HYPOGLYCEMIC AND HYPOLIPIDEMIC EFFECTS OF ETHANOL ROOT EXTRACT OF CLERODENDRUM PHLOMIDIS IN ALLOXAN-INDUCED DIABETIC RATS

Authors

  • Mrunal Dinesh Shanbhag Department of Pharmacognosy, Faculty of Pharmacy, M. S. Ramaiah University of Applied Sciences, Bengaluru, Karnataka, India.
  • Gowri Radhakrishnan Department of Pharmacognosy, Faculty of Pharmacy, M. S. Ramaiah University of Applied Sciences, Bengaluru, Karnataka, India.

DOI:

https://doi.org/10.22159/ajpcr.2018.v11i11.27305

Keywords:

Alloxan, Antidiabetic activity, Clerodendrum phlomidis, Hypolipidemic, Liver glycogen

Abstract

Objective: In traditional systems of medicine numerous plants have been used for the treatment and control of diabetes. Clerodendrum phlomidis is the accepted botanical source of the ayurvedic drug Agnimantha. The plant is used in the treatment of smallpox, inflammation, coryza, scrotal enlargement, syphilitic, and postnatal complaints. The roots are used to treat measles, gonorrhea, and diabetes. The present study aims at evaluating the hypoglycemic and hypolipidemic activity of C. phlomidis roots.

Methods: Diabetes was induced by administering 120 mg/kg alloxan monohydrate intraperitoneally in albino Wistar rats for a treatment period of 21 days during which body weight changes and fasting blood glucose (FBG) were monitored at weekly intervals. On the 21st-day serum biochemical parameters, liver malondialdehyde, reduced glutathione, and glycogen levels were estimated.

Results: The ethanol extract at 400 mg/kg dose significantly (p<0.001) reduced the elevated FBG and serum biochemical parameter levels.

Conclusion: The present study substantiates the traditional use of C. phlomidis in the treatment of diabetes.

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Author Biography

Mrunal Dinesh Shanbhag, Department of Pharmacognosy, Faculty of Pharmacy, M. S. Ramaiah University of Applied Sciences, Bengaluru, Karnataka, India.

Assistant Professor, DEpartment of pHarmacognosy, Faculty of Pharmacy, M.S.Ramaiah UNIVERSITY of Applied Sciences, Karnataka.

References

Boukhris M, Bouaziz M, Feki I, Jemai H, El Feki A, Sayadi S, et al. Hypoglycemic and antioxidant effects of leaf essential oil of Pelargonium graveolens L’hér. In alloxan induced diabetic rats. Lipids Health Dis 2012;11:81.

Saravanan R, Pari L. Antihyperlipidemic and antiperoxidative effect of diasulin, a polyherbal formulation in alloxan induced hyperglycemic rats. BMC Complement Altern Med 2005;5:1-8.

Tripathi KD. Essentials of Medical Pharmacology. 6th ed. New Delhi: Jaypee Brothers Medical Publishers (P) Ltd.; 2009. p. 254-74.

Yoganarasimhan SN. Medicinal Plants of India (Tamil Nadu). Bangalore: Interline Publishing Private Ltd.; 2000. p. 256-410.

Sharma PV. Dravyaguna-Vijnana. Vol. II. Varanasi: Chaukhambha Bharati Academy; 2005. p. 221-2.

Anonymous. The Ayurvedic Pharmacopoeia of India, Part-I. Vol. 3. Civil Lines, New Delhi: Ministry of Health and Family Welfare, Department of ISM & H, Government of India; 2003. p. 3.

Nadkarni KM. Indian Materia Medica. Vol. I. Bombay: Popular Prakashan; 1993. p. 35.

Yoganarasimhan SN. Medicinal Plants of India (Tamil Nadu). Vol. II. Bangalore: Cyber Media; 2000. p. 145.

Singh PR. A systematic review on Indian floral biodiversity as eminent reserves for alternative treatment strategy of diabetes mellitus. Int J Pharm Pharm Sci 2016;8:10-9.

Kar MK, Swain TR, Mishra SK. Antidiabetic activity of Clerodendrum serratum (L.,) Moon leaves in streptozotocin-induced diabetic rats. Asian J Pharm Clin Res 2014;7:260-3.

Panigrahi BK, Mishra SK, Sahu SK. Antidiabetic effects of Clerodendrum viscosum, vent. World J Pharm Sci 2015;3:1944-8.

Panigrahi BK, Mishra SK, Sahu SK. Antidiabetic effects of Clerodendrum inerme (L) Gaertn. Int J Pharm Pharm Res 2015;4:248-56.

Sharma PC, Yelne MB, Dennis TJ. Database on Medicinal Plants used in Ayurveda. Vol. 2. New Delhi: Central Council for Research in Ayurveda and Siddha, Government of India; 2002. p. 1-7.

Jain SK, Rao RR. Field and Herbarium Methods. New Delhi: Today and Tomorrow Printers and Publishers; 1976.

Harborne JB. Phytochemical Methods. 3rd ed. London: Chapman and Hall; 1998. p. 4-7.

Kokate CK. Practical Pharmacognosy. New Delhi: Vallabh Prakashan; 1999. p. 107-11.

Chopuhan HS, Singh SK. Phytochemical analysis, antioxidant and anti-inflammatory activities of Phyllanthus simplex. J Ethnopharmacol 2011;137:1337-44.

Pourmorad F, Hosseinimehr SJ, Shahabimajd N. Antioxidant activity, phenol and flavonoid contents of some selected Iranian medicinal plants. Afr J Biotechnol 2006;5:1142-5.

Anonymous. OECD Guideline for Testing of Chemicals, OEDC/OCDE 423; 2001.

Asgary S, Rafieian-Kopaei M, Shamsi S, Najafi S, Sahebkar A. Biochemical and histopathological study of the anti-hyperglycaemic and anti-hyperlipidemic effects of cornelian cherry (Cornus mas L.) in alloxan-induced diabetic rats. J Complement Integr Med 2014;11:63-9.

Prabu M, Kumuthakalavalli R. Antidiabetic potential of the Oyster mushroom Pleurotus florida (Mont.) singer. Int J Curr Pharm Res 2017;9:51-4.

Lachin T, Reza H. Anti-diabetic effect of cherries in alloxan induced diabetic rats. Recent Pat Endocr Metab Immune Drug Discov2012;6:67-72.

Paglia DE, Velentine WN. Studies on the quantitative and qualitative characterization of erythrocyte glutathione peroxidase. J Lab Clin Med 1967;70:159-68.

Van Der Vies J. Two methods for the determination of glycogen in liver. Biochem J 1954;57:410-6.

Sornalakshmi V, Soris T, Paulpriya K, Lincy P, Mohan VR. Oral glucose tolerance test (OGTT) in normal control and glucose induced hyperglycemic rats with Hedyotis leschenaultiana DC. Int J Toxicol Pharmacol Res 2016;8:59-62.

Mohamed J, Nafizah NA, Zariyantey AH, Budin SB. Mechanism of diabetes-induced liver damage the role of oxidative stress and inflammation. Sultan Qaboos Univ Med J 2016;16:132-41.

Ananthi J, Prakasam A, Pugalendi KV. Antihyperglycemic activity of Eclipta alba leaf on alloxan-induced diabetic rats. Yale J Biol Med 2004;76:97-102.

Mahreen R, Mohsin M, Nasreen Z, Siraj M, Ishaq M. Significantly increased levels of serum malondialdehyde in Type 2 diabetics with myocardial infraction. Int J Diabetes Dev Ctries 2010;30:49-51.

Levinthal GN. Liver diseases and diabetes mellitus. Clin Diabetes 1999;17:73.

Gopinathan S, Naveenraj D. Antidiabetic activity of Clerodendrum phlomidis Linn. and Gymnema sylvestre Linn. in alloxan induced diabetic rats – A comparative preclinical study. World J Pharm Res 2014;3:1640-75.

Jadhav R, Puchchakayala G. Hypoglycemic and antidiabetic activity of flavonoids: Boswellic acid, ellagic acid, Quercetin, Rutin on streptozotocin-nicotinamide induced Type 2 diabetic rats. Int J Pharm Pharm Sci 2012;4:251-6.

Vessal M, Hemmati M, Vasei M. Antidiabetic effect of Quercetin in streptozotocin-induced diabetic rats. Comp Biochem Physiol C Toxicol Pharmacol 2003;135C:357-64.

Gaikwad SB, Mohan GK, Rani MS. Phytochemicals for diabetes management. Pharm Corps 2014;5:11-28.

Agarwal R, Sethiya NK, Mishra SH. Antidiabetic activity of alkaloids of Aerva lanata roots on streptozotocin - Nicotinamide induced Type-II diabetes in rats. Pharm Biol 2013;51:635-42.

Published

07-11-2018

How to Cite

Dinesh Shanbhag, M., and G. Radhakrishnan. “HYPOGLYCEMIC AND HYPOLIPIDEMIC EFFECTS OF ETHANOL ROOT EXTRACT OF CLERODENDRUM PHLOMIDIS IN ALLOXAN-INDUCED DIABETIC RATS”. Asian Journal of Pharmaceutical and Clinical Research, vol. 11, no. 11, Nov. 2018, pp. 357-62, doi:10.22159/ajpcr.2018.v11i11.27305.

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