Comparative Analysis of Antioxidant Properties in Green and Reddish-Brown Leaves of Terminalia catappa Using DPPH and Nitric Oxide Assays

Authors

  • Chukwukaike Favour Ndu Department of Biological Sciences, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria
  • Victoria Moltong Yilwa Department of Biological Sciences, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria
  • Godwin Brian Onwumere Department of Biological Sciences, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria
  • Gandu Audu Sunday Department of Biological Sciences, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria & Department of Biotechnology, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria
  • Joseph Appah Department of Biological Sciences, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria
  • Emmanuel Enoh Department of Biological Sciences, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria & Department of Biotechnology, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria
  • Cornelius Tochukwu Nwankwo Department of Biotechnology, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria & Department of Biotechnology, Faculty of Science, Mewar International University, Masaka, Nasarawa, Nigeria https://orcid.org/0000-0002-8274-3152
  • Duru Daniel Department of Psychology, University of Ibadan, P.M.B. 5017, Ibadan, Nigeria
  • Yusuf Yunusa Pai Department of Biotechnology, Faculty of Science, Nigerian Defence Academy, Kaduna, P.M.B. 2109, Nigeria & Department of Biotechnology, Faculty of Science, Mewar International University, Masaka, Nasarawa, Nigeria

DOI:

https://doi.org/10.56919/usci.2542.007

Keywords:

Terminalia catappa, Phytochemicals, Antioxidants

Abstract

Study’s Excerpt:
• Green and reddish-brown T. catappa leaves contain high polyphenols, flavonoids, tannins, and saponins.
• Alkaloid content in both T. catappa leaf types is low based on standard phytochemical analysis methods.
• DPPH radical scavenging of green and reddish-brown T. catappa leaves shows no significant difference.
• Green T. catappa leaves have higher nitric oxide scavenging than reddish-brown leaves.
• Both aqueous and methanol extracts of T. catappa leaves are effective oxidants with similar activity.
Full Abstract:
This study evaluated and compared the antioxidant properties of the reddish-brown and green leaves of Terminalia catappa. The reddish-brown and green leaves of T. catappa were collected from Agwan-kadara Television, Chikun LGA of Kaduna State in Nigeria. These were collected and processed separately; 270g of each of the ground samples was used to prepare the methanol and aqueous extracts, respectively. Phytochemical analysis was conducted to determine the quantities of polyphenols, flavonoids, tannins, saponins, and alkaloids in the leaf samples. The antioxidative potential of the plant was determined by analyzing the 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging activity and nitric oxide reducing activity. Methanol and aqueous extracts of the reddish-brown leaves of T. catappa yielded 31.6 g and 52.2 g of extract, respectively. The phytochemical constituents found in the methanol and aqueous extracts of reddish-brown leaves of Terminalia catappa showed a significant difference in flavonoids and polyphenols, but there was no significant difference in alkaloids (13.9±0.02mg/g), tannins (90.4±0.07 mg/g), and saponins (152.2±0.85 mg/g). The methanol and aqueous extracts of the green leaves of Terminalia catappa showed no significant difference in flavonoids (96.9±7.02mg/g), polyphenols (110.0±14.1mg/g), and alkaloids, but there was a significant difference in tannins (123.2±0.38mg/g) and saponins (143.6±1.03mg/g). The high presence of phytochemicals and antioxidant potential of Terminalia catappa justifies its use in traditional medicine because of its beneficial medicinal activity. This study also suggests both the reddish-brown and green leaves of T. catappa as effective antioxidants.

References

Akinyede, K. A., Hughes, G. D., Ekpo, O. E., & Oguntibeju, O. O. (2022). Comparative study of the antioxidant constituents, activities and the GC-MS quantification and identification of fatty acids of four selected Helichrysum species. Plants, 11, 998. https://doi.org/10.3390/plants11080998

Arjariya, S., Nema, N., & Tiwari, S. (2013). Investigate the toxicological effect on aqueous extract of T. catappa L in rat. International Journal Research and Development in Pharmacy and Life Science, 2596-601.

Chang, S. K., Alasalvar, C., & Shahidi, F. (2018). Superfruits: Phytochemicals, antioxidant efficacies, and health effects - A comprehensive review. Critical Reviews in Food Science and Nutrition, 59(10), 1-25. https://doi.org/10.1080/10408398.2017.1422111

Chinaka, N. C., Maduabuchi Ezealisiji, K., Elohor Akpofure, R., & Chioma Nennaya Chinaka, C. (2017). Phytochemical characterization of the leaf extracts of Terminalia catappa L (Combretaceae) using ultra violet-visible, Fourier transform infrared and gas chromatography-mass spectroscopic techniques. Journal of Pharmacognosy and Phytochemistry, 7(1), 2017-23.

Dongmo, O. L. M., Epoh, N. J., Tadjoua, H. T., Yousu, F. S., Telefo, P. B., Tapondjou, L. A., & Choudhary, M. I. (2019). Acute and sub-acute toxicity of the aqueous extract from the stem bark of Tetrapleura tetrapteura Taub. (Fabaceae) in mice and rats. Journal of Ethnopharmacology, 236, 42-49. https://doi.org/10.1016/j.jep.2019.02.026

Ebrahimzadeh, M. A., Nabari, S. M., Nabari, S. F., & Eslami, B. (2009). Free radical scavenging ability of methanolic extract of Hyoxyanmus squareous leaves. Pharmacology Online, 2, 796-802.

Hoque, N., et al. (2023). Antimicrobial, antioxidant, and cytotoxic properties of endophytic fungi isolated from Thysanolaena maxima Roxb., Dracaena spicata Roxb. and Aglaonema hookerianum Schott. BMC Complementary Medicine and Therapies, 4, 1-11. https://doi.org/10.1186/s12906-023-04185-4

Jang, M., Choi, H. Y., & Kim, G. H. (2019). Phenolic components rich ethyl acetate fraction of Orostachys japonicus inhibits lipid accumulation by regulating reactive oxygen species generation in adipogenesis. Journal of Food Biochemistry, 43, e12939. https://doi.org/10.1111/jfbc.12939

Kankia, H. I. (2014). Phytochemical screening and antibacterial activities of leaf extracts of Terminalia catappa (Umbrella Tree). International Journal of Science Resources, 3, 2658-2661. https://www.researchgate.net/profile/ibrahim-Hamza-Kankia-3/publication

Kim, Y., Lee, S.-B., Cho, M., Choe, S., & Jang, M. (2024). Indian almond (Terminalia catappa Linn.) leaf extract extends lifespan by improving lipid metabolism and antioxidant activity dependent on AMPK signaling pathway in Caenorhabditis elegans under high-glucose-diet conditions. Antioxidants, 13, 14. https://doi.org/10.3390/antiox13010014

Kuppusamy, P., Yusoff, M. M., Parine, N. R., & Govindan, N. (2015). Evaluation of in-vitro antioxidant and antibacterial properties of Commelina nudiflora L. extracts prepared by different polar solvents. Saudi Journal of Biological Sciences, 22(3), 293-301. https://doi.org/10.1016/j.sjbs.2014.09.016

Liu, B., Li, J., Yi, R., Mu, J., Zhou, X., & Zhao, X. (2019). Preventive effect of alkaloids from lotus plumule on acute liver injury in mice. Foods, 8(1), 36. https://doi.org/10.3390/foods8010036

Muhie, H. E., & Endalew, S. A. (2023). In vitro antioxidant and free-radical scavenging activities of polar leaf extracts of Vernonia amygdalina. BMC Complementary Medicine and Therapies, 23, 146. https://doi.org/10.1186/s12906-023-03923-y

Mwangi, W. C., Waudo, W., Shigwenya, M. E., & Gichuki, J. (2024). Phytochemical characterization, antimicrobial and antioxidant activities of Terminalia catappa methanol and aqueous extracts. BMC Complementary Medicine and Therapies, 24, 137. https://doi.org/10.1186/s12906-024-04449-7

Nyerhovwo, J., Tonukari, O., Avwioroko, O. J., Akporwehwee, T. E., & Anignoro. (2015). Effect of preservation on two different varieties of Vernonia amygdalina Del. bitter leaves. Food and Nutrition Sciences, 6, 633-642. https://doi.org/10.4236/fns.2015.67067

Olaoye, A. B., Ologunde, C. A., Molehin, O. R., & Nwankwo, I. (2021). Comparative antioxidant analysis of Moringa oleifera leaf extracts from South Western States in Nigeria. Future Journal of Pharmaceutical Sciences, 7, 68. https://doi.org/10.1186/s43094-021-00204-8

Omenna, E. C. (2015). Antioxidative activity of the almond leaves (Terminalia catappa). International Journal of Nursing, Midwife and Health Related Cases, 29-40.

Sayama, T., Ono, E., Takagi, K., Takada, Y., Horikawa, M., & Nakamoto, Y. (2012). The Sg-1 glycosyltransferase locus regulates structural diversity of triterpenoid saponins of soybean. Plant Cell, 24, 2123-2138. https://doi.org/10.1105/tpc.111.095174

Ugwah-Oguejiofor, C. J., Okoli, C. O., Ugwah, M. O., Umaru, M. L., Ogbulie, C. S., Mshelia, H. E., Umar, M., Njan, A. A., & Brown, N. E. (2019). Acute and sub-acute toxicity of aqueous extract of aerial parts of Caralluma dalzielii in mice and rats. Heliyon, 5(1), e01179. https://doi.org/10.1016/j.heliyon.2019.e01179

Vasconcelos, P. C., Andreo, M. A., Vilegas, W., Hiruma-Lima, C. A., & Pellizzon, C. H. (2010). Effect of Mouriri pusa tannins and flavonoids on prevention and treatment against experimental gastric ulcer. Journal of Ethnopharmacology, 131(1), 146-153. https://doi.org/10.1016/j.jep.2010.06.017

Published

2025-05-16

How to Cite

Ndu, C. F., Yilwa, V. M., Onwumere, G. B., Sunday, G. A., Appah, J., Enoh, E., Nwankwo, C. T., Daniel, D., & Pai, Y. Y. (2025). Comparative Analysis of Antioxidant Properties in Green and Reddish-Brown Leaves of Terminalia catappa Using DPPH and Nitric Oxide Assays. UMYU Scientifica, 4(2), 56–61. https://doi.org/10.56919/usci.2542.007