Separation and Identification of Antidiabetic compounds in Tinospora cordifolia extract and Ayurvedic formulation Guduchi Satva by GCMS and FTIR study with subsequent evaluation of in-vitro Hypoglycemic potential

Authors

  • Antariksh Katara Department of Pharmacology, SMS Medical College, JLN Marg, Gangawal Park, Adarsh Nagar, Jaipur-302004, Rajasthan, India
  • Naveen Kumar Garg Department of Pharmacology, SMS Medical College, JLN Marg, Gangawal Park, Adarsh Nagar, Jaipur-302004, Rajasthan, India
  • Mukul Mathur Department of Pharmacology, SMS Medical College, JLN Marg, Gangawal Park, Adarsh Nagar, Jaipur-302004, Rajasthan, India

Abstract

Tinospora cordifolia stems (T. cordifolia), commonly known as Guduchi, is an effective Ayurveda drug used for diabetes management and various other disorders and ailments. Guduchi satva is classical Ayurvedic medicine being used for the treatment of diabetes and a variety of other disorders. The present study was conceded to determine the aqueous extract of T. cordifolia and Guduchi satva formulation for their relative identification of secondary metabolites using physicochemical parameters, fourier-transform infrared spectroscopy (FTIR) fingerprint, and GCMS profiling. In vitro enzyme inhibition assay on α amylase and α glucosidase were also evaluated for both the extracts, in which Guduchi satva possess enhanced inhibition of enzymatic activity over the aqueous extract of T. cordifolia. The phytochemical and FTIR investigations were confirmed for the presence of alkaloids, tannins, carbohydrates, flavonoids, steroids, aromatic, hydroxy, and nitrogen-containing compounds. The gas chromatography mass spectrometry (GCMS) analysis revealed the existence of stigmasterol (1.2%), stigmastane3, 6 dione,-5a (2.2%), betulin (8.4%), eicosanoic acid (1.09%), glycerol 1 palmitate (20.72%), ascorbyl palmitate (0.92%) and triamcinolone acetonide (0.89%) in both the extracts and effective in diabetes management.

Keywords:

Tinospora cordifolia, Guduchi satva, Hypoglycemic, Diabetes, GCMS and FTIR.

DOI

https://doi.org/10.25004/IJPSDR.2021.130211

References

Sharma P, Dubey G, Kaushik S. Chemical and medico-biological profile of Cyamopsis tetragonoloba (L) Taub: An overview. J. Appl. Pharm. Sci. 2011; 2: 32-37.

Shah B, Seth AK. Text book of pharmacognosy and phytochemistry. Elsevier India Pvt. Ltd., 2012.

Bastaki A. Diabetes mellitus and its treatment. Int J Diabetes Metab. 2005; 13:111-134.

Kirana H, Agarwal SS, Srinivasan BP. Aqueous extract of Ficus religiosa Linn. reduces oxidative stress in experimentally induced type 2 diabetic rats. Indian J. Exp. Biol. 2009; 47: 822-826.

Modak M, Dixit P, Londhe J, Ghaskadbi S, Devasagayam TPA. Indian herbs and drugs used for the treatment of diabetes. J Clin Biochem Nutr. 2007; 40 (3), 163-173.

Sangeetha MK, Raghavendran BHR, Gayathri V, Vasanthi HR. Tinospora cordifolia attenuates oxidative stress and distorted carbohydrate metabolism in experimentally induced type 2 diabetes in rats. J Nat Med. 2011; 65: 544–550.

Zinjarde SS, Bhargava SY, Kumar AR. Potent α-amylase inhibitory activity of Indian Ayurvedic medicinal plants. BMC Complement Altern Med. 2011; 11: 5.

Rajpal V. Standardization of botanicals, New Delhi: Business horizons pharmaceutical publishers, 2011.

Mishra B, Bhavprakash nighantu. Chaukhambha Sanskrit Sansthan, 10th edition, 2002.

Katara A, Pradhan CP, Tyagi AK, Singh P. Phytochemical investigation and antimicrobial activity of Leucas cephalotes Roth. Spreng whole herb, Der Pharm. Lett. 2010; 2(4): 284-296.

Verma S, Gupta A, Katara A. WHO Standardization and HPTLC Estimation of oleanolic acid in different samples of Leucas cephalotes (Roth) Spreng. Acta pharmakon. 2015; 1(1): 16-22.

Pakkirisamy M, Kalakandan SK, Ravichandran K. Phytochemical screening, GCMS, FT-IR analysis of methanolic extract of Curcuma caesia Roxb (black turmeric), Pharmacogn J. 2017; 9(6): 952- 956.

Wu HS, Zhu DF, Zhou CX. Insulin sensitizing activity of ethyl acetate fraction of Acorus calamus L. in vitro and in vivo, J Ethnopharmacol. 2009; 123 (2): 288–292.

Ramachandran S, Rajasekaran A, Adhirajan N, In vivo and In vitro antidiabetic activity of Terminalia paniculata bark: An evaluation of possible phytoconstituents and mechanisms for blood glucose control in diabetes. ISRN Pharmacol. 2013; 484675: 10. http:// dx.doi.org/10.1155/2013/484675.

Delazar A, Nazifi E, Movafeghi A, Nazemiyey H, Hemmati S, Nahar L, Sarker SD. Analyses of phytosterols and free radical scavengers in the bulbs of Ornithogalum cuspidatum Bertol. Bol. Latinoam. Caribe Plant. Med. Aromat. 2010; 9: 87–92.

Mustapha NA, Runner R, Majinda T. GCMS Analysis and preliminary antimicrobial activity of Albizia adianthifolia (Schumach) and Pterocarpus angolensis (DC), Medicines. 2016; 3: 3. doi:10.3390/ medicines3010003

Balogun OS, Oladosu IA, Akiinnusi A, Zhiqiang L. Fatty acid composition α-glucosidae inhibitory potential and cytotoxicity activity of Oncoba spinosa Forssk. Elix. Appl. Chem. 2013; 59: 15637–15641.

Vasudevan A, Vijayan D, Mandal P, Haridas M. Anti-inflammatory property of n-hexadecanoic acid: structural evidence and kinetic assessment. Chem Biol Drug Des. 2012; 80(3): 434-439.

Navven MK, Emad AS, Dalia MI, Ali A., Ali EM, Aboul EAM. Biologial activities from secondary metabolites of Emrelia edurance EGCU 312, Afr. J. Microbiol. Res., 2011; 8(20): 2011-2021.

Alakurtti S, Taru M, Salme K, Jari YK. Pharmacological properties of the ubiquitous natural product betulin. Eur J Pharm Sci. 2006; 29: 1-13. doi: 10.1016/j.ejps.2006.04.006.

Al-Rubaye AF, Kaizal AF, Hameed IH. Phytochemical screening of methanolic leaves extract of Malva sylvestris. Int. J. Pharmacogn. Phytochem. 2017; 9: 537-52.

Panda S, Jafri M, Kar A, Meheta BK. Thyroid inhibitory, antiperoxidative and hypoglycemic effects of stigmasterol isolated from Butea monosperma. Fitoterapia. 2009; 80:123-126.

Undurti ND. Arachidonic acid in health and disease with focus on hypertension and diabetes mellitus: A review, J Adv Res. 2018; 11: 43–55. doi: 10.1016/j.jare.2018.01.002

Muthulakshmi A, Margret JR, Mohan VR. GCMS analysis of bioactive components of Feronia elephantum Correa (Rutaceae). J. Appl. Pharm. Sci. 2012; 2: 69-74.

Igor AS, Liliya NK, Pete TM, Anarkul SK, Zhanar RS, Gayane A. Atazhanova, Sergazy M A and Mark T. Quinn, The natural sesquiterpene lactones arglabin, grosheimin, agracin, parthenolide, and estafiatin inhibit t cell receptor (T. cordifolia R) activation, Phytochemistry. 2018; 146: 36–46.

Ngozi KA, Ohaeri OC. GCMS determination of bioactive constituents of the methanolic fractions of Cnidoscolus aconitifolius, Br. J. Pharm. Res. 2015; 5(3): 163-172.

Bryan CB, David H, Irene ES, David MM, Janet K, Clement TW, Robert HE, Leigh P, Marian R. The importance of palmitoleic Acid to adipocyte insulin resistance and whole-body insulin sensitivity in Type 1 diabetes, J Clin Endocrinol Metab. 2013; 98(1): E40– E50. doi: 10.1210/jc.2012-2892

Valensi P, Devehat CL, Richard JL, Farez C, Khodabandehlou T, Rosenbloom RA, LeFante C, A multicenter, double-blind, safety study of QR-333 for the treatment of symptomatic diabetic peripheral neuropathy. A preliminary report, J Diabetes Complication. 2005; 19(5), 247-53. doi: 10.1016/j.jdiacomp.2005.05.011.

Valentina S, Daniele V, Paolo L. Triamcinolone acetonide for the treatment of diabetic macular oedema, Eur. J. Endocrinol. 2012; 8(1): 42-7. DOI: http://doi.org/10.17925/EE.2012.08.01.42

Omotosho AE, Ezealisiji K, Mkparu KI. Chemometric profiling of methanolic extract of Cnidiscolus aconitifolius (Euphorbiaceae) using UV-VIS, FTIR and GCMS techniques. Peak J. Med Plant Res. 2014;2(1):6-12.

Kmiecik D, Korczak J, Rudzińska M, Kobus-Cisowska J, Gramza- Michałowska A, Hęś M. β-Sitosterol and campesterol stabilization by natural and synthetic antioxidants during heating. Food Chem., 2011;128(4):937-942.

Umamaheswari S, Prince MPS. Antihyperglycaemic effect of ‘Ilogen- Excel’, an ayurvedic herbal formulation in streptozotocin-induced diabetes mellitus. Acta Pol Pharm. 2007; 64: 53–61.

Dalai S, Meher S, Mahapatra B, Dwivedi L. The quality control assessment of ‘Guduchi satwa’: A traditional herbal formulation, UJPR. 2014; 03 (02): 81-87.

Published

30-03-2021
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How to Cite

“Separation and Identification of Antidiabetic Compounds in Tinospora Cordifolia Extract and Ayurvedic Formulation Guduchi Satva by GCMS and FTIR Study With Subsequent Evaluation of in-Vitro Hypoglycemic Potential ”. International Journal of Pharmaceutical Sciences and Drug Research, vol. 13, no. 2, Mar. 2021, pp. 183-9, https://doi.org/10.25004/IJPSDR.2021.130211.

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Research Article

How to Cite

“Separation and Identification of Antidiabetic Compounds in Tinospora Cordifolia Extract and Ayurvedic Formulation Guduchi Satva by GCMS and FTIR Study With Subsequent Evaluation of in-Vitro Hypoglycemic Potential ”. International Journal of Pharmaceutical Sciences and Drug Research, vol. 13, no. 2, Mar. 2021, pp. 183-9, https://doi.org/10.25004/IJPSDR.2021.130211.

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