78
Views
12
CrossRef citations to date
0
Altmetric
Original Articles

Larvicidal Activity of Essential Oil from Tetradenia riparia to Control of Aedes aegypti Larvae in Function of Season Variation

, , , , , , , , & show all
Pages 813-823 | Received 10 Nov 2013, Accepted 24 Mar 2014, Published online: 23 Dec 2014

References

  • Adams, R.P. (1995). Identification of essential oil components by gas chromatography / mass spectroscopy. Carol Stream, IL, USA: Allured Publishing Corporation.
  • Adams, R.P. (2004). Identification of essential oil components by gas chromatography/mass spectroscopy. Carol Stream, IL, USA: Allured Publishing Corporation.
  • Amer, A., Mehlhorn, H. (2006). Persistency of larvicidal effects of plant oil extracts under different storage conditions. Parasitology Research. 99: 473–477. doi: 10.1007/s00436-006-0183-2
  • Bonato, C.M., Cavalca, P.A.M., Lolis, M.R.B. (2010). Homeopathic and Larvicide Effect of Eucalyptus cinerea essential oil against Aedes aegypti. Brazilian Archives of Biology and Technology. 53: 835–843. doi: 10.1590/S1516-89132010000400012
  • Camargo, M.F., Santos, A.H., Oliveira, A.W.S., Abrão, N., Alves, R.B.N., Isac, E. (1998). Avaliação da ação residual do larvicida temephós sobre o Aedes aegypti (diptera, culicidae) em diferentes tipos de recipientes. Revista de Patologia Tropical. 27: 65–70.
  • Campbell, W.E., Gammon, D.W., Smith, P., Abrahams, M., Purves, T.D. (1997). Composição and antimalarial activity in vitro of the essential oil of Tetradenia riparia. Planta Médica. 63: 270–272. doi: 10.1055/s-2006-957672
  • Carvalho, A.F.U., Melo, V.M.M., Craveiro, A.A., Machado, M.I.L., Bantim, M.B., Rabelo, E.F. (2003). Larvicidal activity of the essential oil from Lippia sidoides cham. against Aedes aegypti Linn. Memórias do Instituto Oswaldo Cruz. 98: 569–571. doi: 10.1590/S0074-02762003000400027
  • Chorianopoulos, N., Evergetis, E., Mallouchos, A., Kalpoutzakis, E., Nychas, G.H., Haroutounian, S.A. (2006). Characterization of the essential oil volatiles of Satureja thymbra and Satureja parnassica influence of harvesting time and antimicrobial activity. Journal of Agricultural and Food Chemistry. 54: 3139–3145. doi: 10.1021/jf053183n
  • Costa, D.P., Sanatos, S.C., Seraphin, J.C., Ferri, P.H. (2009). Season variability of essential oils of Eugenia uniflora leaves. Journal of Brazilian Chemical Society. 20: 1287–1293. doi: 10.1590/S0103-50532009000700013
  • Costa, J.G.M., Rodrigues, F.F.G., Angélico, E.C., Silva, M.R., Mota, M.L., Santos, N.K.A., Cardoso, A.L.H., Lemos, T.L.G. (2005). Estudo químico-biológico dos óleos essenciais de Hyptis martiusii, Lippia sidoides e Syzigium aromaticum frente às larvas do Aedes aegypti. Revista Brasileira de Farmacognosia. 15: 304–309. doi: 10.1590/S0102-695X2005000400008
  • Fung, P.K. (1989). Computer program in basic for stimulation of ED50 and DL50. Computers in Biology and Medicine journal. 19: 131–135. doi: 10.1016/0010-4825(89)90005-X
  • Gairola, S., Naidoo, Y., Bhatt, A., Nocholas, A. (2009). An investigation of the foliar trichomes of Tetradenia riparia (Hochst.) Codd [Lamiaceae]: An important medicinal plant of Southern Africa. Flora. 204: 325–330. doi: 10.1016/j.flora.2008.04.002
  • Gazim, Z.C. Ferreira, G.A., Rezende, C.M., Nakamura, C.V., Dias Filho, B.P., Cortez, D.A.G. (2007). Identificação dos constituintes químicos da fração volátil da Calendula officinalis produzida no Paraná. Horticultura Brasileira. 25: 118–121. doi: 10.1590/S0102-05362007000100024
  • Gazim, Z.C., Amorim, A.C.L., Hovell, A.M.C., Rezende, C.M., Nascimento, I.A., Ferreira, G.A., Cortez, D,A,G. (2010). Seasonal Variation, Chemical Composition, and Analgesic and Antimicrobial Activities of the Essential Oil from Leaves of Tetradenia riparia (Hochst.) Codd. in Southern Brazil. Molecules. 15: 5509–5524. doi: 10.3390/molecules15085509
  • Gazim, Z.C., Demarchi, I.G., Lonardoni, M.V.C., Amorim, A.C.L., Hovell, A.M.C., Rezende, C.M., Ferreira, G.A., Lima, E.L., Cosmo, F.A., Cortez, D.A.G. (2011). Acaricidal activity of the essential oil from Tetradenia riparia (Lamiaceae) on the cattle tick Rhipicephalus (Boophilus) microplus (Acari; Ixodidae). Experimental Parasitology. 129: 175–178. doi: 10.1016/j.exppara.2011.06.011
  • Gobbo-Neto, L., Lopes, N.P. (2007). Plantas medicinais: fatores de influência no conteúdo de metabólitos secundários. Química Nova. 30: 374–381. doi: 10.1590/S0100-40422007000200026
  • Godoy, R.L.O., Koketsu, M., Gonçalves, S.L., Lopes, D. (1999). Essential oil of Moschosma riparium Hochst.(Lamiaceae) from Manaus, Amazonas, Brazil. Journal Essential Oil Research. 1: 321–323. doi: 10.1080/10412905.1999.9701144
  • Litchfield, J.T., Wilcoxon, F.A. (1949). A simplified Method of evaluating dose-effect experiments. Journal of Pharmacology and Experimental Therapeutics. 95:1–3.
  • Lorenzi, H., Souza, H.M. (1999). Plantas Ornamentais no Brasil - arbustivas, herbáceas e trepadeiras. Nova Odessa: Instituto Plantarum.
  • Magalhães, L.A.M., Lima, M.P., Marques, M.O.M., Facanali, R., Pinto, A.C.S., Tadei, W.P. (2010). Chemical Composition and Larvicidal Activity against Aedes aegypti Larvae of Essential Oils from Four Guarea species. Molecules. 15: 5734–5741. doi: 10.3390/molecules15085734
  • Martins, M.B.G., Martins, R.G., Cavalheiro, J.A. (2008). Histoquímica e atividade antibacteriana de folhas do incenso (Tetradenia riparia). Revista Biociências. 14: 127–140.
  • Morais, L.A.S. (2009). Influência dos fatores abióticos na composição química dos óleos essenciais. Horticultura Brasileira. 27: 4050–4063.
  • Martínez-Natarén, D., Parra-Tabla, V. Dzibb, G. and Calvo-Irabién, L.M. (2012). Essential oil yield variation within and among wild populations of Mexican oregano (Lippia graveolens, Verbenaceae), and its relation to climatic and edaphic conditions. Journal of Essential Oil Bearing Plants 15: 589–601. doi: 10.1080/0972060X.2012.10644093
  • Omolo, M.O., Okinyo, D., Ndiege, I.O., Lwande, W., Hassanali, A. (2004). Repellency of essential oils of some Kenyan plants against Anopheles gambiae. Phytochemistry. 65: 2797–2802. doi: 10.1016/j.phytochem.2004.08.035
  • Phillipson P.B., Steyn C.F. (2008). Tetradenia (Lamiaceae) in Africa: new species and new combinations. Adansonia. 30: 177–196.
  • Rehder, V.L.G., Machado, A.L.M., Delarmelina, C., Sartoratto, A., Figueira, G.M., Duarte, M.C.T. (2004). Composição química e atividade antimicrobiana do óleo essencial de Origanum applii e Origanum vulgare. Revista Brasileira de Plantas Medicinais.6: 67–71.
  • Rossatto, D.R., Takahash, F.S.C., Silva, L.C.R.,Franco, A.C. (2010). Características funcionais de folhas de sol e sombra de espécies arbóreas em uma mata de galeria no Distrito Federal, Brasil. Acta botânica brasileira. 24: 640–647. doi: 10.1590/S0102-33062010000300007
  • Sakamoto, H.T., Gobbo-Neto, L., Cavalheiro, A.J., Lopes, N.P., Lopes, J.L.C. (2005). Quantitative HPLC analysis of sesquiterpene lactones and determination of chemotypes in Eremanthus seidelii MacLeish & Schumacher (Asteraceae). Journal Of The Brazilian Chemical Society. 16: 1396–1401. doi: 10.1590/S0103-50532005000800016
  • Sambatti, J.A., Souza Junior, I.G., Costa, A.C.S., Tormena, C.A. (2003). Estimativa da acidez potencial pelo método do pH SMP em solos da formação Caiuá-Noroeste do Estado do Paraná (1). Revista Brasileira de Ciências do Solo. 27: 257–264. doi: 10.1590/S0100-06832003000200006
  • Sandra, P., Bicchi, C. (1987). Capillary Gas Chromatography In Essential Oil Analysis. New York: Huethig Heidelberg.
  • Senatore, F., Formisano, C., Napolitano, F., Rigano, D., Özcan, M. (2006). Chemical Composition and Antibacterial Activity of Essential Oil of Myrtus communis L. Growing Wild in Italy and Turkey. Journal of Essential Oil Bearing Plants. 9: 162–169. doi: 10.1080/0972060X.2006.10643489
  • Simas, N.K., Lima, E.C., Conceição, S.R., Kuster, R.M., Oliveira Filho, A.M. (2004). Produtos naturais para o controle da transmissão da dengue-atividade larvicida de myroxylon balsamum (óleo vermelho) e de terpenóides e fenilpropanóides. Química Nova. 27: 46–49. doi: 10.1590/S0100-40422004000100009
  • Simões, C.M., Spitzer. (2002). Farmacognosia da planta ao medicamento. Porto Alegre: Ed. Universidade Federal do Rio Grande do Sul, Universidade Federal de Santa Catarina.
  • Souza, L.A., Albuquerque, J.C.R., Leite, M.N., Stefanini, M.B. (2005). Sazonalidade dos ductos secretores e óleo essencial de Foeniculum vulgare. Revista Brasileira de Farmacognosia. 15: 155–161. doi: 10.1590/S0102-695X2005000200015
  • Supavarn, P., Knapp, R.W., Sigafus, R. (1974). Biologically active plant extracts for control of mosquito larvae. Mosquito news. 34: 398–402.
  • Tiwary, M., Naik, S.N., Tewary, D.K., Mittal, P.K., Yadav, S. (2007). Chemical composition and larvicidal activities of the essential oil of Zanthoxylum armatum DC (Rutaceae) against three mosquito vectors. Journal of Vector Borne Diseases. 44:198–204.
  • Valmorbida, J., Boaro, C.F.S., Marques, M.O.M., Ferri, A.F. (2006). Rendimento e composição química de óleos essenciais de Mentha piperita L. cultivada em solução nutritiva com diferentes concentrações de potássio. Revista Brasileira de Plantas Medicinais. 8: 56–61.
  • Van Puyvelde, L., Nyirankuliza, S., Panebianco, R., Boily, Y., Geizer, I., Sebikali, B., Kimpe, N., Schamp, N. (1986). Active principles of Tetradenia riparia. I. Antimicrobial activity of 8(14),15-sandaracopamaradiene-7α,18-diol. Journal of Ethnopharmacology. 17: 269–275. doi: 10.1016/0378-8741(86)90115-7
  • Van Puyvelde, L., Lefebvre, R., Mugabo, P., De Kimpe, N., Schamp, N. (1987). Active principles of Tetradenia riparia. II. Antispasmodic activity of 8(14),15-sandaracopamaradiene-7α, 18-diol. Planta Médica. 53: 156–158. doi: 10.1055/s-2006-962660
  • Van Puyvelde, L., De Kimpe, N. (1998). Tetradenolide, an α-Pirone from Tetradenia riparia. Phytochemistry. 49: 1157–1158. doi: 10.1016/S0031-9422(98)00112-5
  • Weaver, D. K., Dunkel, E.V., Van Puyvelde, L., Richards, D.C., Fitzgerald, G.W. (1994). Toxicity and protectant potencial of the essential oil of Tetradenia riparia (Lamiales, Lamiaceae) against Zabrotes subfasciatus (Col., Bruchidae) infesting dried pinto beans (Fabales, Lefuminosae). Journal of Applied Entomology. 118: 179–196. doi: 10.1111/j.1439-0418.1994.tb00793.x
  • Zelnik, R., Rabenhorst, E., Matida, A.K., Gottlieb, H.E., Lavie, D., Panizza, S. (1978). Ibozza riparia. Phytochemistry. 17: 1795–1797. doi: 10.1016/S0031-9422(00)88701-4

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.