Antimalarial Activity of Bambusa vulgaris on Plasmodium berghei berghei in mice
https://dx.doi.org/10.4314/njpar.v43i2.11
Keywords:
mice, ethanolic extract, Plasmodium berghei, antimalarial, Bambusa vulgarisAbstract
Medicinal plants have always been used in the treatment of malaria. Most modern drugs have been isolated from plant-based sources and continue to play an essential role in healthcare. Malaria remains a disease of global concern with set goals towards the production of viable vaccines. This study was designed to investigate the antimalarial activity of ethanolic leaf extract of Bambusa vulgaris on Plasmodium berghei berghei in mice. Lethal dose of ethanolic extract of B. vulgaris on mice was ascertained to be 2000mg/kg body weight. Ethanolic leaf extract of B. vulgaris was prepared from B. vulgaris leaves and
administered orally to a total of 30 P. berghei infected mice divided into 5 groups. Lethal dose of ethanolic extract of B. vulgaris on mice was ascertained to be 2000mg/kg body weight. The leaf extract of B. vulgaris significantly reduced the parasitaemia in the erythrocytes of P. berghei infected mice (P≥ 0.05). It was also found that higher doses of the extract (500mg/kg body weight) exhibited higher anti-malarial activity than the lower doses (100mg/g and 250mg/kg body weight). These results show that the ethanolic leaf extract of B. vulgaris possesses significant anti-malarial activity thus rationalizing its traditional use in malaria therapy.
References
World Health Organization (2020). World Malaria Report 2020. Retrieved February 22, 2021, https://www.who.int/docs/defaultsource/malaria/world-malaria-reports/9789240015791-double-pageview.pdf?sfvrsn=2c24349d_5
World Health Organization (2016). Fact sheet: World Malaria Report. Retrieved June 6, 2019, https://www.who.int/docs/defaultsource/malaria/world-malaria-reports/wmr2016-fact-sheet-en.pdf?sfvrsn=19fdf536_2
Chikezie, P. C and Ojiako, O. A. (2015). Herbal Medicine Yesterday, Today and Tomorrow. Alternative and Integrative Medicine, 4:195.
Striakova, N., Kapos, V. and Lysenko I. (2002). Potential distribution of woody bamboos in Africa and America. UNEP World Conservation Monitoring Centre (UNEP-WCMC), Cambridge, 1–43.
Working paper. Retrieved 8 July 2022, from https://www.inbar.int/fr/resources/inbar_publications/potential-distribution-of-woodybamboos-in-africa-and-america/
Blundell, G., Scatena, F., Wentsel, R. and Sommers, W. (2013). Eco-risk assessment
using indicators of sustainability, invasive species in the Caribbean national forest of
Puerto Rico. Journal of Forestry, 101(1): 14-19.
Asase, A. and Asafo-Agyei, T. (2011). Plants used for treatment of malaria in communities around the bobiri forest reserve in Ghana. Journal on Herbs Spices Medicinal Plants, 17 (2): 85–106.
Komlaga, G., Agyare C., Dickson, R., Mensah, M., Annan, K., Loiseau, M. and Champy, P. (2015). Medicinal plants and finished marketed herbal products used in the treatment of malaria in the Ashanti region, Ghana. Journal of Ethnology pharmacology, 172:333–46.
Udofia, L. E., Akpanabiatu, M. I., and Udofia, E. W. (2019). Anti-malarial and histopathological effect of Plasmodium berghei infected mice treated with extracts of Sarcocephalus latifolius and Pterocarpus osun. South Asian Journal of Parasitology, 2(2): 1-15.
Nwakama, C. (2017). Atmospheric Corrosion of Corrugated Iron Roofing Sheet in Oil Producing Locations in South-Eastern Nigeria. Journal of Environmental & Analytical Toxicology - Scientific Figure on ResearchGate. Available from: https://www.researchgate.net/figure/Mapof-Nigeria-showing-Akwa-Ibom-State-asstudy-area_fig1_342082430 [accessed 5
July 2022].
Preshant, T., Bimlesh, K., Mandeep K., Gurpreet, K. and Harleen, K. (2011). Phytochemical screening and extraction: A review. Internationale Pharmaceutica Sciencia, 1(1):98-108.
Lorke, D. A. (1983). Approach to practical acute toxicity test. Archives of Toxicology, 54:275-278.
American Physiological Society (2002). Guiding principles for research involving animals and human beings. American Journal of Physiology, Regulatory, Integrative and Comparative Physiology,
(2):281- 283.
Ambika, K. and Rajagopal, B. (2017). Vitro antimicrobial and anti-proliferative activity of Bambusa vulgaris. International Journal of Pharmacy and Pharmaceutical Research. 9(1): 10-22.
Ochei J. and Kolhatka A. (2007). Laboratory Techniques for Blood Parasites In Medical Laboratory Science: Theory and Practice. Tata Mc. Graw-Hill, New Delhi, India pp. 960-965.
World Health Organization (2010). Basic malaria microscopy. Retrieved 28 June 2022 from http://www.searo.who.int/LinkFiles/Malari a_malaria_microscopy_Learners
Anigboro, A. (2018). Antimalarial efficacy and chemopreventive capacity of bamboo leaf in malaria parasitized mice. Journal of Applied science environment management. 22(7): 2018.
Scevola, D., Barbarini, G., Grosso, A., Bona, S., and Perissoud, D. (1984). Flavonoids and hepatic cyclic monophosphates in liver injury. Bollettino dell’Istituto Sieroterapico Milanese, 63(1):77-82.
Eminedoki, D. G., Uwakwe, A. A. and Ibe, G. O. (2010). Protective effect of Garcina kola and honey mixture against paracetamol-induced hepatotoxicity in rats. Nigerian Journal of Biochemistry and
Molecular Biology, 25(2): 86-90.
Kraft, C., Jenett-Siems, K, Gupta, M. P., Bienzle, U. and Eich, E. (2000). Antiplasmodial activity of isoflavones from Andirainermis. Journal of Ethnopharmacology, 73(1-2): 131-135
Yenesew, A., Derese, S., Irungu, B., Midiwo, J. O., Waters, N. C., Liyala, P., Akala, H., Heydenreich, M. and Peter, M. G. (2003). Flavonoids and isoflavonoids with antiplasmodial activities from the root
bark of Erythrina abyssinica. Planta Medica, 69(7):658-661
Senthill, M. and Suseela, L. (2012). Pharmacognostical, phytochemical and pharmacological screening for Bambusa vulgaris and Pandanus odoratissimus. Journal of Pharmacology. 65: 234-302.
Wele, M., Kirkman, L., Diarra, N., Goita, Y., Doumbia, M., Traore, M. and Diallo, D. (2017). Antiplasmodial potential and phytochemical screening of ten plants used asAntimalarial in Mali. European Journal of Medicinal Plants, 19(4): 1-9
Abdillah, S., Tambunan, R. M., Farida, Y., Sandhuitami, Y. M. D., and Dewi, R. M. (2015). Phytochemical screening and antimalarial activity of some plants traditionally used in Indonesia. Asian Pacific Journal of Tropical Diseases, 5(6):454-457
Okokon, J., Ita, B., and Udokpoh A. (2006). The in-vivo antimalarial activities of Uvaria chamae & Hippocratea africana. Journal on Annals of Tropical Medicine and Parasitology. 100: 585-590.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2023 Nigerian Journal of Parasitology
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.