ANTIDIABETIC EFFECT AND PHYTOCHEMICAL SCREENING OF ETHANOLIC EXTRACT OF POLYALTHIA CERASOIDES STEM BARK IN STREPTOZOTOCIN INDUCED DIABETIC ALBINO RATS

Authors

  • Bhargavi G Dravidian University
  • Josthna P Sri Padmavati Mahila Visva Vidyalayam
  • Naidu Cv Dravidian University

Keywords:

Polyalthia cerasoides, Antihyperglycemic, Antidiabetic, Streptozotocin, Glibinclamide, Histopathology

Abstract

Objective: Polyalthia cerasoides stem bark is used in treatment the of various diseases. Some tribes of North Orissa used the stem bark in the treatment of diabetes. We investigated the effect of four different solvent (n-hexane, ethyl acetate, ethanol and aqueous) extracts of Polyalthia cerasoides stem bark on streptozotocintozocin (STZ) 45 mg/kg b. wt. induced diabetic rats.

Methods: Normal control and diabetic control groups were allowed with free access to water throughout the experiment. Oral administration of four different solvent (n-hexane, ethyl acetate, ethanol and aqueous extracts of P. cerasoides stem bark to 12 hrs fasted normal and STZ induced diabetic rats at a dose of 200, 400 and 600 mg/kg b. wt for acute studies. (Determination of effective extract and dose:  Each group was maintained with six rats)

The fasting blood glucose FBG levels were checked for every 2 hrs (1h, 3h, 5h & 7h). Chronic study:  (Each group was maintained with six rats)

The normal and diabetic groups were supplemented with optimum dosage 400mg ethanol extract of P. cerasoides (PcEE) stem bark and 20 mg of glibinclamide (Glb) a standard drug treated diabetic group for 21 days.

Results: Acute administration of P. cerasoides stem bark reduced FBG[A1]  levels in ethanol extract atthe dosee 400 and 600 mg/ kg b. wt (48.5% and 32.4%, P<0.05) in the diabetic rats only. It does not affect the normal FBG levels in normal rats. In chronic treatment significant reduction in FBG levels in diabetic rats (51.6%). Body weight also increased in extract treated animals. The maximal antidiabetic effect was obtained in 400 mg PcEE[A2]  which was similar to Glb treated group. The PcEE treated diabetic rats also confirmed the significant recovery of liver and kidney destruction.

Conclusion: Our study has revealed the therapeutic effect of PcEE for diabetes and its related complications.

 

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References

Kameswara Rao, Kesavalu B, Giri MM, Apparao R. Antidiabetic and hypolipidimic effects of Momordica cymbalaria hook fruit powder in alloxan diabetic rats. J Ethnopharmacol 1999;67:103-9.

Prout TE. In: Malaisse WJ, Pirart J, editors. Proceedings VIII Congress of interrnational diabetes federation. Excerpta Medica, Amsterdam; 1974. p. 162.

Holman RR, Turner RC. Oral agents and insulin in the treatment of NIDDM. In: Pickup J, Williams G, editors. Text book of Diabetes. Oxford: Blackwell; 1991. p. 467-9.

Alarcon Aguilar FJ, Roman Romos R, Perez Gutierrez S, Aguilar Contreras A, Contreras Weber CC, et al. Study of the antihyperglycemic effect of plants used as the antidiabetics. J Ethnopharmacol 1998;61:101-10.

Mitra A, Bhattacharya D, Roy S. Dietary influence on Type 2 diabetes (NIDDM). Int J Human Ecol 2007;21(2):139-47.

Atta-Ur-Rahman, Khurshid Zaman. Medicinal plants with hypoglycemic activity. J Ethnopharmacol 1989;26:1-55.

Larner J. Insulin and Hypoglycaemic drug, Glucagon, In: Gilman AG, Goodman, Rall IW, Murad, editors. The pharmacological basis of therapeutics. 7th ed. Newyork: Macmillan publications; 1985. p. 1490.

WHO traditional medicine strategy 2002-2005. WHO, 2002. Geneva. (Document ref. WHO/EDM/TRM/2002.1.

Zafra-Polo MC, Gonzalez MC, Tormo JR, Estornell E, Cortes D, Polyalthidin. New prenylated benzopyran inhibitor of the mammalian mitochondrial respiratory chain. J Nat Prod 1996;59:913-6.

Kanokmedhakul S, Kanokmedhakul K, Lekphrom R. Bioactive constituents of roots of P. cerasoides. J Nat Prod 2007;70:1536-8.

Ravikumar YS, Mahadevan KM, Kumaraswamy MN, Vaidya VP, Manjunatha H, Kumar V. Antioxidant cytotoxic and genotoxic evaluation of alcoholic extract of P. cerasoides (Roxb) Bedd. Env Tox Pharmacol 2008;26:142-6.

Rout SD, Panda T, Mishra N. Ethnomedicinal plants used to different diseases by tribals of Mayurbhanj district of North Orissa. J Ethnomed 2009;3(1):27-32.

Punithavathi VR, Anuthama R, Prince PS. Combined treatment with Naringin and vitamin C ameliorates STZ induced diabetes in male Wistar rats. J Appl Toxicol 2008;28(6):806-13.

OECD. Acute oral toxicity. Acute oral toxic class method guidelines 423 adopted 23.03.1996. In: Eleventh Addendum to the OECD guidelines for the testing of chemicals organisation for economical co-operation and development. Paris, June; 2000.

Khandelwal KR. Practical Pharmacognosy: Techniques and experiments. 8th ed. Nirali Prakashan Publications, Pune, India; 2000. p. 149-53.

Harborne JB. Phytochemical Methods. A guide to modern techniques of plant analysis, 3rd ed. New Delhi: Springer (INDIA) Pvt. Ltd; 1998. p. 124-6.

Carvalho EN, Carvalho NAS, Ferreira LM. Experimental model of induction of diabetes mellitus in rats. Acta Cir Bras 2003;18:60-4.

Szkudelski T. The mechanism of alloxan and STZ action in β cells of the rat pancreas. Physiol Res 2001;50(6):537-46.

Maiti R, Jana D, Das UK, Ghosh D. Antidiabetic effect of aqueous extract of seed of Tamarindus indica in STZ induced diabetic rats. J Ethnopharmacol 2004;92:85-91.

Weidmann P, Boehlen LM, De-Courten M. Pathogenesis and treatment of hypertension associated with diabetes mellitus. J Am Heart 1993;125:1498-513.

Vinod KV, Khomedndra KS, Kamaruz ZMD. Antihyperglycemic activity of Swertia chirayita and Andrographis paniculata plant extracts in STZ induced diabetic rats. Int J Pharm Pharm Sci 2013;5(3):305-11.

Shivani S, Sunil S. Antidiabetic effect of Helianthus annuus (L.) seeds ethanolic extract in STZ nicotinamide induced type 2 diabetes mellitus. Int J Pharm Pharm Sci 2013;5(2):382-7.

Chatopadhyay RR, Chatopadhyay RN, Nandy AK, Poddar G, Maitra SK. Preliminary report on antihyperglycemic effect of a fraction of fresh leaves of Azadirechata indica (Beng. Neem). Bull Calcutta Sch Trop Med 1987;35:29-33.

Saxena A, Vikram NK. Role of selected Indian plants in management of type 2 diabetes a review. J Altern Complement Med 2004;10:369-78.

Oliveira HC, Dos SMP, Grigulom R, Lima LL, Martins DTO, Lima JCS, et al. Antidiabetic activity of Vatairea macrocarpa extract in rats. J Ethnopharmacol 2008;115:515-9.

Pandi Kumar P, Prakash BN, Ignaciumuthu S. Hypoglycemic and antihyperglycemic effect of Begonia malabarica (L.) in normal and STZ induced diabetic rats. J Ethnopharmacol 2009;124:111-5.

Published

01-03-2015

How to Cite

G, B., J. P, and N. Cv. “ANTIDIABETIC EFFECT AND PHYTOCHEMICAL SCREENING OF ETHANOLIC EXTRACT OF POLYALTHIA CERASOIDES STEM BARK IN STREPTOZOTOCIN INDUCED DIABETIC ALBINO RATS”. International Journal of Pharmacy and Pharmaceutical Sciences, vol. 7, no. 3, Mar. 2015, pp. 154-8, https://journals.innovareacademics.in/index.php/ijpps/article/view/4281.

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