IN VITRO AND IN SILICO EVALUATION OF THE ANTIDIABETIC EFFECT OF HYDROALCOHOLIC LEAF EXTRACT OF CENTELLA ASIATICA

Authors

  • Vineet Mehta
  • Arun Sharma
  • Shruchi Tanwar
  • Udayabanu Malairaman Department of Pharmacy, Jaypee University of Information Technology, Waknaghat, Himachal Pradesh, India 173234

Keywords:

Centella asiatica, Antioxidant, Anti-inflammatory, Anti-diabetic, Docking

Abstract

Objective: Aim of the present study was to explore the possible mechanisms through which Centella asiatica may be beneficial in managing diabetes and its associated complications by in vitro methods and to predict the potential bioactive constituent/s responsible for its anti-diabetic activity through in silico docking study.

Methods: Hydro-alcoholic leaf extract of C. asiatica was prepared using Soxhlet extraction. Plant extract was evaluated for its in vitro antioxidant, anti-inflammatory and anti-diabetic activity. Further, docking screening was performed using Molegro Virtual Docker software to predict potential moiety which may be responsible for its anti-diabetic activity.

Results: Soxhlet extraction resulted in extractive yield of 35.43% and showed high antioxidant potential as demonstrated by its ability to scavenge 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical (98.72%). This antioxidant activity may be attributed to high phenolic and flavonoid components present in extract (1.004 mg gallic acid equivalent (GAE)/gram and 0.113 mg Rutin equivalent (RE)/gram dried extract respectively). Plant extract inhibited albumin denaturation (81.77%) and stabilized RBCs membrane (66.7%) indicating its high anti-inflammatory potential. In vitro anti-diabetic assays revealed that anti-hyperglycaemic activity of this plant can be attributed to its high efficiency to inhibit α-amylase (62.13%) and glucosidase (59.9%) enzymatic activity, which are well established targets for the management of diabetes. Further, through docking studies we predicted that centellasaponin-C, asiaticoside, asiaticoside-E, castilliferol and brahminoside present in this plant might be responsible for the anti-diabetic properties exhibited by this plant.

Conclusion: These results provide a scientific justification for the traditional anti-diabetic use of this plant. It may control diabetes through lowering dietary glucose uptake and may benefit in progression of diabetic complications through reducing oxidative and inflammatory stress. Predicted anti-diabetic molecules need to be screened further for the management of hyperglycemia.

Downloads

Download data is not yet available.

References

Guariguata L, Whiting D, Hambleton I, Beagley J, Linnenkamp U, Shaw J. Global estimates of diabetes prevalence for 2013 and projections for 2035. Diabetes Res Clin Pract 2014;103:137-49.

Cade WT. Diabetes-related microvascular and macrovascular diseases in the physical therapy setting. Phys Ther 2008;88:1322-35.

Mehta V, Malairaman U. Flavonoids: Prospective strategy for the management of diabetes and its associated complications. In: Wang V. editor. Handbook of Research on Advancing Health Education through Technology. PA: IGI Global. Hershey; 2016. p. 286-328.

Kolb H, Mandrup-Poulsen T. The global diabetes epidemic as a consequence of lifestyle-induced low-grade inflammation. Diabetologia 2010;53:10-20.

Bondia-Pons I, Ryan L, Martinez JA. Oxidative stress and inflammation interactions in human obesity. J Physiol Biochem 2012;68:701-11.

Winter WE, Signorino MR. Diabetes mellitus: pathophysiology, etiologies, complications, management, and laboratory evaluation: Special topics in diagnostic testing. Amer Assoc for Clinical Chemistry; 2002. p. 152.

Gordon AN, Fleagle JT, Guthrie D, Parkin DE, Gore ME, Lacave AJ. Recurrent epithelial ovarian carcinoma: a randomized phase iii study of pegylated liposomal doxorubicin versus topotecan. J Clin Oncol 2001;19:3312-22.

Gohil KJ, Patel JA, Gajjar AK. Pharmacological review on Centella asiatica: a potential herbal cure-all. Indian J Pharm Sci 2010;72:546-56.

James JT, Dubery IA. Pentacyclic triterpenoids from the medicinal herb, Centella asiatica (l.) urban. Molecules 2009;14:3922-41.

Desai AG, Qazi GN, Ganju RK, El-Tamer M, Singh J, Saxena AK, et al. Medicinal plants and cancer chemoprevention. Curr Drug Metab 2008;9:581-91.

Kokate CK. Practical pharmacognosy. 4th ed. New Delhi: Vallabh Prakashan; 1994.

Singleton V, Rossi JA. Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. Am J Enol Vitic 1965;16:144-58.

Zhishen J, Mengcheng T, Jianming W. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem 1999;64:555-9.

Chen Y, Wang M, Rosen RT, Ho C-T. 2, 2-diphenyl-1-picrylhydrazyl radical-scavenging active components from polygonum multiflorum thunb. J Agric Food Chem 1999;47:2226-8.

Chandra S, Chatterjee P, Dey P, Bhattacharya S. Evaluation of in vitro anti-inflammatory activity of coffee against the denaturation of protein. Asian Pac J Trop Biomed 2012;2:178-80.

Sareen R, Bhardwaj V, Mehta V, Sharma A. Topical gel incorporated with non-ionic surfactant based solid lipid microspheres of ketoprofen: physicochemical analysis and anti-inflammatory evaluation. Int J Pharm Pharm Sci 2015;7:199-206.

Elya B, Basah K, Mun'im A, Yuliastuti W, Bangun A, Septiana EK. Screening of α-glucosidase inhibitory activity from some plants of apocynaceae, clusiaceae, euphorbiaceae, and rubiaceae. J Biomed Biotechnol 2012. Doi:10.1155/2012/281078. [Article in Press]

Gillard BK, Markman HC, Feig SA. Differences between cystic fibrosis and normal saliva α-amylase as a function of age and sex. Pediatr Res 1978;12:868-72.

Kularatne SA, Zhou Z, Yang J, Post CB, Low PS. Design, synthesis, and preclinical evaluation of prostate-specific membrane antigen targeted 99mtc-radioimaging agents. Mol Pharm 2009;6:790-800.

dos Santos Filho JM, Leite ACL, de Oliveira BG, Moreira DRM, Lima MS, Soares MBP, et al. Design, synthesis and cruzain docking of 3-(4-substituted-aryl)-1, 2, 4-oxadiazole-n-acylhydrazones as anti-trypanosoma cruzi agents. Bioorg Med Chem 2009;17:6682-91.

Shaikh SA, Jain T, Sandhu G, Latha N, Jayaram B. From drug target to leads-sketching a physicochemical pathway for lead molecule design in silico. Curr Pharm Design 2007;13:3454-70.

Sharma OP, Bhat TK. DPPH antioxidant assay revisited. Food Chem 2009;113:1202-5.

Ceriello A. New insights on oxidative stress and diabetic complications may lead to a causal†antioxidant therapy. Diabetes Care 2003;26:1589-96.

Evans JL, Goldfine ID, Maddux BA, Grodsky GM. Oxidative stress and stress-activated signaling pathways: a unifying hypothesis of type 2 diabetes. Endocr Rev 2002;23:599-622.

Saso L, Valentini G, Casini ML, Grippa E, Gatto MT, Leone MG, et al. Inhibition of heat-induced denaturation of albumin by nonsteroidal antiinflammatory drugs (nsaids): pharmacological implications. Arch Pharm Res 2001;24:150-8.

Tripathi K. Essentials of medical pharmacology. 6th ed. New Delhi: JP Medical Ltd; 2013.

Anosike CA, Obidoa O, Ezeanyika LU. Membrane stabilization as a mechanism of the anti-inflammatory activity of methanol extract of garden egg (Solanum aethiopicum). Daru 2012;20:20-76.

Rösen P, Nawroth P, King G, Möller W, Tritschler HJ, Packer L. The role of oxidative stress in the onset and progression of diabetes and its complications: asummary of a congress series sponsored byunescoâ€mcbn, the american diabetes association and the german diabetes society. Diabetes Metab Res Rev 2001;17:189-212.

Stumvoll M, Goldstein BJ, van Haeften TW. Type 2 diabetes: principles of pathogenesis and therapy. Lancet 2005;365:1333-46.

Gillard B, Thomas J, Nell L, Marcus D. Antibodies against ganglioside gt3 in the sera of patients with type i diabetes mellitus. J Immunol 1989;142:3826-32.

Rollinger JM, Stuppner H, Langer T. Virtual screening for the discovery of bioactive natural products. Prog Drug Res 2008;65:211-49.

Published

01-08-2016

How to Cite

Mehta, V., A. Sharma, S. Tanwar, and U. Malairaman. “IN VITRO AND IN SILICO EVALUATION OF THE ANTIDIABETIC EFFECT OF HYDROALCOHOLIC LEAF EXTRACT OF CENTELLA ASIATICA”. International Journal of Pharmacy and Pharmaceutical Sciences, vol. 8, no. 8, Aug. 2016, pp. 357-62, https://journals.innovareacademics.in/index.php/ijpps/article/view/12741.

Issue

Section

Original Article(s)