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Licensed Unlicensed Requires Authentication Published by De Gruyter July 2, 2013

The evaluation of the hypoglycemic effect of soft drink leaf extract of Phyllanthus amarus (Euphorbiaceae) in rats

  • Adeolu Alex Adedapo EMAIL logo and Sunday Oluwaseun Ofuegbe

Abstract

Background: Phyllanthus amarus has been used in traditional medicine in Nigeria to treat some disease conditions. This study evaluated the soft drink extract (SDE) of the plant for antidiabetic activities in rats.

Methods: Standard phytochemical methods were used to test for the presence of phytoactive compounds in the plant. Acute toxicity was carried out in mice to determine safe doses for this plant extract. The antidiabetic activities of the SDE of the plant were assessed using some standard tests as well as histological changes in liver, kidney and pancreas. Diabetes mellitus was induced in rats using alloxan, whereas glibenclamide at 0.2 mg/kg was the reference drug used in this study.

Results: The SDE at 200 and 400 mg/kg body weight caused a significant reduction of fasting blood glucose, a significant change in the oral glucose tolerance test, a marked effect in the hypoglycemic activity test, and a pronounced reduction in the glucose, cholesterol and triglyceride levels of diabetic rats. Histopathologically, the liver of the diabetic nontreated and glibenclamide-treated groups showed widespread vacuolar change in the hepatocytes, but there was no visible lesion seen in the kidney and pancreas of extract-treated and glibenclamide-treated groups. No lesion was also seen in the liver of the SDE-treated group.

Conclusions: The results from this study may have validated the traditional basis for the use of P. amarus as antidiabetic agent with the pharmacological activities attributed to the presence of flavonoids and other phenolics contained in this plant. At the doses used, SDE also appeared safer than glibenclamide even though the latter is more potent.


Corresponding author: Adeolu Alex Adedapo, Veterinary Physiology, Biochemistry and Pharmacology Faculty of Veterinary Medicine, University of Ibadan Faculty of Veterinary Medicine, Oyo State 20005, Nigeria; and Biological Sciences College of Natural and Applied Sciences, Wesley University of Science and Technology, Ondo State, Nigeria, Phone: +234 8162746222, E-mail:

This study was carried out with the University of Ibadan Senate research grant (SRG/FVM/2010/10A) awarded to Dr. A.A. Adedapo.

Conflict of interest statement

Authors’ conflict of interest disclosure: The authors stated that there are no conflicts of interest regarding the publication of this article. Research support played no role in the study design; in the collection, analysis, and interpretation of data; in the writing of the report; or in the decision to submit the report for publication.

Research funding: None declared.

Employment or leadership: None declared.

Honorarium: None declared.

References

1. Wild S, Roglic G, Green A, Sicree R, King H. Global prevalence of diabetes. Diabetes Care 2004;27:1047–53.10.2337/diacare.27.5.1047Search in Google Scholar

2. Taylor R, Agius L. Effect of spray-dried ethanol extract of Andrographis paniculata (Burm. F.) Nees on streptozotocin induced diabetic female rats. J Biochem 1998;250:650–740.Search in Google Scholar

3. Ghosh D, Bera TK, Chatterjee K, Ali KM, Debasis D.E. Antidiabetic and antioxidative effects of aqueous extract of seed of Psoralea corylifolia (Somraji) and seed of Trigonelia foenum-graecum L. (METHI) in separate and composite manner in streptozocin-induced diabetic male albino rat. Int J Pharm Res Dev 2009;7:1–10.Search in Google Scholar

4. Macedo CS, Capelletti SM, Mercadante MC, Padovani CR, Spadella CT. Role of metabolic control on diabetic nephropathy. Acta Cir Bras 2002;17:37–45.10.1590/S0102-86502002000600003Search in Google Scholar

5. Mannucci E, Monami N, Masotti G, Marchionni N. All-cause mortality in diabetic patients treated with combinations of sulfonylureas and biguanides. Diabetes Metab Res Rev 2004;20:44–7.10.1002/dmrr.411Search in Google Scholar

6. Sarma G, Das S. Hypoglycemic action of seed kernel of Caesalpinia bonducella Fleming in normal and alloxan-induced diabetic albino rats. Internet J Pharmacol 2009;6:67.Search in Google Scholar

7. Osadolor HB, Ariyo II, Emokpae MA, Anukam KC. Hypoglycemic effects of unripe pawpaw on streptozotocin induced diabetic albino rats. Res J Med Plant 2011;5:90–4.10.3923/rjmp.2011.90.94Search in Google Scholar

8. Nyunaï N, Njikam N, Abdennebi E, Mbafor JT, Lamnaouer D. Hypoglycaemic and antihyperglycaemic activity of Ageratum onyzoides L. in rats. Afr J Tradit Complement Altern Med 2011;6:123–30.Search in Google Scholar

9. Akah PA, Okoli CO, Nwafor SV. Phytotherapy in the management of diabetes mellitus. J Nat Rem 2002;2:1–10.Search in Google Scholar

10. Bagchi GD, Srivastava GN, Singh SC. Distinguishing features of medicinal herbaceous species of Phyllanthus occurring in Lucknow District (U.P.) India. Int J Pharmacogn 1992;30:161–8.10.3109/13880209209053985Search in Google Scholar

11. Calixto JB, Beirith A, Ferreira J, Santos AR, Cechinel Filho V, Yunes RA. Naturally occurring antinociceptive substances from plants. Phytother Res 2000;14:401–18.10.1002/1099-1573(200009)14:6<401::AID-PTR762>3.0.CO;2-HSearch in Google Scholar

12. Odetola AA, Akojenu SM. Antidiarrhoeal and gastrointestinal potentials of the aqueous extracts of Phyllanthus amarus (Euphorbiaceae). Afr J Med Sci 2000;29:119–22.Search in Google Scholar

13. Adeneye AA, Benebo AS, Agbaje EO. Protective effect of the aqueous leaf and seed extract of Phyllanthus amarus on alcohol-induced hepatotoxicity in rats. West Afr J Pharmacol Drug Res 2006;22–23:42–50.10.4314/wajpdr.v22i1.14767Search in Google Scholar

14. Irvine FR. Plants of the Gold Coast. Oxford, UK: Oxford University Press, 1930.Search in Google Scholar

15. Adedapo AA, Adegbayibi AY, Emikpe BO. Some clinico-pathological changes associated with the aqueous extract of the leaves of Phyllanthus amarus in rats. Phytother Res 2005;19:971–6.10.1002/ptr.1768Search in Google Scholar

16. Burkill HM. The useful plants of West Tropical Africa. Vol. II. Royal Botanical Gardens: Kew, 1994.Search in Google Scholar

17. Adedapo AA. Toxicological studies of some plants in the family Euphorbiaceae in rats. PhD thesis, University of Ibadan, Nigeria, 2002.Search in Google Scholar

18. Moody JO, Robert VA, Connolly JD, Houghton PJ. Anti-inflammatory activities of the methanol extracts and an isolated furanoditerpene constituent of Sphenocentrum jollyanum Pierre (Menispermaceae). J Ethnopharmacol 2006;104:87–91.10.1016/j.jep.2005.08.051Search in Google Scholar

19. Sawadogo WR, Boly R, Lompo M, Some N. Anti-inflammatory, analgesic and antipyretic activities of Dicliptera verticillata. Int J Pharmacol 2006;2:435–8.10.3923/ijp.2006.435.438Search in Google Scholar

20. Shale TL, Stirk WA, Van Staden J. Screening of medicinal plants used in Lesotho for antibacterial and anti-inflammatory activity. J Ethnopharmacol 1999;67:347–54.10.1016/S0378-8741(99)00035-5Search in Google Scholar

21. Hilaly JE, Israili ZH, Lyoussi B. Acute and chronic toxicological studies of Ajuga iva in experimental animals. J Ethnopharmacol 2004;91:43–50.10.1016/j.jep.2003.11.009Search in Google Scholar

22. Aruna RV, Ramesh B, Kartha VN. Effect of beta carotene on protein glycosylation in alloxan induced diabetic rats. Indian J Exp Biol 1999;32:399–401.Search in Google Scholar

23. Okoli CO, Ibiam FA, Ezike AC, Akah PA, Okoye TC. Evaluation of antidiabetic potentials of Phyllanthus niruri in alloxan diabetic rats. Afr J Biotechnol 2010;9:248–59.Search in Google Scholar

24. Muller PH, Schmulling RM, Eggstein M. A fully enzymatic triglyceride determination. J Clin Chem 1977;15:457–504.Search in Google Scholar

25. Cole EH. Veterinary clinical pathology, 4th ed. Philadelphia, USA: W.B. Saunders Publishing Company, 1986.Search in Google Scholar

26. Baily CJ, Flatt PR. Antidiabetic drugs, new developments. Indian Biotechnol 1986;6:139–42.Search in Google Scholar

27. Rao NK, Nammi S. Antidiabetic and renoprotective effects of the chloroform extract of Terminalia chebula Retz. seeds in streptozotocin-induced diabetic rats. BMC Complement Alt Med. 2006;6:17.Search in Google Scholar

28. Adedapo AA, Koduru S, Jimoh FO, Masika PJ, Afolayan AJ. Evaluation of the medicinal potentials of the methanol extracts of the leaves and stem of Halleria lucida. Bioresour Technol 2008;99:4158–63.10.1016/j.biortech.2007.08.066Search in Google Scholar

29. Adedapo AA, Jimoh FO, Afolayan AJ, Masika PJ. Antioxidant activities and phenolic contents of the methanol extracts of the stems of Acokanthera oppositifolia and Adenia gummifera. BMC Complement Altern Med 2008;8:54.10.1186/1472-6882-8-54Search in Google Scholar

30. Ayoola GA, Coker HA, Adesegun SA, Adepoju-Bello AA, Obaweya K, Ezennia EC, et al. Phytochemical screening and antioxidant activities of some selected medicinal plants used for malaria therapy in southwestern Nigeria. Trop J Pharm Res 2008;7:1019–24.Search in Google Scholar

31. Lai FR, Wen QB, Li L, Wu H, Li XF. Antioxidant activities of water-soluble polysaccharide extracted from mung bean (Vigna radiata L.) hull with ultrasonic assisted treatment. Carbohyd Polym 2010;81:323–9.10.1016/j.carbpol.2010.02.011Search in Google Scholar

32. Bravo L. Polyphenols: chemistry, dietary sources, metabolism, and nutritional significance. Nutr Rev 1998;56:317–33.10.1111/j.1753-4887.1998.tb01670.xSearch in Google Scholar

33. Duthie M. Plant polyphenols in cancer and heart disease: implications as nutritional antioxidants. Nutr Res Rev 2000;13:79–106.10.1079/095442200108729016Search in Google Scholar

34. Huang Z, Wang B, Eaves DH, Shikany JM, Pace RD. Phenolic compound profile of selected vegetables frequently consumed by African Americans in the southeast United States. Food Chem 2007;103:1395–402.10.1016/j.foodchem.2006.10.077Search in Google Scholar

35. Jimoh FO, Adedapo AA, Afolayan AJ. Assessing the polyphenolic, nutritive and biological activities of acetone, methanol and aqueous extracts of Rumex sagittatus Thunb. Afr J Pharm Pharmacol 2010;4:629–35.Search in Google Scholar

36. Wu L-C, Hsu H-W, Chen Y-C, Chiu C-C, Lin Y-I, Ho JA. Antioxidant and antiproliferative activities of red pitaya. Food Chem 2005;17:341–6.Search in Google Scholar

37. Kim K-H, Tsao R, Yang R, Cui SW. Phenolic acid profiles and antioxidant activities of wheat bran extracts and the effect of hydrolysis conditions. Food Chem 2005;95:466–73.Search in Google Scholar

38. Chen HY, Yen GC. Antioxidant activity and free radical-scavenging capacity of extracts from guava (Psidium guajava L.) leaves. Food Chem 2007;101:689–94.Search in Google Scholar

39. Balkau B. The DECODE study. Diabetes epidemiology: collaborative analysis of diagnostic criteria in Europe. Diabetes Metab 2000;26:282–6.Search in Google Scholar

40. Ceriello A. Postprandial hyperglycemia and diabetes complications: is it time to treat? Diabetes 2005;54:1–7.10.2337/diabetes.54.1.1Search in Google Scholar

41. Khanna AK, Rizvi F, Chander R. Lipid lowering activity of Phyllanthus niruri in hyperlipemic rats. J Ethnopharmacol 2002;82:19–22.10.1016/S0378-8741(02)00136-8Search in Google Scholar

42. Agrawal RP, Sharma P, Pal M, Kochar A, Kochar DK. Magnitude of dyslipidemia and its association with micro and macro vascular complications in type 2 diabetes: a hospital based study from Bikaner (Northwest India). Diabetes Res Clin Pract 2006;73:211–4.10.1016/j.diabres.2006.01.006Search in Google Scholar

43. Ahmed I, Lakhani MS, Gillet M, John A, Raza H. Hypotriglyceridemic and hypocholesterolemic effects of antidiabetic Momordica charantia (Karela) fruit extract in streptozotocin-induced diabetic rats. Diabetes Res Clin Pract 2001;51:151–61.10.1016/S0168-8227(00)00224-2Search in Google Scholar

44. Bhat R, Bhansali A, Bhadada S, Sialy R. Effect of pioglitazone therapy in lean type 1 diabetes mellitus. Diabetes Res Clin Pract 2007;78:349–54.10.1016/j.diabres.2007.04.012Search in Google Scholar PubMed

45. Lee JH, Park JW, Kim JS, Park BH, Rho HW. Protective effect of amomi semen extract on alloxan-induced pancreatic β-cell damage. Phytother Res 2008;22:86–90.10.1002/ptr.2271Search in Google Scholar PubMed

46. Leung KK, Leung PS. Effects of hyperglycemia on the angiotensin II receptor type 1 expression and insulin secretion in an INS-1E pancreatic beta-cell line. J Pancreas (Online) 2008;9:290–9.Search in Google Scholar

47. Tasaduq SA, Singh K, Sethi S, Sharma SC, Bedi KL, Singh J, et al. Hepatocurative and antioxidant profile of HP-1, a polyherbal phytomedicine. Hum Exp Toxicol 2003;22:639–45.10.1191/0960327103ht406oaSearch in Google Scholar PubMed

48. Jagetia GC, Baliga MS. The evaluation of nitric oxide scavenging activity of certain Indian medicinal plants in vitro: a preliminary study. J Med Food 2004;7:343–8.10.1089/jmf.2004.7.343Search in Google Scholar PubMed

Received: 2013-3-15
Accepted: 2013-5-20
Published Online: 2013-07-02
Published in Print: 2014-02-01

©2014 by Walter de Gruyter Berlin Boston

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