Author(s): Mounica Ponugoti, Siva Prasad Panda, Umasankar Kulandaivelu, GSN Koteswara Rao, Rajasekhar Reddy Alavala, Nallaparaju Jagadeesh Varma

Email(s): mounicaponuganti@gmail.com

DOI: 10.52711/0974-360X.2021.00998   

Address: Mounica Ponugoti1,2*, Siva Prasad Panda3, Umasankar Kulandaivelu3, GSN Koteswara Rao3, Rajasekhar Reddy Alavala3, Nallaparaju Jagadeesh Varma4
1Research Scholar, College of Pharmacy, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Guntur - 522502, Andhra Pradesh, India.
2Assistant Professor, Department of Pharmacology, Hindu College of Pharmacy, Amaravathi Road, Guntur – 522002, Andhra Pradesh, India.
3Associate Professor, College of Pharmacy, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Guntur - 522502, Andhra Pradesh, India.
4Student M.sc (Organic Chemistry), Department of Organic Chemistry, Foods, Drugs and Water, Andhra University, Visakhapatnam– 530003, Andhra Pradesh, India.
*Corresponding Author

Published In:   Volume - 14,      Issue - 11,     Year - 2021


ABSTRACT:
Senegalia rugata (Lam.) Britton & Rose, Synonym: Acacia concinna (Wild.) DC., Family: Fabaceae is one of the ayurvedic medicinal plant and commonly known as shikakai. The pods of S. rugata are normally used for cleansing of hair naturally due to the presence of higher content of saponins. In this study, we have isolated six compounds consisting of epigallocatechin (monomeric proanthocyanidin) from ethanol extract of S. rugata and a mixture of methyl esters of five polyunsaturated fatty acids (PUFA): methyl oleate, glyceryl trilinoleate, methyl linoleate methyl eicosenoate and methyl vernolate from petroleum ether extract of S rugata. The structures of the six compounds were elucidated using 1HNMR, 13CNMR and IR spectral studies. Epigallocatechin has shown significant in vitro anti-inflammatory property in a dose-dependent manner using the HRBC membrane stabilization method.


Cite this article:
Mounica Ponugoti, Siva Prasad Panda, Umasankar Kulandaivelu, GSN Koteswara Rao, Rajasekhar Reddy Alavala, Nallaparaju Jagadeesh Varma. Isolation and Evaluation of Anti-inflammatory activity of Epigallocatechin from Senegalia rugata along with PUFAs. Research Journal of Pharmacy and Technology. 2021; 14(11):5739-4. doi: 10.52711/0974-360X.2021.00998

Cite(Electronic):
Mounica Ponugoti, Siva Prasad Panda, Umasankar Kulandaivelu, GSN Koteswara Rao, Rajasekhar Reddy Alavala, Nallaparaju Jagadeesh Varma. Isolation and Evaluation of Anti-inflammatory activity of Epigallocatechin from Senegalia rugata along with PUFAs. Research Journal of Pharmacy and Technology. 2021; 14(11):5739-4. doi: 10.52711/0974-360X.2021.00998   Available on: https://www.rjptonline.org/AbstractView.aspx?PID=2021-14-11-23


REFERENCES:  
1.    "Senegalia rugata - efloraofindia", Sites.google.com, 2020. [Online]. Available: https://sites.google.com/site/efloraofindia/species/a---l/f/fabaceae/senegalia/acacia-concina. [Accessed: 21- Feb- 2020].
2.    A. Australia, "Species: Acacia concinna", Bie.ala.org.au, 2020. [Online]. Available: https://bie.ala.org.au/species/https://id.biodiversity.org.au/instance/apni/952647. [Accessed: 21- Feb- 2020].
3.    Tezuka, Y., Honda, K., Banskota, A., Thet, M., & Kadota, S. Kinmoonosides A−C, Three New Cytotoxic Saponins from the Fruits of Acacia concinna, a Medicinal Plant Collected in Myanmar. Journal of Natural Products. 2000; 63(12): 1658-1664.
4.    Wuthi-udomlert, M., & Vallisuta, O. In vitro Effectiveness of Acacia concinna Extract against Dermatomycotic Pathogens. Pharmacognosy Journal. 2011; 3(19), 69-73.
5.    Todkar, S., Chavan, V., & Kulkarni, A. Screening of Secondary Metabolites and Antibacterial Activity of Acacia concinna. Research Journal of Microbiology. 2010; 5(10), 974-979..
6.    Poomanee, W., Chaiyana, W., Intasai, N., & Leelapornpisid, P. Biological activities and characterization of the pod extracts from sompoi (acacia concinna linn) grown in northern thailand. International Journal of Pharmacy and Pharmaceutical Sciences. 2015; 7(5), 237-241.
7.    Kukhetpitakwong, R., Hahnvajanawong, C., Homchampa, P., Leelavatcharamas, V., Satra, J., & Khunkitti, W. Immunological adjuvant activities of saponin extracts from the pods of Acacia concinna. International Immunopharmacology. 2006; 6(11), 1729-1735.
8.    Lumlerdkij, N., Boonrak, R., Booranasubkajorn, S., Akarasereenont, P., & Heinrich, M. In vitro protective effects of plants frequently used traditionally in cancer prevention in Thai traditional medicine: An ethnopharmacological study. Journal of  Ethnopharmacology. 2020; 250, 112409.
9.    Rao TP, Htay HH, Yasuda NK, Sugino H, Ohkubo, Hayashi T, et al. Antioxidant and Anti-Thrombotic Properties of Selected Plant Extracts of Asia. Austin J Nutr Metab. 2014; 1(1), 6.
10.    Anjaneyulu, A., Row, L., & Sree, A. Acacidiol, a new nor-triterpene from the sapogenins of Acacia concinna. Phytochemistry. 1979a; 18(7), 1199-1201.
11.    Anjaneyulu, A., Bapuji, M., Row, L., & Sree, A. Structure of acacigenin-B, a novel triterpene ester isolated from Acacia concinna. Phytochemistry. 1979b; 18(3), 463-466.
12.    Mall, Tej. Diversity And Ethno-Botanical Potential of Tree Plants of Katarniaghat Wildlife Sanctury, Bahraich (Up) India: An overview. World Journal of Pharmaceutical Research. 2017; 594-624. 10.20959/wjpr20178-9040.
13.    Bag, A., Kumar Bhattacharyya, S., Kumar Pal, N., & Ranjan Chattopadhyay, R. Anti-inflammatory, anti-lipid peroxidative, antioxidant and membrane stabilizing activities of hydroalcoholic extract of Terminalia chebula fruits. Pharmaceutical biology. 2013; 51(12), 1515–1520.
14.    Malarvizhi, D., Anusooriya, P., Meenakshi, P., Sundaram, S., Oirere, E., & Gopalakrishnan, V. Isolation, Structural Characterization of Oleic Acid from Zaleya decandra Root Extract. Analytical Chemistry Letters. 2016; 6(5), 669-677.
15.    Gomez, N., Abonia, R., Cadavid, H., & Vargas, I. Chemical and spectroscopic characterization of a vegetable oil used as dielectric coolant in distribution transformers. Journal Of The Brazilian Chemical Society. 2011.
16.    Deore, S., & Khadabadi, S. Isolation and characterization of phytoconstituents from Chlorophytum borivilianum. Pharmacognosy Research. 2010; 2(6), 343.
17.    Tariq, M., Ali, S., Ahmad, F., Ahmad, M., Zafar, M., Khalid, N., & Khan, M. Identification, FT-IR, NMR (1H and 13C) and GC/MS studies of fatty acid methyl esters in biodiesel from rocket seed oil. Fuel Processing Technology. 2011; 92(3), 336-341.
18.    Desalegn Zeleke, T. Epoxidation of Vernonia Oil in Acidic Ion Exchange Resin. American Journal Of Applied Chemistry. 2017; 5(1), 1.
19.    Gonultas, Oktay & Balaban Ucar, Mualla. Chemical Composition of Some Commercial Tannins Produced in Turkey. 2012.
20.    Abdulmajid, A., Hamidon, T., Abdul Rahim, A., & Hussin, M. Physicochemical studies of tamarind shell tannins as a potential green rust converter. BioResources. 2019; 14(3), 6863-6882.
21.    Abdulkhaleq, L. A., Assi, M. A., Abdullah, R., Zamri-Saad, M., Taufiq-Yap, Y. H., & Hezmee, M. The crucial roles of inflammatory mediators in inflammation: A review. Veterinary world. 2018; 11(5), 627–635.
22.    Ringrose, P. S., Parr, M. A. and McLaren, M. Effects of anti-inflammatory and other compounds on the release of lysosomal enzymes from macrophages. Biochem. Pharmacol. 1975; 24, 607.
23.    White D.D., Fox P.K., Livingston P. An in vitro mouse macrophage model for use in assessing the effects of anti-inflammatory drugs. In: Willoughby D.A., Giroud J.P. (eds) Inflammation: Mechanisms and Treatment. Inflammation: Mechanisms and Treatment. 1980; vol 4. Springer, Dordrecht.
24.    Mena, P., Domínguez‐Perles, R., Gironés‐Vilaplana, A., Baenas, N., García‐Viguera, C. and Villaño, D. Flavan‐3‐ols, anthocyanins, and inflammation. IUBMB Life. 2014; 66: 745-758.
25.    Sabrina Fechtner and Salahuddin Ahmed. In vitro comparison of anti-inflammatory activity of green tea catechins. The FASEB Journal 2016; 30:1_supplement, 916.4-916.4.

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