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Current Biotechnology

Editor-in-Chief

ISSN (Print): 2211-5501
ISSN (Online): 2211-551X

Research Article

Phytochemical Analysis of Secondary Metabolites and Evaluation of the Antioxidant Activity of Centella asiatica (L.) by UV-Vis Spectroscopy

Author(s): Shouvik Chakravarty, Kaniz W. Sultana, Sumanta Das and Indrani Chandra*

Volume 9, Issue 2, 2020

Page: [120 - 126] Pages: 7

DOI: 10.2174/2211550109999200821155854

Price: $65

Abstract

Background: Centella asiatica (L.) is an herbaceous, frost-tender perennial plant belonging to the Apiaceae family. It is rich in important secondary metabolites such as terpenoids, flavonoids and saponins. It is used as a traditional medicine for skin infection, cough and asthma.

Methods: The present study was intended at the quantitative and qualitative analysis of its secondary metabolites. Thin Layer Chromatography (TLC) was performed to separate the compounds according to their Rf (Retention factor) values.

Results: The total phenolic content of ethanol leaf extract was 45.72 ± 6.05 mg GAE/g determined by Folin Ciocalteu’s assay. The maximum content of total flavonoids was found in aqueous leaf extract, 44.62 ± 2.45 mg QE/g. Aqueous extract of leaf and stem showed the highest antioxidant activity with DPPH (2,2- diphenyl-1-picrylhydrazyl) scavenging assay (45.66 ± 1.29 & 45.20 ± 3.0, respectively).

Conclusion: The present study revealed the antioxidant properties in Centella asiatica.

Keywords: Centella asiatica (L.), secondary metabolites, phenolic, flavonoids, TLC, GAE, QE.

Graphical Abstract

[1]
Anonymous . Mandukaparni (Centella asiatica). National R & D Centre for Rasayana 2013.
[2]
Gohil KJ, Patel JA, Gajjar AK. Pharmacological review on Centella asiatica: A potential herbal cure-all. Indian J Pharm Sci 2010; 72(5): 546-56.
[http://dx.doi.org/10.4103/0250-474X.78519] [PMID: 21694984]
[3]
Antognoni F, Perellino NC, Crippa S, et al. Irbic acid, a dicaffeoylquinic acid derivative from Centella asiatica cell cultures. Fitoterapia 2011; 82(7): 950-4.
[http://dx.doi.org/10.1016/j.fitote.2011.05.008]]
[4]
Babu TD, Kuttan G, Padikkala J. Cytotoxic and anti-tumour properties of certain taxa of Umbelliferae with special reference to Centella asiatica (L.) urban. J Ethnopharmacol 1995; 48(1): 53-7.
[http://dx.doi.org/10.1016/0378-8741(95)01284-K ] [PMID: 8569247]
[5]
Aljofan M, Netter HJ, Aljarbou AN, et al. Anti-hepatitis B activity of isoquinoline alkaloids of plant origin. Arch Virol 2014; 159(5): 1119-28.
[http://dx.doi.org/10.1007/s00705-013-1937-7] [PMID: 24311152]
[6]
Bonte F, Dumas M, Chaudagne C, Meybeck A. Influence of Asiaticoside on human collagen synthesis. Planta Med 1994; 60(2): 133-5.
[http://dx.doi.org/10.1055/s-2006-959434] [PMID: 8202564]
[7]
Brinkhaus B, Lindner M, Schuppan D, Hahn EG. Chemical, pharmacological and clinical profile of East Asian medical plant Centella asiatica. Phytomedicine 2000; 7(5): 427-48.
[http://dx.doi.org/10.1016/S0944-7113(00)80065-3]]
[8]
Das S, Jamal S, Dutta M, Rej S, Chatterjee S. Comparative phytochemical analysis and antimicrobial activity of four medicinal plants. European J Med Plants 2015; 6(4): 191-9.
[http://dx.doi.org/10.9734/EJMP/2015/14805]
[9]
Deichmann WB. Quantitative Estimation of phenol and related compounds in tissues. Phenol studies, Ind, Eng, Chem, Anal, EdIn(1): 37-8.
[10]
Lister E, Wilson P. Measurement of total phenolics and ABTS assay for antioxidant activity. (Personal Communication). New Zealand: Crop Research Institute Lincoln 2001.
[11]
Harborne JB. Phytochemical methods A guide to modern techniques of plant analysis. 3rd ed. Springer Pvt. Ltd 2005.
[12]
Quettier-Deleu C, Gressier B, Vasseur J, et al. Phenolic compounds and antioxidant activities of buckwheat (Fagopyrum esculentum Moench) hulls and flour. J Ethnopharmacol 2000; 72(1-2): 35-42.
[http://dx.doi.org/10.1016/S0378-8741(00)00196-3] [PMID: 10967451]

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