and medicinal plant research, Academic Press, Ltd., pp. 149-187.
Mohammed, A., Ibrahim, M.A., Islam, S. 2014. African medicinal plants with antidiabetic potentials: A review. PlantaMedica, 80(5): 354–377.
Moller, D.E. 2001. New drug targets for type 2 diabetes and the metabolic syndrome. Nature, 414 (6865): 821-827.
Onyema, O.O., Farombi, E.O, Emerole, G.O, Ukoha, A.L., Onyeze, G.O. 2006. Effects of vitamin E on monosodium glutamate induced hepatotoxicity and oxidative stress in rats. Indian Journal of Biochemistry Biophysics, 43(1):20-24.
Philip, D.M. 1996. Clinical chemistry in diagnosis and treatment. 6th ed. Arnold. Britain. pp. 300.
Philomena, G. 2011. Concerns regarding the safety and toxicity of medicinal plants - An overview. Journal of Applied Pharmaceutical Science, 1(6): 40-44.
Ragavan, B. and Krishnakumari, S. 2006. Antidiabetic effect of T. arjuna bark extract in alloxan induced diabetic rats. Indian Journal of Clinical Biochemistry, 21(2):123.
Rao, M.U., Sreenivasulu, M., Chengaiah, B., Reddy, K.J., Chetty, C.M. 2010. Herbal medicines for diabetes mellitus: A review. International Journal of PharmTech Research, 2(3):1883–1892.
Reitman, S. and Frankel, S. 1957. Colorimetric method for the determination of serum glutamic oxalacetic and glutamic pyruvic transaminases. American Journal of Clinical Pathology, 28(1): 56- 63.
Saeed, M.K., Deng, Y., Dai, R. 2008. Attenuation of biochemical parameters in streptozotocin-induced diabetic rats by oral administration of extracts and fractions of Cephalotaxussinensis. Journal of Clinical Biochemistry and Nutrition, 42(1): 21-28.
Saeedi, P., Petersohn, I., Salpea, P., Malanda, B., Suvi K. 2019. Global and regional diabetes prevalence estimates for 2019 and projections for 2030 and 2045: Results from the International Diabetes Federation Diabetes Atlas, 9th ed. Diabetes Research and Clinical Practice. 157: 107843-107852.
Shirwaiker, A., Rajendran, K., Kumar, C. 2004. Oral antidiabetic activity of Annona squamosa leaf in alcohol extract in NIDDM rats. Pharmaceutical Biology 42(1):30-35.
Shlomo, M., Polonsky, K.S., Larsen, P.R., Kronenberg, H.M. 2011. Diabetes Mellitus. Willams textbook of endocrinology, 12th ed. Philadelphia: Elsevier/Saunders; pp.1371-1435.
Singh, A., Baht, T.K., Sharma, O.P. 2011. Clinical biochemistry of hepatotoxicity. Journal of Clinical Toxicology, 4(001):19.
Tabuchi, M., Ozaki, M., Tamura, A., Yamada, N., Ishida, T., Hosoda, M., Hosono, A. 2003. Antidiabetic effect of Lactobacillus GG in streptozotocin-induced diabetic rats. Bioscience, Biotechnology and Biochemistry, 67(6):1421–1424.
Tawfik, M.S. and Al-Badr, N. 2012. Adverse effects of monosodium glutamate on liver and kidney functions in the adult rats and potential protective effect of vitamin C and E. Food and Nutrition Sciences, 3(5): 651-659.
Tietz, N.W. 1995. Clinical guide to laboratory Tests.3rd ed. WB Saunders Company. Philadelphia. PA. pp. 518-519.
Unnikrishnan, R., Shah, V.N., Mohan, V. 2016. Challenges in diagnosis and management of diabetes in the young. Clinical Diabetes and Endocrinology, 2 (18): 1-9.
Wagner, W.L., Herbst, D.R., Sohmer, S.H. 1999. Manual of the flowering plants of Hawaii, Revised edition. Bernice P. Bishop Museum Special Publication. University of Hawaii Press. Honolulu, pp. 1952.
World Health Organisation, 2016. Global Report on Diabetes. World Health Organization, Geneva, Switzerland: available at: https://apps.who.int/iris/bitstream/handle/ 10665/204871/9789241565257_eng.pdf?sequence=1
World Health Organization, 2013.World Health Assembly, Follow-up to the Political Declaration of the High-level Meeting of the General Assembly on the Prevention and Control of Non-communicable Diseases Geneva: available at: https://www.who.int/ncds/governance/2013-resolution-which-adopted-GAP.pdf?ua
World Health Organization, 2017. The selection and use of essential medicines: report of the WHO expert committee, 2017 (including the 20th WHO model list of essential medicines and the 6th model list of essential medicines for children). World Health Organization, Geneva, Switzerland: available at: https://apps.who.int/iris/bitstream/handle/10665/259481/9789241210157-eng.pdf.
Yakubu, M.T., Akanji, M.A., Nafiu, M.O. 2010. Anti-diabetic activity of aqueous extract of Cochlospermum planchonii root in alloxan-induced diabetic rats. Cameroon Journal of Experimental Biology, 6(2): 91-100.
Yang, X.B., Huang, Z.M., Cao, W.B., Zheng, M., Chen, H.Y., Zhang. J.Z. 2000. Antidiabetic effect of Oenanthe javanica flavone. Acta Pharmacologica Sinica; 21(3):239–242.
Zimmet, P., Alberti, K.G., Shaw, J. 2001. Global and societal implications of the diabetes. Nature, 414:782-787.