Potency of Ethanol Extract and Fractions of the Leaf of Annona muricata against Aedes aegypti Larvae
https://doi.org/10.4314/njpar.v41i2.11
Keywords:
Aedes aegypti, Annona muricata, Fractions, Extract, PotencyAbstract
Annona muricata L. is a plant commonly used in Southern Nigeria, for nutritional and medicinal purposes. This study was carried out to determine the larvicidal potentials of ethanol extract and fractions of the leaf of A. muricata. The ethanol leaf extract was subjected to phytochemical screening using standard protocol. The leaf crude extract and fractions (i.e., ethyl acetate and n-hexane) were used for larvicidal assay. The stock solution (5g each in 100ml of water) was prepared. From the stock solution 0.15, 0.30, 0.45, 0.60 and 0.75_ %w/v concentrations of extract and fractions were prepared and each concentration of the extract and fractions had 5 replicates. The control (100ml water and larval nutrient only) was also replicated . Twenty (20), third instar, larvae of Aedes aegypti were exposed to each extract concentration and fractions and their controls. Larval nutrient was added to each experimental set up. Observations were made after 24 and 48 hours exposure period. Phytochemical screening revealed the presence of some plant metabolites (alkaloids, saponins, tannins etc). Mortality of larvae exposed to the extract and fractions increased with increased in extract concentration and exposure time. This study revealed a differential potency of the extract and fractions used and a difference in susceptibility of larvae to the extract and fractions as evident by the 48hLC50 values obtained. Exposure of larvae to 0.75_ %w/v of ethanol extract and ethyl acetate fraction resulted in 100 _% mortality after 48 hours exposure period. Probit analysis gave 48hr_LC50 values of 0.33 and 0.24_ %w/v for ethanol extract and ethyl acetate fraction, respectively. The n-hexane fraction was the least potent with 48h_LC50 value of 0.5461%w/v. Results obtained from this study suggest that the leaf extract and fractions of A. muricata hold potential as larvicides against Ae. aegypti. Its active ingredient should be isolated, characterized and formulated for use in larval habitats.
References
World Health Organization, 2014.AGlobal Brief of Vector-borne Diseases. Geneva, Switzerland
Annadurai, K., Danasekaran, R., Mani, G. and Ramasamy, J. 2015. A Major Threat in Modern Era. Medical Journal of Dr. D. Y. Patil
Vidyapeeth, 8:414-415.
World Health Organization, 2016. Global Progress and Disease Burden (2010-2015). WHO World Malaria report Geneva, Switzerland.
World Health Organization. Handbook for Integrated Vector Management 2012. From: http://www.whqlibdoc.who.int/publications/201
/9789241502801_eng.pdf. [Last accessed on 2014 Feb 18].
World Health Organization, 2018a. Dengue and Severe dengue. Key facts on dengue and severe dengue. Geneva, Switzerland.
World Health Organization, 2018b. Yellow Fever. Key facts on Yellow fever. Geneva, Switzerland.
Lacey, L. 2007. Bacillius Thurigiensis Serovarealensis and Bacillius Spaericus for Mosquito Control. Journal of the American
Mosquito Control Association, 23:133-163.
Lam, P., Boon, C., Yng, N. and Benjamin, S. 2010. Aedes albopictus Control with Spray Application of Bacillus thuringiensis israelensis,
Strain AM 65–52. Southeast Asian Journal of Tropical Medicine and Public Health, 41:1071- 1081.
National Pesticide Information Center. 2008. DEET General Fact Sheet. www.npic.orstoedsAccessed December, 2016.
Ndakidemi, B., Mtei, K. and Ndakidemi, P. 2016. Impacts of Synthetic and Botanical Pesticides on Beneficial Insects. Journal of Agricultural Science, 7: 364-372.
Grisales, N., Poupardin, R., Gomez, S., FonecaGonzales, I., Ranson, H. and Lenhart, A. 2013. Temephos Resistance inAedes aegypti Colombia Comprises Dengue Vector Control. Plos Neglected Tropical Diseases, 7(9):24 – 38.
Seixas, G., Grigoraki, L., Weetman, D., Vincente, J. L., Silva, A. C., Pinto, J., Vontas, J, and Sousa, C.A. 2017. Insecticide Resistance is Mediated by Multiple Mechanism is Recently Introduced Aedes aegypti from Madeiva Island (Portugal). Plos Neglected Tropical Disease, 11(7):1371-
Rahuman, A., Bagavan, A., Kamaraj, C., Vadivelu, M., Zahir, A. and Elango, G. 2009. Evaluation of Indigenous Plants Extracts Against
Larvae of Culexquin quefaciatus (diptera:Culicidae). Journal of Parasitology Research, 104:637-643.
Koyel, M., Papiya, G. and Goutam, C. 2011. Evaluation of Target Specific Larvicidal Activity of the Leaf Extract of Typhonium trilobatum
Against Culex quinquefasciatus. Asain Pacific Journal of Tropical Biomedicine, 5 :119-203.
Mann, A. 2012. Phytochemical Constituents and Antimicrobial and Grain Protectant Activities of Clove Basil (Ocimum gratissimum L.) Grown in Nigeria. International Journal of Plant Research, 2(1):51-58.
Mishra, S., Ahmad, S., kumar, N. and Sharma, B. 2013. Annona muricata (the cancer killer): A Review. Global Journal of Pharmacy and
Pharmaceutical Sciences, 2:1613-1618.
Adewole, S. and Caxton-Martins, E. 2006. Morphological Changes and Hypoglycemic effects of Annona muricata Linn (Annonaceae)
Leaf aqueous Extract on Pancreatic B-cells of Streptozotocin-treated Diabetic rat. African Journal of Biomedical Research, 9:173-187.
De Souza, O., Viora, G., De pinho, D., Yamamota, C. andAlves, M. 2010.Antioxidative and Anti-inflamatory Activities of the Ethanol Extract of Annona muricata L. leaves in Animal Models. International Journal of Molecular Sciences 11:2067 – 2078.
Adewole, S., and Ojewole, J. 2009. Protective effects of Annona muricata Linn (Annonaceae) Leaf aqueous Extract on Serum Lipid Profiles
Oxidative Stress in Hepatocytes of Streptozotocin-treated Diabetic Rat. African Journal of Traditional, Complementary and Alternative Medicine, 6:30 – 41.
Atawodi, S. E. 2011. Nigerian Foodstuffs with Prostate Cancer Chemopreventive Polyphenols. Infectious Agents and Cancer, 6:1-4.
Ezuruike, U. F. and Pricto, J. M. 2014. The Use of Plants in the Traditional Management of Diabetes in Nigeria: Pharmacological and Toxicologcal Considerations. Journal of Ethnopharmacology, 155(2):857-924.
Ubulom, P., Imandeh, G., Akpabio, E., Opara, K. and Ekanem, M. 2013. Larvicidal Effects of Aqueous and Ethanolic Extracts of Senna alata
on Anopheles gambiae, Culex quinquefasciatus and Aedes aegypti. Parkistan Journal of Pharmaceutical Sciences, 26(3): 561-566.
Jain, S., Jarald, E., Edwin, S. and Roul, J. 2013. Isolation, Fractionation and Evaluation of the Anti-inflamatory Properties of Citruslus lanatus.
Asian Journal of Biomedical and Pharmacetical Sciences, 3 (2): 66-72.
Sofowora, A. 2006. Medicinal Plants and Traditional Medicine in Africa. Spectrum Books Limited, Ibadan. 150 – 156Pp.
Evans, W.C. 2009. Trease and Evans Pharmacognosy, 16th Edition. Saunders Elservier Ltd. 137-144Pp.
World Health Organization, 2005. Guidelines for Laboratory and Field Testing of Mosquito Larvicides. World Health Organization
Communicable Disease Control, Prevention and Eradication. WHO Pesticides Evaluation Scheme. HO/CDS/WHOPES/GCDPP/2OO5.13
Ubulom, P. M. E., Umohata, I. A., Thomas, P. S., Ekpo, N. D. and Jamabo, R. T. 2019. Efficacy of the Seed Oil, Leaf Extract and Fractions of
Annona muricata as Repellent and Larvicide against Anopheles gambiae. Annual Research and Review in Biology, 34(1): 1-13.
Finney, D. 1971. Probit Analysis: Cambridge University Press, United Kingdom, 68-72Pp.
Ibrahim, M. B., Owonubi, M.O. and Onaolapo, J. A. 1997. Antimicrobial Effects of Extracts of Leaf, Stem and Root bark of Anogiessus
leicarpus on Staphylococcus aureus NCTC 8190, Escherichia coli NCTC 10418 and Proteus vulgaris NCTC 4636. Journal of Pharmaceutical
Research and Development, 2:20-26.
Liu, Z. L., Liu, Q. Z., Du, S. S. and Deng, Z. W. 2012. Mosquito Larvicidal Activity of Alkaloids and Limonoids Derived from Evodia rutaecarpa
unripe Fruits Against Aedes albopictus (Diptera: Culicidae). Parasitology Research, 111(3):991- 996.
Simon-Oke, L. A., Afolabi, O. J. and Ajayi, O. T. 2015. Larvicidal Activity of a Perennial Herb, Solanum xanthocarpum Against the Larvae of
Culicine species. Futa Journal of Research in Sciences, 1:152-156.
Rawani, A., Ghosh, A. and Chandra, G. 2010. Mosquito Larvicidal Activities of Solanum nigrum L. Leaf Extract Against Culex
quinquefassciatus. Journal of Parasitology Research, 107:1235-1240.
Kar A. 2007. Pharmaocgnosy and Pharmacobiotechnology (Revised-Expanded Second Edition). New Age International Limited Publishers, New Delhi.332-600Pp.
Perumalsamy, H., Jang, M. J., Kim, J. R., Kadarkarai, M. and Ahn, Y. J. 2015. Larvicidal Activity and Possible Mode of Action of Four Flavonoid and Two Fatty Acids Identified in Millettia pinnata Seed toward Three Mosquito Species. Parasites and Vectors, 8:232- 237.
Adefolalu, F. S., Ogbadoyi, E. O., Ndams, I. S. and Mann, A. 2015. Larvicidal Activity of NHexane Fraction of Ocimum gratissimum Leaf Against Mosquito Larvae and its GC-Ms Analysis of Phytoconstituents. Journal of Applied Life Sciences International, 2(4):175- 188
Ghosh,A., Chowdhury, N. and Chandra, G. 2012. Plants Extracts as Potential Mosquito Larvicides. The Indian Journal of Medical Research, 135 (5): 581 -598.
Shad, A. and Andrew, J. 2016. Larvicidal Efficacy of Ethanolic Extracts Annona squamosa (Annonaceae) Over the Filarial Vector Culex quinquefasciatus (Culicidae). Journal of Entomology and Zoology Studies, 5(1):373-377.
Soma, A., Hien, F., Sourabie, S., Yerbang, S., Bakian, L., Koama, B., Ovedraogo, N., Overaogo, M., Bilgo, E., Cisses, M., Awandare, G. and Nikiema, J. 2018. Larvicidal Activity of Crude Extracts of Vernonia cinerea Less (Asteraceae) Against the Larvae of Anopheles gambiae in Bobo Dioulasso, Burkina Faso. European Journal of Medicinal Plants, 2 (4):1 – 9.
Rattan, R. 2010. Mechanism of Action of Insecticidal Secondary Metabolites of Plants Origin. Crop Protection, 29:913-920.
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