Please use this identifier to cite or link to this item: https://rima.ufrrj.br/jspui/handle/20.500.14407/20501
Full metadata record
DC FieldValueLanguage
dc.contributor.authorGuimarães, Brena Gava-
dc.date.accessioned2025-03-21T14:29:24Z-
dc.date.available2025-03-21T14:29:24Z-
dc.date.issued2023-03-03-
dc.identifier.citationGUIMARÃES, Brena Gava. Avaliação da atividade inseticida in vitro de óleos essenciais sobre adultos de Haematobia irritans. 2023. 58 f. Dissertação (Mestrado em Ciências Veterinárias) - Instituto de Veterinária, Universidade Federal Rural do Rio de Janeiro, Seropédica, 2023.pt_BR
dc.identifier.urihttps://rima.ufrrj.br/jspui/handle/20.500.14407/20501-
dc.description.abstractResponsável por afetar a atividade pecuária com perdas econômicas em decorrência do seu parasitismo, a mosca-dos-chifres, Haematobia irritans, é literalmente irritante para os bovinos, pois suas picadas incessantes interferem no ganho de peso e na qualidade do couro, o que prejudica diretamente a produção de leite e de carne. Esses fatores afetam a saúde e o bem-estar desses animais, sendo indispensável o controle deste ectoparasito, feito por muito tempo de forma indiscriminada com inseticidas sintéticos, causando resistência das moscas a alguns desses fármacos. No intuito de diminuir o uso dessas moléculas sintéticas e assim, reduzir danos aos animais, humanos e ao ambiente, uma alternativa é a utilização de óleos essenciais (OEs) com amplo espectro de ação inseticida, porém, poucos OEs foram testados contra H. irritans. Por isso, o objetivo deste trabalho foi avaliar a atividade inseticida dos OEs de Eugenia caryophyllus (cravo-da-índia), Cinnamomum cassia (canela cássia), Thymus vulgaris (tomilho branco) e Illicium verum (anis estrelado) sobre moscas adultas de H. irritans, além de determinar seus valores de concentração letal (CL): CL50 e CL90. Os OEs foram obtidos comercialmente e seus constituintes foram determinados através de cromatografia gasosa, sendo os majoritários respectivamente: eugenol, (E)-cinamaldeído, timol e ocimeno, e (E)-anetol. Os espécimes oriundos de bovinos naturalmente infestados da área de campo do Laboratório de Quimioterapia Experimental em Parasitologia Veterinária (LQEPV) da Universidade Federal Rural do Rio de Janeiro (UFRRJ) foram expostos a discos de papel filtro (63,62cm2) impregnados com diferentes concentrações dos OEs em placas de Petri (90x15mm). As avaliações da mortalidade das moscas foram feitas 2 e 4 horas após a exposição. As concentrações que resultaram em 100% de mortalidade na avaliação de 2h foram de 11,79 e 15,72 μg/cm2 para E. caryophyllus; 39,30 μg/cm2 para C. cassia, 47,15 μg/cm2 para T. vulgaris e 235,77 μg/cm2 para I. verum. E na avaliação de 4h de 15,72 μg/cm2 para E. caryophyllus, 15,72 e 39,30 μg/cm2 para C. cassia, 31,44 e 47,15 μg/cm2 para T. vulgaris, e 157,18 e 235,77 μg/cm2 para I. verum. As CL50 e CL90 foram calculadas estatisticamente por meio da análise Probit pelo programa RStudio Team Software com intervalo de confiança de 95% (p≤0,05). As CL50 dos óleos em 2 e 4h foram: 5,04 e 5,27 μg/cm2 para E. caryophyllus, 8,57 e 5,03 μg/cm2 para C. cassia, 18,57 e 14,08 μg/cm2 para T. vulgaris e 83,91 e 71,88 μg/cm2 para I. verum. Já as CL90 em 2 e 4h foram: 11,71 e 10,03 μg/cm2 para E. caryophyllus, 19,26 e 11,22 μg/cm2 para C. cassia, 27,41 e 18,80 μg/cm2 para T. vulgaris e 132,78 e 101,30 μg/cm2 para I. verum. Com exceção da CL50 do OE de E. caryophyllus, todas as CLs após as 4h de exposição reduziram. Apesar disso, o óleo que apresentou melhor resultado foi o OE de E. caryophyllus, seguido dos OEs de C. cassia, T. vulgaris e I. verum. Concluiu-se, portanto, que todos os óleos avaliados apresentaram atividade inseticida in vitro contra a mosca H. irritans.pt_BR
dc.description.sponsorshipConselho Nacional de Pesquisa e Desenvolvimento Científico e Tecnológico - CNPqpt_BR
dc.description.sponsorshipCoordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESpt_BR
dc.languageporpt_BR
dc.publisherUniversidade Federal Rural do Rio de Janeiropt_BR
dc.subjectmosca-dos-chifrespt_BR
dc.subjectectoparasitos de bovinospt_BR
dc.subjectprodutos naturaispt_BR
dc.subjecthorn flypt_BR
dc.subjectcattle ectoparasitespt_BR
dc.subjectnatural productspt_BR
dc.titleAvaliação da atividade inseticida in vitro de óleos essenciais sobre adultos de Haematobia irritanspt_BR
dc.title.alternativeEvaluation of insecticidal in vitro activity of essential oils against Haematobia irritans adultsen
dc.typeDissertaçãopt_BR
dc.description.abstractOtherResponsible for affecting livestock activity with economic losses due to its parasitism, the horn fly, Haematobia irritans, is literally annoying to cattle, because the incessant bites interfere on weight gain and leather quality, which directly harms the milk and meat production. These factors affect health and welfare of these animals, and the control of this ectoparasite is indispensable, done for a long time indiscriminately with synthetic insecticides, causing flies’ resistance to some of these drugs. To reduce the use of these synthetic molecules and then reduce damage to animals, humans and the environment, an alternative is essential oils (EOs) with a large spectrum of insecticidal action, however, few EOs have been tested against H. irritans. Therefore, the objective of this work was to evaluate the insecticidal activity of Eugenia caryophyllus (clove), Cinnamomum cassia (cassia cinnamon), Thymus vulgaris (white thyme) and Illicium verum (star anise) EOs on adult flies of H. irritans, and to determinate its lethal concentration (LC) values: LC50 and LC90. The EOs were obtained commercially, and their constituents were determined through gas chromatography. The major ones being respectively: eugenol, (E)- cinnamaldehyde, thymol and ocymene, and (E)-anethole. The specimens from naturally infested cattle from the field area of the Laboratory of Experimental Chemotherapy in Veterinary Parasitology (LQEPV) at the Universidade Federal Rural do Rio de Janeiro (UFRRJ) were exposed to filter paper discs (63.62cm2) impregnated with different concentrations of the EOs in Petri dishes (90x15mm). The evaluation of mortality was made 2 and 4 hours after exposure. The concentrations that showed 100% of mortality at the 2h evaluation were 11.79 and 15.72 μg/cm2 for E. caryophyllus, 39.30 μg/cm2 for C. cassia, 47.15 μg/cm2 for T. vulgaris and 235.77 μg/cm2 for I. verum. And at the 4h evaluation of 15.72 μg/cm2 for E. caryophyllus, 15.72 and 39.30 μg/cm2 for C. cassia, 31.44 and 47.15 μg/cm2 for T. vulgaris, and 157.18 and 235.77 μg /cm2 for I. verum. The LC50 and LC90 were statistically calculated using Probit analysis using the RStudio Team Software program with a 95% confidence interval (p≤0.05). The LC50 of the EOs at 2 and 4h were: 5.04 and 5.27 μg/cm2 for E. caryophyllus, 8.57 and 5.03 μg/cm2 for C. cassia, 18.57 and 14.08 μg/cm2 for T. vulgaris and 83 .91 and 71.88 μg/cm2 for I. verum. The LC90 at 2 and 4h were: 11.71 and 10.03 μg/cm2 for E. caryophyllus, 19.26 and 11.22 μg/cm2 for C. cassia, 27.41 and 18.80 μg/cm2 for T. vulgaris and 132, 78 and 101.30 μg/cm2 for I. verum. Except LC50 of E. caryophyllus EO, all LCs after 4h of exposure reduced. Despite this, the oil that showed better results was E. caryophyllus, followed by C. cassia, T. vulgaris and I. verum. Concluding that all evaluated oils showed in vitro insecticidal activity against the horn fly.en
dc.contributor.advisor1Scott, Fabio Barbour-
dc.contributor.advisor1IDhttps://orcid.org/0000-0003-1683-8724pt_BR
dc.contributor.advisor1Latteshttp://lattes.cnpq.br/1217253540572819pt_BR
dc.contributor.advisor-co1Avelar, Barbara Rauta de-
dc.contributor.advisor-co1Latteshttp://lattes.cnpq.br/0590740773474773pt_BR
dc.contributor.referee1Scott, Fabio Barbour-
dc.contributor.referee1IDhttps://orcid.org/0000-0003-1683-8724pt_BR
dc.contributor.referee1Latteshttp://lattes.cnpq.br/1217253540572819pt_BR
dc.contributor.referee2Klafke, Guilherme Marcondes-
dc.contributor.referee2IDhttps://orcid.org/0000-0002-5620-2483pt_BR
dc.contributor.referee2Latteshttp://lattes.cnpq.br/4799380226074807pt_BR
dc.contributor.referee3Monteiro, Caio Marcio de Oliveira-
dc.contributor.referee3IDhttps://orcid.org/0000-0001-5253-5451pt_BR
dc.contributor.referee3Latteshttp://lattes.cnpq.br/2496419306394657pt_BR
dc.creator.IDhttps://orcid.org/0000-0003-3166-1605pt_BR
dc.creator.Latteshttp://lattes.cnpq.br/7846402424305038pt_BR
dc.publisher.countryBrasilpt_BR
dc.publisher.departmentInstituto de Veterináriapt_BR
dc.publisher.initialsUFRRJpt_BR
dc.publisher.programPrograma de Pós-Graduação em Ciências Veterináriaspt_BR
dc.relation.referencesAAJOUD, A.; RAVANEL, P.; TISSUT, M. Fipronil metabolism and dissipation in a simplified aquatic ecosystem. Journal of Agricultural and Food Chemistry, v. 51, n. 5, p. 1347-1352, 2003. ABBOTT, W. S. A method of computing the effectiveness of an insecticide. Journal of Economic Entomology, v. 18, n. 2, p. 265-267, 1925. ADAMS, R.P. Identification of essential oil components by gas chromatography/mass spectrometry. 4th ed. Carol Stream: Allured Pub Corp. 2007. AGNOLIN, C. A. et al. Eficácia do óleo de citronela [Cymbopogon nardus (L.) Rendle] no controle de ectoparasitas de bovinos. Revista Brasileira de Plantas Medicinais, v. 12, n. 4, p. 482-487, 2010. ALMEIDA, L. F. D. et al. Atividade antifúngica e alterações morfológicas induzidas pelo óleo essencial de Cinnamomum cassia frente cepas de Candida albicans isoladas de pacientes HIV positivos. Pesquisa Brasileira em Odontopediatria e Clínica Integrada, v. 12, n. 3, p. 393-398, 2012. ALVES-BRANCO, F. de P. J.; PINHEIRO, A. da C.; SAPPER, M. de F. M. Instrução Técnica para o Produtor: Orientação básica para o controle da mosca-dos-chifres “Haematobia irritans”. EMBRAPA Pecuária Sul, 2000. ANDERSON, J.A.; COATS, J.R. Acetylcholinesterase inhibition by nootkatone and carvacrol in arthropods. Pesticide Biochemistry and Physiology, v. 102, p. 124-128, 2012. ANGIONI, A. et al. Chemical composition, seasonal variability, and antifungal activity of Lavandula stoechas L. ssp. stoechas essential oils from stem/leaves and Flowers. Journal of Agricultural and Food Chemistry, v. 54, p. 4364-4370, 2006. ARUNG, E. T.et al. Inhibitory components from the buds of clove (Syzygium aromaticum) on melanin formation in B16 melanoma cells. Fitoterapia, v. 82, n. 2, p. 198-202, 2011. BAKKALI, F. et al. Biological effects of essential oils - A review. Food and Chemical Toxicology, v. 46, p. 446-475, 2008. BARBOSA, J. D. et al. Structure–activity relationships of eugenol derivatives against Aedes aegypti (Diptera: Culicidae) larvae. Pest Management Science, v. 68, p. 1478- 1483, 2012. BARBOZA, J. N. et al. An Overview on the Anti-inflammatory Potential and Antioxidant Profile of Eugenol. Oxidative Medicine and Cellular Longevity, p. 1-9, 2018. 39 BARROS, A.T.M. Recomendações para controle da mosca-dos-chifres no Pantanal. Corumbá, MS: EMBRAPA-CPAP, Comunicado Técnico, no10, 1992. 4p. BARROS, A. T. M. Estudos sobre a mosca-dos-chifres (Haematobia irritans) em bovinos nelorados no pantanal. Corumbá, MS: Embrapa-CPAP, Pesquisa em andamento, no 14, p. 1-5, 1995. BARROS, A. T. M. et al. Resistência da mosca-dos-chifres (Diptera: Muscidae) a inseticidas organofosforados. Parasitologia Veterinária, v. 96, n. 3, p. 243-256, 2001. BARROS, A. T. M. Desenvolvimento e situação atual da resistência da mosca-dos- chifres a inseticidas, Biológico, v. 65, n. 1/2, p. 23-24, 2003. BARROS, A. T. M. Situação da resistência da Haematobia irritans no Brasil. Revista Brasileira de Parasitologia Veterinária, v.13, supl. 1, p. 109-110, 2004. BARROS, A. T. M.; GOMES, A.; KOLLER, W. W. Insecticide susceptibility of horn flies, Haematobia irritans (Diptera: Muscidae), in the state of Mato Grosso do Sul, Brazil. Revista Brasileira de Parasitologia Veterinária, v. 16, p. 145-151, 2007. BARROS, A. T. M. et al. Susceptibility of the horn fly, Haematobia irritans irritans (Diptera: Muscidae), to insecticides in Brazil. Revista Brasileira de Parasitologia Veterinária, v. 21, n. 2, p. 125-132, 2012. BARROS, A. T. M. et al. Mechanisms of pyrethroid resistance in Haematobia irritans (Muscidae) from Mato Grosso do Sul state, Brazil. Revista Brasileira de Parasitologia Veterinária, v. 22, p. 136-142, 2013. BECKEL, H. S.; LORINI, I.; LAZZARI, S. Efeito do sinergista butóxido de piperonila na resistência de Oryzaephilus surinamensis (L.)(Coleoptera, Silvanidae) a deltametrina e fenitrotiom. Revista Brasileira de Entomologia, v. 50, p. 110-114, 2006. BETT, P. K. et al. Composição química dos óleos essenciais das folhas de Cupressus lusitanica e Eucalyptus saligna e bioatividade contra as principais pragas de insetos de grãos armazenados. Culturas e Produtos Industriais, v. 82, p. 51-62, 2016. BEZERRA, J. W. A et al. Estudo químico-biológico do óleo essencial de Lantana montevidensis (chumbinho) (Spreng.) Briq. (Verbenaceae) contra Drosophila melanogaster. Revista Cubana de Plantas medicinales, v. 22, n. 1, 2017. BIANCHIN, I., HONER, M.R.; GOMES, A. Controle integrado da mosca-dos-chifres na região Centro-Oeste. A Hora Veterinária, v. 11, p. 43-46, 1992. BIANCHIN, I.; ALVES, R. G. O. Mosca-dos-chifres: comportamento e danos em bovinos nelores. Campo Grande, MS: Embrapa-CNPGC, Comunicado Técnico, v. 55, 8 p. 1997. BIANCHIN, I.; ALVES, R. G. O. Mosca-dos-chifres, Haematobia irritans: comportamento e danos em vacas e bezerros Nelore antes da desmama. Pesquisa Veterinária Brasileira, v. 22, p. 109-113, 2002. 40 BIANCHIN, I.; KOLLER, W. W.; DETMANN, E. Sazonalidade de Haematobia irritans no Brasil Central. Pesquisa Veterinária Brasileira, v. 26, p. 79-86, 2006. BISSET, N. G. Herbal Drugs and Phytopharmaceuticals: A Handbook for Practice. London: CRC Press, 2001. 566p. BIZZO, H.R. Óleos essenciais no Brasil: aspectos gerais, desenvolvimento e perspectivas. Química nova, v. 32, n. 3, p: 588-594, 2009. BOBÉ, A. et al. Behavior of fipronil in soil under Sahelian plain field conditions. Pesticide Science, v. 52, p. 275-281, 1998. BOITO, J. P. et al. Efeito inseticida e repelente do óleo de canela em moscas associadas à pecuária. Revista MVZ Córdoba, v. 23, n. 2, p. 6628-6636, 2018. BORDIN, E. L. Haematobia irritans: controle químico com ivermectina formulação pour-on. A Hora Veterinária, v.11, n.65, p. 20-21, 1992. BRAGA, R. M.; BARROS, A. T. M. Avaliação da susceptibilidade da mosca dos chifres (Haematobia irritans) a inseticida da classe dos piretróides em Roraima. Boa vista, RR: Embrapa Roraima, Comunicado Técnico, n. 10, 2003. 6p. BRAGA, A. G. S. Avaliação in vitro da atividade pesticida de Piper tuberculatum Jacq. (Piperaceae) para o controle das infestações de Rhipicephalus microplus (Ixodideae) e Haematobia irritans (Muscidae). 2017. 106 f. Tese (Doutorado em Biodiversidade e Biotecnologia da Amazônia Legal - BIONORTE) -Universidade Federal do Amazonas - Universidade Federal de Rondônia, Porto Velho, 2017. BRASIL. Ministério da Saúde. Secretaria de Vigilância Sanitária. Departamento Técnico-Normativo. Divisão de Meio Ambiente e Ecologia Humana. Organização Pan- Americana de Saúde: Manual de Vigilância da Saúde de Populações Expostas a Agrotóxicos, Brasília, 1997. BREIJO, M. et al. Evaluation of hematobin as a vaccine candidate to control Haematobia irritans (Diptera: Muscidae) loads in cattle. Journal of Economic Entomology, v. 110, n. 3, p. 1390-1393, 2017. BREWER, G. J. et al. Horn fly (Diptera: Muscidae) – biology, management, and future research directions. Journal of Integrated Pest Management, v. 12, n. 1, p. 42, 2021. BRITO, L. G. et al. Mosca-dos-chifres: aspectos bio-ecológicos, importância econômica, interações parasito-hospedeiro e controle. EMBRAPA, Comunicado Técnico, v. 302, p. 1-16, 2005. BRITO, L. G. et al. Pyrethroid and organophosphate pesticide resistance in field populations of horn fly in Brazil. Medical and Veterinary Entomology, v. 33, n. 1, p. 121-130, 2019. 41 BRUCE, W. G. et al. Um novo método de alimentação de moscas-dos-chifres adultas, Haematobia irritans L., e moscas dos estábulos, Stomoxys calcitrans L. Journal of the Kansas Entomological Society, v. 11, n. 4, 1938. BRUCE, W. G. The history and biology of the horn fly, Haematobia irritans (Linnaeus); with comments of control. Technical Bulletin (North Carolina Agricultural Experiment Station and USDA), v. 157, 1964. BRUM, N. F. et al. Atividade antimicrobiana da herbácea Illicium verum: uma revisão integrativa. Brazilian Journal of Health Review, v. 5, n. 2, p. 7214-7223, 2022. BUCHHOLZ, K. The Biggest Producers of Beef in the World, 2021. Disponível em: <https://www.statista.com/chart/19127/biggest-producers-of-beef/>. Acesso em: 03 fev. 2023. BUENTELLO-WONG, S. et al. Toxicity of some essential oil formulations against the Mexican fruit fly Anastrepha ludens (Loew)(Diptera: Tephritidae). Industrial Crops and Products, v. 85, p. 58-62, 2016. BURNS, E.C. et al. Effect of horn flies on rate of gain of stocker beef cattle. In: Annual Livestock Producers Day, 15., 1975. Proceedings... Baton Rouge, Louisiana State University, 1975. p. 258-261. BURNS, E. C.; WILSON, B. H. Field resistance of horn flies to the organic phosphate insecticide Ronnel. Journal of Economic Entomology, v. 56, n. 5, 1963. BYFORD, R. L. et al. Spectrum of insecticide cross-resistance in pyrethroid-resistant populations of Haematobia irritans (Diptera: Muscidae). Journal of Economic Entomology, v. 78, n. 4, p.768-773, 1985. BYFORD, R. L. et al. Horn fly (Diptera: Muscidae) dispersal among cattle herds. Journal of Economic Entomology, v. 80, p. 421-426, 1987. BYFORD, R. L.; CRAIG, M. E.; CROSBY, B. L. A review of ectoparasites and their effect on cattle production. Journal of Animal Science, v. 70, n. 2, 597-602, 1992. BYFORD, R. L. et al. Influence of permethrin, diazinon and ivermectin treatments on insecticide resistance in the horn fly (Diptera: Muscidae). International Journal for Parasitology, v. 29, n. 1, p. 125-135, 1999. CADIOLI, F. A. et al. Primeiro relato de surto de Trypanosoma vivax em bovinos leiteiros no estado de São Paulo, Brasil. Revista Brasileira de Parasitologia Veterinária, v. 21, p. 118-124, 2012. CAMPBELL, J. B.; THOMAS, G. D. The history, biology, economics, and control of the Horn Fly, Haematobia irritans. Agri-practice, v. 13, n. 4, p. 31-36, 1992. CAMPBELL, J. B. et al. Efficacy of Several Insecticide Ear Tags for Control of Horn Flies (Diptera: Muscidae) on Nebraska Beef Cattle. Journal of the Kansas Entomological Society, v. 79, n. 2, p. 113-118, 2006. 42 CAMPOS, R. N. S. et al. Óleos essenciais de plantas medicinais e aromáticas no controle do carrapato Rhipicephalus microplus. Archivos de Zootecnia, v. 61, n. 1, 2012. CASTREJÓN, F. M. et al. Repelência de larvas de Boophilus microplus em plantas de Stylosanthes humilis e Stylosanthes hamata. Parasitología latinoamericana, v. 58, n. 3-4, p. 118-121, 2003. CASTRO, K. N. C. et al. Eficácia in vitro de óleos essenciais contra Haematobia irritans. Medicina Veterinária (UFRPE), v. 16, n. 4, p. 257-263, 2022. CHAIYASIT, D. et al. Essential oils as potential adulticides against two populations of Aedes aegypti, the laboratory and natural field strains, in Chiang Mai province, northern Thailand. Parasitology Research, v. 99, p. 715-721, 2006. CHAMBERLAIN, W. F. Insect growth regulating agents for control of arthropods of medical and veterinary importance. Journal of Medical Entomology, v. 12, p. 395- 400, 1975. CHOI, H. Y. et al. Efficacy of spray formulations containing binary mixtures of clove and eucalyptus oils against susceptible and pyrethroid/ malathion-resistant head lice (Anoplura: Pediculidae). Journal of Medical Entomology, v. 47, n. 3, p. 387-391, 2010. CHRISTENSEN, C. M.; DOBSON, R. C. Effects of testosterone propionate on the sebaceous glands and subsequent attractiveness of Angus bulls and steers to horn flies, Haematobia irritans (Diptera: Muscidae). Journal of the Kansas Entomological Society, p. 386-391, 1979. CONCEIÇÃO, C. L. et al. Atividade pulicida comparativo in vitro do óleo essencial de Cinnamomum cassia e do cinamaldeído contra Ctenocephalides felis. Archives of Veterinary Sciences, v. 25, n. 5, 2020. CORRÊA, R. S. Caracterização dos constituintes químicos e avaliação in vitro dos óleos essenciais de Laurus nobilis, Illicium verum e Origanum vulgare sobre Rhipicephalus microplus. 2017. 85 f. Dissertação (Mestrado em Biociência Animal) - Universidade de Cuiabá. Cuiabá, 2017. CRUZ-VÁZQUEZ, C. et al. Distribución anual de Haematobia irritans (L.) (Diptera:Muscidae) en tres establos lecheros de Aguascalientes, México. Veterinaria México, v. 31, n. 3, 2000. CUPP, M. S. et al. Evaluation of a recombinant salivary gland protein (thrombostasin) as a vaccine candidate to disrupt blood-feeding by horn flies. Vaccine, v. 22, n. 17-18, p. 2285-2297, 2004. D’AMATO, C.; TORRES, J. P. M.; MALM, O. DDT (dicloro difenil tricloroetano): toxicidade e contaminação ambiental: uma revisão. Química Nova, São Paulo, v. 25, n. 6, p. 995-1002, 2002. 43 DANAHER, M. et al. Review of methodology for the determination of macrocyclic lactone residues in biological matrices. Journal of Chromatography B, v. 844, n. 2, p. 175-203, 2006. DE OLIVEIRA, A. A. A et al. Suscetibilidade da mosca-dos-chifres (Haematobia irritans) a inseticidas nos tabuleiros costeiros de Alagoas, Bahia e Sergipe, Brasil. Revista Brasileira de Parasitologia Veterinária, v. 15, n. 2, p. 65-70, 2006. DE SOUZA, E. R. L. et al. Propriedades farmacológicas do Sesquiterpeno α-Bisabolol: uma breve revisão. Archives of Health Investigation, v. 10, n. 1, p. 18-23, 2021. DELL'PORTO, A. et al. Eficácia do diflubenzuron 25% no controle da Haematobia irritans (Diptera: Muscidae): desafio in vitro e a campo. Arquivos do Instituto Biológico, v. 79, p. 617-620, 2012. DEVI, K. P. et al. Eugenol (an essential oil of clove) acts as an antibacterial agent against Salmonella typhi by disrupting the cellular membrane. Journal of Ethnopharmacology, v. 130, n. 1, p. 107-115, 2010. DRUMMOND, R. O.; GEORGE, J. E.; KUNZ, S. E. Control of Arthropod Pests of Livestock: A Review of Technology. Boca Raton, Florida, 1988. DUBOIS, R. Pesticidas, antibióticos e a intoxicação humana. A Hora Veterinária, v.13, n.72, p.55-60, 1993. EDWARDS, J. F. E. et al. Bovine Teat Atresia Associated with Horn Fly (Haematobia irritans irritans (L.)) - induced Dermatitis. Veterinary Pathology, v. 37, n. 4, p. 360- 364, 2000. ELDEFRAWI, A. T. et al. Insecticides affecting acetylcholine receptor interactions. Journal of Pharmacology and Experimental Therapeutics, v. 16, p. 45-65, 1982. ELLSE, L.; WALL, R. The use of essential oils in veterinary ectoparasite control: a review. Medical and Veterinary Entomology, v. 28, p. 233-243, 2014. EL-WAKEIL, N. E.; GAAFAR, N.; VIDAL, S. Side effect of some neem products on natural enemies of Helicoverpa, Trichogramma spp. and Chrysoperla carnea. Archives of Phytopathology and Plant Protection, v. 39, p. 445-455, 2006. ENAN, E. E. Molecular response of Drosophila melanogaster tyramine receptor cascade to plant essential oils. Insect Biochemistry and Molecular Biology, v. 35, p. 309-321, 2005a. ENAN, E. E. Molecular and pharmacological analysis of an octopamine receptor from American cockroach and fruit fly in response to plant essential oils. Archives of Insect Biochemistry and Physiology, v. 59, p. 161-171, 2005b. ESPINOZA, J. et al. Insecticidal, repellent and antifeedant activity of essential oils from Blepharocalyx cruckshanksii (Hook. & Arn.) Nied. leaves and Pilgerodendron uviferum 44 (D. Don) florin heartwood against horn flies, Haematobia irritans (Diptera: Muscidae). Molecules, v. 26, n. 22, p. 6936, 2021. FARIA, M. J. Mosca-dos-chifres. PESAGRO-RIO, Informe Técnico, n. 26, 1998. FERREIRA, F. M. et al. Acaricidal activity of essential oil of Syzygium aromaticum, hydrolate and eugenol formulated or free on larvae and engorged females of Rhipicephalus microplus. Medical and veterinary entomology, v. 32, n. 1, p. 41-47, 2018. FIASSON, R. Notes sur les parasites animaux du Haut-Apure (Venezuela). Revue de Médecine et de Pharmacie, v. 2, n. 2, p. 125-151, 1943. FINCHER, G. T. Injectable ivermectin for cattle: effects on some dung-inhabiting insects. Environmental Entomology, v. 21, n. 4, p. 871-876, 1992. FLETCHER, J. The Cattle Horn Fly. Scientific American, v. 34, suppl. 882, p. 14100– 14101, 1892. FOIL, L. D.; HOGSETTE, J. A. Biology and control of tabanids, stable flies and horn flies. Revue Scientifique et Technique (International Office of Epizootics), v. 13, n. 4, p. 1125-1158, 1994. FRANKS, R. E.; BURNS, E. C.; ENGLAND, N. C. Color preference of the horn fly, Haematobia irritans (L.), on beef cattle. Journal of Economic Entomology, v. 57, p 371-372, 1964. FREIRE, J. M. et al. Essential oil of Origanum majorana L., Illicium verum Hook. f. and Cinnamomum zeylanicum Blume: chemical and antimicrobial characterization. Revista Brasileira de Plantas Medicinais, v. 13, p. 209-214, 2011. FREITAS, J. P. et al. Eficácia e efeito residual do óleo essencial de Illicium verum (anis estrelado) e Pelargonium graveolens (gerânio rosa) em pulgas de gato Ctenocephalides felis felis. Revista Brasileira de Parasitologia Veterinária, v. 30, 2021. GAIAD, S.; CARVALHO, P. E. R. Espécies Arbóreas Brasileiras: Lauraceae. EMBRAPA, 2021. Disponível em: <https://www.embrapa.br/agencia-de-informacao- tecnologica/tematicas/especies-arboreas-brasileiras/lauraceae>. Acesso em: 28 jan. 2023. GALLUCCI, M. N. et al. Antimicrobial combined action of terpenes against the foodborne microorganisms Escherichia coli, Staphylococcus aureus and Bacillus cereus. Flavour and Fragrance Journal, v. 24, p. 348-354, 2009. GILLESPIE, B. E. et al. Deoxyribonucleic acid fingerprinting of Staphylococcus aureus from heifer mammary secretions and from horn flies. Journal of Dairy Science, v. 82, p. 1581-1585, 1999. 45 GIRÃO, E.S. et al. Suscetibilidade da mosca-dos-chifres (Diptera: Muscidae) a inseticidas no Piauí e Maranhão. In: Congresso Brasileiro de Parasitologia Veterinária, 12., 2002, Rio de Janeiro. Anais... Rio de Janeiro: CBPV, 2002. GONZALEZ, R. et al. H. irritans in Chile. Revista Chilena de Entomología, v. 6, 1968. GORDON, D. V.; HAUFE, W. O.; KLEIN, K. K. Determination of economic thresholds for horn fly control in Western Canada: A farm level simulation approach. The Canadian Journal of Agricultural Economics, v. 32, n. 2, p. 399-421, 1984. GRAF, J. F. The role of insect growth regulators in arthropod control. Parasitology Today, v. 9, n. 12, p. 471-474, 1993. GRAF, J. F. et al. Tick control: an industry point of view. Parasitology, v. 129, n. 1, p. 427-442, 2004. GRISI, L.; SCOTT, F. B. Susceptibilidade de populações da mosca-dos-chifres (Haematobia irritans) a inseticidas no Estado de São Paulo. A Hora Veterinária, v. 65, p. 11-12, 1992. GRISI, L. et al. Reassessment of the potential economic impact of cattle parasites in Brazil. Revista Brasileira de Parasitologia Veterinária, v. 23, n. 2, 150-156, 2014. GUERRA, A. M. N. M et al. Atividade inseticida de plantas medicinais sobre o Callosobruchus maculatus (Coleoptera: Bruchidae). Revista Caatinga, v. 22, n. 1, p. 145-150, 2009. GUGLIELMONE, A. A. et al. Perjuicios económicos provocados por la “mosca de los cuernos” (Haematobia irritans). Instituto Nacional de Tecnología Agropecuaria. Estación Experimental Agropecuaria Rafaela, Información Técnica, v. 146, p.4., 1998. GUGLIELMONE, A. A. et al. Toxicity of cypermethrin and diazinon to Haematobia irritans (Diptera: Muscidae) in its American southern range. Veterinary Parasitology, v. 101, n. 1, p. 67-73, 2001. GUGLIELMONE, A. A. et al. Dynamics of cypermethrin resistance in the field in the horn fly, Haematobia irritans. Medical and Veterinary Entomology, v. 16, p. 3, p. 310-315, 2002. GUIMARÃES, J. H.; TUCCI, E. C.; BARROS-BATTESTI, D. M. Ectoparasitos de Importância Veterinária. São Paulo: Plêiade, 2001. 213 p. HALL, R. D. Walk-Through Trap to Control Horn Flies on Cattle. Disponível em: <https://extension.missouri.edu/publications/g1195>. Acesso em: 18 jan. 2023. HARRIS, R. L.; FRAZAR, E. D.; GRAHAM, O.H. Resistance to ronnel in a strain of horn flies. Journal of Economic Entomology, v. 59, n. 2, p. 387-390, 1966. 46 HARRIS, R. L.; MILLER, J. A.; FRAZAR, E. D. Hornflies and stableflies feeding activity. Annals of the Entomological Society of America, v. 67, p. 891-894, 1974. HEMINGWAY, J. et al. The molecular basis of insecticide resistance in mosquitoes. Insect Biochemistry and Molecular Biology, v. 34, n. 7, p. 653-665, 2004. HIBLER, C. P. Desenvolvimento de Stephanofilaria stilesi na mosca-dos-chifres. O Jornal de Parasitologia, p. 890-898, 1966. HIEU, T. T. et al. Repellency to Stomoxys calcitrans (Diptera: Muscidae) of plant essential oils alone or in combination with Calophyllum inophyllum nut oil. Journal of Medical Entomology, v. 47, n. 4, p. 575-580, 2010. HOLDERMAN, C. J. et al. Resistance to Permethrin, β-cyfluthrin, and Diazinon in Florida Horn Fly Populations. Insects, v. 9, n. 2, p. 63, 2018. HOLM, Y. et al. Variation in the essential oil composition of Artemisia annua L. of different origin cultivated in Finland. Flavour and Fragrance Journal, v. 12, p. 241- 246, 1997. HONER, M. R.; GOMES, A. O manejo integrado de mosca dos chifres, berne e carrapato em gado de corte. Campo Grande: EMBRAPA-CNPGC, Circular Técnica, v. 22, 1990, 60p. HONER, M. R.; BIANCHIN, I.; GOMES, A. Mosca-dos-chifres: histórico, biologia e controle. Campo Grande, MS: Embrapa-CNPGC, Circular Técnico, v. 45, 1990. 34p. HUANG, Y. et al. Antifungal Activity of the Essential Oil of Illicium verum Fruit and Its Main Component trans-Anethole. Molecules, v. 15, p. 7558-7569, 2010. IBGE – INSTITUTO BRASILEIRO DE GEOGRAFIA E ESTATÍSTICA. Pesquisa da Pecuária Municipal 2021, Rio de Janeiro: IBGE, 2021. Disponível em: <https://sidra.ibge.gov.br/pesquisa/ppm/quadros/brasil/2021>. Acesso em 20 jan. 2023. ISMAN, M. B. Plant essential oils for pest and disease management. Crop Protection, v. 19, p. 603-608, 2000. ISMAN, M. B. Botanical insecticides, deterrents, and repellents in modern agriculture and an increasingly regulated world. Annual Review of Entomology, v. 51, p. 45-66, 2006. ISMAN, M. B.; MACHIAL, C. M. Pesticides based on plant essential oils: from traditional practice to commercialization. Advances in phytomedicine, v. 3, p.29-44, 2006. ITOIGAWA, M. et al. Cancer chemopreventive activity of phenylpropanoids and phytoquinoids from Illicium plants. Cancer Letters, v. 214, n. 2, p.165-169, 2004. 47 JIROVETZ, L. et al. Chemical Composition and Antioxidant Properties of Clove Leaf Essential Oil. Journal of Agricultural and Food Chemistry, v. 54, n. 17, 6303-6307, 2006. JONSSON, N. N.; MAYER, D. G. Estimation of the effects of buffalo fly (Haematobia irritans exigua) on the milk production of dairy cattle based on a meta-analysis of literature data. Medical and Veterinary Entomology, v. 13, n. 4, p. 372-376, 1999. JUAN, L. W. et al. Chemical Composition and Fumigant Toxicity of the Essential Oils From 16 Species of Eucalyptus Against Haematobia irritans (Diptera: Muscidae) Adults. Journal of Economic Entomology, v. 104, n. 3, p. 1087-1092, 2011. JUKIC, M. et al. In vitro acetylcholinesterase inhibitory properties of thymol, carvacrol and their derivatives thymoquinone and thymohydroquinone. Phytotherapy Research, v. 21, p. 259-261, 2007. KANDA, D.; KAUR, S.; KOUL, O. A comparative study of monoterpenoids and phenylpropanoids from essential oils against stored grain insects: acute toxins or feeding deterrents. Journal of Pest Science, v. 90, n. 2, p. 531-545, 2017. KANG, S. H. et al. Comparative repellency of essential oils Against Culex pipiens pallens (Diptera: Culicidae). Journal of the Korean Society for Applied Biological Chemistry, v. 52, p. 353-359, 2009. KHANIKOR, B., BORA, D. Toxicity of essential oil compounds against Exorista sorbillans (Diptera: Tachinidae), a parasitoid of silkworm. African Journal of Biotechnology, v. 10, p. 19807-19815, 2014. KIM, S. L. et al. Contact and fumigant activities of aromatic plant extracts and essential oils against Lasioderma serricorne (Coleoptera: Anobiidae). Journal of Stored Products Research, v. 39, n. 1, p. 11-19, 2003. KLAUCK, V. et al. Insecticidal and repellent effects of tea tree and andiroba oils on flies associated with livestock. Medical and Veterinary Entomology, v. 28, n. S1, p. 33-39, 2014. KRAFSUR, E. S.; ERNST, C. M. Physiological Age Composition and Reproductive Biology of Horn Fly Populations, Haematobia irritans irritans (Diptera: Muscidae), in Iowa, USA. Journal of Medical Entomology, v. 20, n. 6, p. 664-669, 1983. KUNZ, S. E. et al. Biological and Ecological Investigations of Horn Flies in Central Texas: Influence of Time of Manure Deposition on Oviposition. Journal of Economic Entomology, v. 63, n. 3, p. 930-933, 1970. KUNZ, S. E.; KINZER, H. G.; MILLER, J. A. Areawide cattle treatments on populations of horn flies (Diptera: Muscidae). Journal of Economic Entomology, v. 76, p. 525-528, 1983. KUNZ, S. E. Dynamics of permethrin resistance in a colony of horn flies (Diptera: Muscidae). Journal of Medical Entomology, v. 28, n. 1, p. 63-66, 1991. 48 KUNZ, S. E.; ESTRADA, M. O.; SANCHEZ, H. F. Status of Haematobia irritans (Diptera: Muscidae) Insecticide Resistance in Northeastern Mexico. Journal of Medical Entomology, v. 32, v. 5, p. 726-729, 1995. KURAMOCHI, K. Ovipositional behavior of the horn fly (Diptera: Muscidae) in the field. Journal of Medical Entomology, v. 37, n. 3, p. 461-466, 2000. KUROKAWA, M. et al. Purification and characterization of eugeniin as an anti- herpesvirus compound from Geum japonicum and Syzygium aromaticum. The Journal of Pharmacology and Experimental Therapeutics, v. 284, n. 2, p. 728-735, 1998. LACHANCE, S.; GRANGE, G. Repellent effectiveness of seven plant essential oils, sunflower oil and natural insecticides against horn flies on pastured dairy cows and heifers. Medical and Veterinary Entomology, v. 28, n. 2, p. 193-200, 2014. LAMBERT, M. M. et al. Atividade do óleo essencial de Syzygium aromaticum e de seu principal constituinte eugenol na inibição do desenvolvimento de Ctenocephalides felis felis e no controle de adultos. Parasitologia Veterinária, v. 282, p.109126, 2020. LANCASTER, J. L., MEISCH, M. V. Arthropods in livestock and poultry production. Ellis Horwood, 1986. LEE, B. H. et al. Fumigant toxicity of essential oils from the Myrtaceae family and 1, 8- cineole against 3 major stored-grain insects. Journal of Stored Products Research, v. 40, n. 5, p. 553-564, 2004. LEE, S. J. et al. Identification of volatile components in basil (Ocimum basilicum L.) and thyme leaves (Thymus vulgaris L.) and their antioxidant properties. Food Chemistry, v. 91, n. 1, p.131-137, 2005. LEITE, R. C. et al. Primeiro relato de Haematobia irritans (L.)(Diptera: Muscidae) como vetor de Dermatobia hominis (L. jr.)(Diptera: Cuterebridae) em Minas Gerais, Brasil. Memórias do Instituto Oswaldo Cruz, v. 93, p. 761-762, 1998. LEMOS, T. L. et al. Antimicrobial activity of essential oil of Brazilian plants. Phytotherapy Research, v. 4, p. 82-84, 1990. LI, X.; SCHULER, M. A.; BERENBAUM, M. R. Molecular mechanisms of metabolic resistance to synthetic and natural xenobiotics. Annual Review of Entomology, v. 52, p. 231-253, 2007. LIMA, L. G. F.; PRADO, A. P.; PERRI, S. H. V. Localização preferencial e índices diferenciados de infestação da mosca-dos-chifres (Haematobia irritans) em bovinos da raça Nelore. Pesquisa Veterinária Brasileira, v. 22, p. 25-32, 2002. LIMA, H. R. P.; KAPLAN, M. A. C.; CRUZ, A. V. M. de. Influência dos Fatores Abióticos na Produção e Variabilidade de Terpenóides em Plantas. Floresta e Ambiente, v. 10, n. 2, p. 71-77, 2003. 49 LOI, D. T.; THU, N. V. Medicinal trees, pharmaceutical material and herbs in Vietnam. Pharmacy College Publisher, p. 209-211, 1970. LÓPEZ, M. D.; PASCUAL-VILLALOBOS, M. J. Mode of inhibition of acetylcholinesterase by monoterpenoids and implications for pest control. Industrial Crops and Products, v. 31, n. 2, p. 284-288, 2010. LUND, A. E.; NARAHASHI, T. Dose-dependent interaction of the pyrethroid isomers with sodium channels of squid axon membranes. Neurotoxicology, v. 3, n. 1, p. 11-24, 1982. MACEDO, D. M.; BRITO, L. G.; BORJA, G. E. M. Emergência de Haematobia irritans em fezes bovinas no município de Seropédica, Rio de Janeiro. Pesquisa Veterinária Brasileira, v. 21, n. 2, p. 77-80, 2001. MARICONI, F. M. Inseticidas e seu emprego no combate às pragas. São Paulo: Nobel, 1988. Tomo 1, 305 p. MARLATT, C. L. A Mosca do Chifre:(Haematobia Serrata Rob.-Desv). Departamento de Agricultura dos Estados Unidos, Departamento de Entomologia, 1910. MARQUES, L. et al. Primer diagnóstico de resistencia de Haematobia irritans (Diptera: Muscidae) en Uruguay: determinación de susceptibilidad a cypermetrina y diazinon. Veterinaria (Montevideo), v. 33, n. 133, p. 20-23, 1997. MASON, K. V. et al. Fenthion for flea control on dogs under field conditions: dose response efficacy studies and effect on cholinesterase activity. Journal of the American Animal Hospital Association, v. 20, n. 2, p. 591-595, 1984. MASOTTI, V. et al. Seasonal and phenological variations of the essential oil from the narrow endemic species Artemisia molinieri and its biological activities. Journal of Agricultural and Food Chemistry, v. 51, p. 7115-7121, 2003. MATOS, L. F. et al. Chemical composition and insecticidal effect of essential oils from Illicium verum and Eugenia caryophyllus on Callosobruchus maculatus in cowpea. Industrial Crops and Products, v. 145, p. 112088, 2020. MCDUFFIE, W. C. Current status of insecticide resistance in livestock pests. Miscellaneous Publications of the Entomological Society of America, v. 2, p. 49-54, 1960. MCKENZIE, C. L.; BYFORD, R. L. Continuous, alternating, and mixed insecticides affect development of resistance in the horn fly (Diptera: Muscidae). Journal of Economic Entomology, v. 86, n. 4, p. 1040-1048, 1993. MCLINTOCK, J.; DEPNER, K. R. A review of the life history and habits of the horn fIy, Siphona irritans (L.) (Diptera: Muscidae). The Canadian Entomologist, v. 86, p. 20-33, 1954. 50 MELO, L. R. B. Determinação do número de gerações anuais e do período de desenvolvimento das formas imaturas de Haematobia irritans (Díptera: Muscidae) em massas fecais de bovinos Sindi no semiárido paraibano. 2018. 60 f. Dissertação (Mestrado em Medicina Veterinária) – Universidade Federal de Campina Grande. Campina Grande, 2018. MELO, L. R. B et al. Development and number of generations of Haematobia irritans (Diptera: Muscidae) in bovine fecal masses in the semiarid region of Brazil. Veterinary Parasitology: Regional Studies and Reports, v. 20, 2020. MILLER, J. A. et al. Methoprene for control of the horn fly: a sustained-release bolus formulation for cattle. Journal of Economic Entomology, v. 70, n. 5, p. 589-591, 1977. MILLER, J. A. et al. Atividade larvicida de Merck MK-933, uma avermectina, contra mosca dos chifres, mosca dos estábulos, mosca facial e mosca doméstica. Journal of Economic Entomology, v. 74, n. 5, p. 608-611, 1981. MILLER, J. A. et al. Efeito da ivermectina na sobrevivência e fecundidade de moscas dos chifres e moscas dos estábulos (Diptera: Muscidae). Journal of Economic Entomology, v. 79, n. 6, p. 1564-1569, 1986. MILLER, J. A.; OEHLER, D. D.; SCHOLL, P. J. Moxidectin: pharmacokinetics and activity against horn flies (Diptera: Muscidae) and trichostrongyle nematode egg production. Veterinary Parasitology, v. 53, n. 1-2, p. 133-143, 1994. MIRABALLES, C. et al. Efficiency of a walk-through fly trap for Haematobia irritans control in milking cows in Uruguay. Veterinary Parasitology: Regional Studies and Reports, v. 10, p. 126-131, 2017. MIRABALLES, C. et al. Susceptibility of field populations of Haematobia irritans to fipronil in Uruguay. Pesquisa Veterinária Brasileira, v. 41, e06821, 2021. MOCHI, D. A. et al. Efficiency of entomopathogenic fungi in the control of eggs and larvae of the horn fly Haematobia irritans (Diptera: Muscidae). Veterinary Parasitology, v. 167, n. 1, p. 62-66, 2010a. MOCHI, D. A. et al. (2010b). Entomopathogenic fungal activity against pupae and adult Haematobia irritans (Diptera: Muscidae). Veterinary Parasitology, v. 168, n. 1- 2, p. 105-110, 2010b. MOHSENIPOUR, Z.; HASSANSHAHIAN, M. The inhibitory effect of Thymus vulgaris extracts on the planktonic form and biofilm structures of six human pathogenic bacteria. Avicenna Journal of Phytomedicine, v. 5, n. 4, p. 309-318, 2015. MONTEIRO, S. G. Parasitologia na Medicina Veterinária. 2 ed. Rio de Janeiro: Roca, 2017. 370p. 51 MONTEIRO, C. et al. Thymol and eugenol microemulsion for Rhiphicephalus sanguineus sensu lato control: Formulation development, field efficacy, and safety on dogs. Veterinary Parasitology, v. 296, p. 109501, 2021. MORAIS, L. A. S.; MARINHO-PRADO, J. S. Plantas com atividade inseticida. In: Defensivos agrícolas naturais: uso e perspectivas. Brasília: Embrapa, 2016. Cap. 19. p. 542-585. MORGAN, N. O. Autoecology of the adult horn fly, Haematobia irritans (L.) (Diptera: Muscidae). Ecology, v. 45, p. 728-736, 1964. MUTERO, A. et al. Resistance-associated point mutations in insecticide-insensitive acetylcholinesterase. Proceedings of the National Academy of Sciences, v. 91, n. 13, p. 5922-5926, 1994. MWANGALA, F. S.; GALLOWAY, T. D. Susceptibility of horn flies, Haematobia irritans (L.) (Diptera: Muscidae), to pyrethroids in Manitoba. The Canadian Entomologist, v. 125, n. 1, p. 47-53, 1993. NASCIMENTO, C. G. et al. Monitoramento da resistência de Haematobia irritans (Linnaeus, 1758) (Diptera: Muscidae) a inseticidas no noroeste do estado de São Paulo. Revista Brasileira de Medicina Veterinária, v. 34, supl. 1, p. 21-27, 2012. NERIO, L. S.; OLIVERO-VERBEL, J.; STASHENKO, E. Repellent activity of essential oils: A review. Bioresource Technology, v. 101, n. 1, p. 372-378, 2010. NOLL, M. E. The Control of Stomoxys Calcitrans (Stable Flies) with Essential Oils. 2020. 66p. Dissertation (Master’s degree). Faculty of Life Sciences, School of Biological Sciences - University of Bristol. 2020. OGATA, M. et al. Antioxidant Activity of Eugenol and Related Monomeric and Dimeric Compounds. Chemical and Pharmaceutical Bulletin, v. 48, n. 10, p. 1467- 1469, 2000. OGUH, C. E. et al. Natural pesticides (biopesticides) and uses in pest management-a critical review. Asian Journal of Biotechnology and Genetic Engineering, v. 2, n. 3, p. 1-18, 2019. OLIVEIRA, G. P. et al. Atividades do endectocidas abamectina, doramectina, moxidectina e ivermectina no controle do Boophilus microplus e da Haematobia irritans em bovinos, em São Carlos (SP). Revista de Ciências Agrárias, v. 46, n. 1, p. 41-52, 2006. OLIVEIRA, G. F. et al. Avaliação do piriproxifeno em bovinos por via oral: uma alternativa para o controle de Haematobia irritans. Veterinary Parasitology, v. 299, p.109565, 2021. OLIVEIRA, L. M. et al. Ocimum gratissimum essential oil and eugenol against Ctenocephalides felis felis and Rhipicephalus sanguineus: In vitro activity and residual 52 efficacy of a eugenol-based spray formulation. Veterinary Parasitology, v. 309, p. 109771, 2022. OWENS W. E. et al. Role of horn flies (Haematobia irritans) in Staphylococcus aureus–induced mastitis in dairy heifers. American Journal of Veterinary Research, v. 59, p. 1122-1124, 1998. OYARZÚN, M. P.; LI, A. Y.; FIGUEROA, C. C. High levels of insecticide resistance in introduced horn fly (Diptera: Muscidae) populations and implications for management. Journal of Economic Entomlogy, v. 104, n. 1, p. 258-265, 2011. PAL, D. et al. Eugenol restricts DMBA croton oil induced skin carcinogenesis in mice: downregulation of c-Myc and H-ras, and activation of p53 dependent apoptotic pathway. Journal of Dermatological Science, v. 59, n. 1, p. 31-39, 2010. PAOLI, S. D. et al. Effects of clove (Caryophyllus aromaticus L.) on the labeling of blood constituents with technetium-99m and on the morphology of red blood cells. Brazilian Archives of Biology and Technology, v. 50, p. 175-182, 2007. PASAY, C. et al. Acaricidal activity of eugenol based compounds against scabies mites. PloS One, v. 5, n. 8, p. e12079, 2010. PAVELA, R.; BENELLI, G. Essential Oils as Ecofriendly Biopesticides? Challenges and Constraints. Trends in Plant Science, v. 21, n. 12, p. 1000-1007, 2016. PAWAR, V. C.; THAKER, V. S. In vitro efficacy of 75 essential oils against Aspergillus niger. Mycoses, v. 49, n. 4, p. 316-323, 2006. PEREIRA, M. C.; COSSI JUNIOR, O.; DIAS, A. M. S. Efficacy of some insecticides for control of the horn fly. Brazilian Journal of Veterinary Research and Animal Science, v. 31, n. 3-4, p. 186-190, 1994. PERES, L. E. P. Metabolismo Secundário das Plantas. 2009. Disponível em: <http://www.oleosessenciais.org/metabolismo-secundario-das-plantas/>. Acesso em: 18 jan. 2023. PÉREZ, S. G et al. Atividade de óleos essenciais como alternativa biorracional no controle de insetos coleópteros em grãos armazenados. Journal of Medicinal Plants Research, v. 4, n. 25, p. 2827-2835, 2010. PÉRINO-ISSARTIER, S. et al. A comparison of essential oils obtained from lavandin via different extraction processes: Ultrasound, microwave, turbohydrodistillation, steam and hydrodistillation. Journal of Chromatography A, v. 1305, p. 41-47, 2013. PERRY, N. B. et al. Essential oils from Dalmatian sage (Salvia officinalis L.): Variations among individuals, plant parts, seasons, and sites. Journal of Agricultural and Food Chemistry, v. 47, p. 2048-2054, 1999. PRIESTLEY, C. M. et al. Thymol, a constituent of thyme essential oil, is a positive allosteric modulator of human GABA(A) receptors and a homo-oligomeric GABA 53 receptor from Drosophila melanogaster. British Journal of Pharmacology, v. 140, p. 1363-1372, 2003. PRIETO, O. H. et al. Mosca de los cuernos, Haematobia irritans irritans (L. 1758) (Diptera, Muscidae). Contribuciones para su conocimiento en la Argentina. IV. Relaciones con los hospedadores. Revista de Medicina Veterinaria, v. 75, n. 6, p. 469- 476, 1994. QUISENBERRY, S.S. et al. Pyrethroid resistance in the horn f1y, Haematobia irritans (L.) (Diptera: Muscidae). Journal of Economic Entomology, v. 77, p. 1095-1098, 1984. RAJENDRAN, S.; SRIRANJINI, V. Plant products as fumigants for stored-product insect control. Journal of stored products Research, v. 44, n. 2, p. 126-135, 2008. RAMSEY, J. T. et al. Focus: Plant-based medicine and pharmacology: Essential oils and health. Yale Journal of Biology and Medicine, v. 93, n. 2, p. 291, 2020. RAUH, J. J.; LUMMIS, S. C. R; SATTELLE, D. B. Pharmacological and biochemical properties of insect GABA receptors. Trends in Pharmacological Sciences, v. 11, n. 8, p. 325-329, 1990. RAVETON, M. et al. Soil distribution of fipronil and its metabolites originating from a seed-coated formulation. Chemosphere, v. 69, n. 7, p. 1124-1129, 2007. REDDY, V. P. et al. Review on Thymus vulgaris traditional uses and pharmacological properties. Medicinal and Aromatic Plants, v. 3, n. 164, p. 2167-0412, 2014. RIBEIRO-SANTOS, R. et al. Biological activities and major components determination in essential oils intended for a biodegradable food packaging. Industrial Crops and Products, v. 97, p. 201-210, 2017. RODRIGUES, S.R.; MARCHINI, L. C. Estudo de temperaturas em massas fecais de bovinos e previsão do número de gerações anuais de Haematobia irritans (Diptera, Muscidae), em Piracicaba, SP, Brasil. Revista Brasileira de Entomologia, v. 45, n. 2, p. 89-94, 2001. ROTILI, D. A. et al. Uso de eugenol como anestésico em pacu. Pesquisa Agropecuária Tropical, v. 42, p. 288-294, 2012. ROWSHAN, V.; BAHMANZADEGAN, A.; SAHARKHIZ, M. J. Influence of storage conditions on the essential oil composition of Thymus daenensis Celak. Industrial Crops and Products, v.49, p. 97-101, 2013. SAKURAI, F.N. et al. Caracterização das propriedades funcionais das ervas aromáticas utilizadas em um hospital especializado em cardiopneumologia. DEMETRA: Alimentação, Nutrição & Saúde, v. 11, n. 4, p. 1097-1113, 2016. 54 SALAS, R. Z. et al. Tripanossomíase bovina na ganadería lechera de trópico alto: primer informe de Haematobia irritans como principal vetor de T. vivax e T. evansi na Colômbia. Revista de Medicina Veterinária, n. 33, p. 21-34, 2017. SANCHEZ-SANDOVAL, U. A. et al. The Effect of Horn Fly (Diptera: Muscidae) Infestation on Behavior, Water and Feed Intake, and Digestion Characteristics of Beef Bovin. Journal of Economic Entomology, v. 115, n. 1, p. 365-370, 2022. SANDERS, D. P.; DOBSON, R. C. Contributions to the Biology of the Horn Fly. Journal of Economic Entomology, v. 62, n. 6, p. 1362-1366, 1969. SANTIN, J. R. et al. Gastroprotective activity of essential oil of the Syzygium aromaticum and its major component eugenol in different animal models. Naunyn- Schmiedeberg's archives of pharmacology, v. 383, n. 2, p. 149-158, 2011. SANTORO, G. F. et al. Effect of oregano (Origanum vulgare L.) and thyme (Thymus vulgaris L.) essential oils on Trypanosoma cruzi (Protozoa: Kinetoplastida) growth and ultrastructure. Parasitology Research, v. 100, n. 4, p. 783-790, 2007. SANTOS, R. I. Metabolismo básico e origem dos metabólitos secundários. In: SIMÕES, C. M. O. et al. Farmacognosia: da planta ao medicamento, 5. ed., Porto Alegre/Florianópolis: UFRGS/UFSC, 2004. SANTOS, C. H. da S.; PICCOLI, R. H.; TEBALDI, V. M. R. Atividade antimicrobiana de óleos essenciais e compostos isolados frente aos agentes patogênicos de origem clínica e alimentar. Revista do Instituto Adolfo Lutz, v. 76, p. 1-8, 2017. SARTOR, I.F.; BICUDO, P.L. Agentes empregados no controle de ectoparasitas. In: SPINOSA, H.S.; GÓRNIAK, S.L.; BERNARDI, M.M. Farmacologia aplicada à medicina veterinária. 2.ed. Rio de Janeiro: Guanabara Koogan, 1999. p.480-492. SAUERESSIG, T. M.; BARROS, A. T. Diagnóstico da susceptibilidade de populações da mosca-dos-chifres a inseticidas em Goiás, Tocantins e Distrito Federal. Planaltina: Embrapa Cerrados; 2003. 16 p. (Embrapa Cerrados, Boletim de Pesquisa e Desenvolvimento, n. 82) SCHMIDT, C. D. Activity of an avermectin against selected insects in aging manure. Environmental Entomology, v. 12, n. 2, p. 455-457, 1983. SCHREIBER, E. T.; CAMPBELL, J. B. Horn fly (Diptera: Muscidae) distribution on cattle as influenced by host color and time of day. Environmental entomology, v. 15, n. 6, p. 1307-1309, 1986. SCOTT, F. B.; COUMENDOUROS, K.; GRISI, L. Avaliação in vitro da susceptibilidade da Haematobia irritans a alguns inseticidas no Estado de São Paulo. Revista Brasileira de Parasitologia Veterinária, v. 3, n. 2, p. 83-85, 1994. SERRA-FREIRE, N. M.; MELLO, R. P. Entomologia e acarologia na medicina veterinária. Rio de Janeiro: LF Livros, 2006. 55 SHEPPARD, C. Stirofos resistance in a population of horn flies. Journal of the Georgia Entomological Society, v. 18, n. 3, p. 370-376, 1983. SHEPPARD, D.C. Fenvalerate and flucythrinate resistance in a horn fly population. Journal of Agricultural Entomology, v. 1, p. 305-310, 1984. SHEPPARD, D.C.; HINKLE, N. C. A field procedure using disposable materials to evaluate horn fly insecticide resistance. Journal of Agricultural Entomology, v. 4, 87- 89, 1987. SHOOP, W. L. et al. Eprinomectin: a novel avermectin for use as a topical endectocide for cattle. International Journal for Parasitology, v. 26, n. 11, p. 1237-1242, 1996. SHUKRI, R.; MOHAMED, S.; MUSTAPHA, N. M. Cloves protect the heart, liver and lens of diabetic rats. Food chemistry, v. 122, n. 4, p. 1116-1121, 2010. SILVA, L. V. D.; RUE, M. L. D. L.; GRAÇA, D. L. Lesões da mosca dos chifres (Haematobia irritans Linnaeus, 1758) na pele de bovinos e impacto na indústria do couro. Ciência Rural, v. 32, p. 1039-1043, 2002. SILVESTRE, A. J. D. et al. Analysis of the variation of the essential oil composition of Eucalyptus globulus Labill. from Portugal using multivariate statistical analysis. Industrial Crops and Products, v. 6, p. 27-33, 1997. SILVESTRI, J. D. F. et al. Perfil da composição química e atividades antibacteriana e antioxidante do óleo essencial do cravo-da-índia (Eugenia caryophyllata Thunb.). Revista Ceres, v. 57, p. 589-594, 2010. SIMÕES, C. M. O. et al. Farmacognosia: da planta ao medicamento, 5. ed., Porto Alegre/Florianópolis: UFRGS/UFSC, 2004. SINTHUSIRI, J.; SOONWERA, M. Efficacy of herbal essential oils as insecticides against the housefly, Musca domestica L. The Southeast Asian journal of tropical medicine and public health, v. 44, n. 2, p. 188-196, 2013. SINTHUSIRI, J.; SOONWERA, M. Oviposition deterrent and ovicidal activities of seven herbal essential oils against female adults of housefly, Musca domestica L. Parasitology research, v. 113, n. 8, p. 3015-3022, 2014. SODERLUND, D. M.; BLOOMQUIST, J. R. Molecular mechanisms of insecticide resistance. Insect Biochemistry, v. 20, n. 7, p. 383-390, 1990. SOLOMON, B. et al. Microencapsulation of citronella oil for mosquito-repellent application: Formulation and in vitro permeation studies. European Journal of Pharmaceutics and Biopharmaceutics, v. 80, n. 1, p. 61-66, 2012. SOUZA, A. A. et al. Composição química e concentração mínima bactericida de dezesseis óleos essenciais sobre Escherichia coli enterotoxigênica. Revista Brasileira de Plantas Medicinais, p. 105-112, 2016. 56 SPECIAN, V.; DE OLIVEIRA, R. C.; DE SOUZA DINIZ, S. P. S. Atividade do Óleo Essencial de Tomilho (Thymus vulgaris L.) Contra Fungos Fitopatogênicos. Jornal de Ciências da Saúde, v. 11, n. 4, 2009. STEELMAN, C. D. et al. Interactive response of the horn fly (Diptera: Muscidae) and selected breeds of beef cattle. Journal of economic entomology, v. 84, n. 4, p. 1275- 1282, 1991. SUN, L. et al. The essential oil from the twigs of Cinnamomum cassia Presl alleviates pain and inflammation in mice. Journal of Ethnopharmacology, v. 194, p. 904-912, 2016. SUN, L. et al. α-pinene, caryophyllene and β-myrcene from Peucedanum terebinthaceum essential oil: Insecticidal and repellent effects on three stored-product insects. Records of Natural Products, v. 14, n. 3, p. 189, 2020. TAIZ, L.; ZEIGER, E. Metabólitos Secundários e Defesa Vegetal. In: _____. Fisiologia vegetal. 4. ed. Porto Alegre: Artmed, 2008. 820 p. TAJUDDIN et al. Effect of 50% ethanolic extract of Syzygium aromaticum (L.) Merr. & Perry. (clove) on sexual behaviour of normal male rats. BMC Complementary Medicine and Therapies, v. 4, n. 17, 2004. TAYLOR, M. A. Recent Developments in Ectoparasiticides. The Veterinary Journal, v. 161, n. 3, p. 253–268, 2001. TAYLOR, M. A. et al. Parasitologia Veterinária. 4 ed. Rio de Janeiro: Guanabara Koogan, 2017. 965 p. THACKER, J. M. R. An introduction to arthopod pest control. Cambridge: Cambridge University Press, 2002. 343 p. TINGLE, C. C. D. et al. Health and environmental effects of fipronil. Briefing paper for Pesticides Action Network, v. 22, p. 103-118, 2000. URQUHART, G. M. et al. Parasitologia Veterinária. 2 ed. Rio de Janeiro. Ed. Guanabara. 1998. UZUKA, Y. et al. Chemical control of Haematobia irritans with 0.5% topical ivermectin solution in cattle. Journal of veterinary medical science, v. 61, n. 3, p. p. 287-289, 1999. VALÉRIO, J. R.; GUIMARÃES, J. H. Sobre a ocorrência de uma nova praga, Haematobia irritans (L.) (Diptera, Muscidae), no Brasil. Revista Brasileira de Zoologia, v. 1, n. 4, p. 417-418, 1983. VAN DEN DOOL, H.; KRATZ, P. D. Una generalización del sistema de índice de retención incluyendo cromatografía de partición programada gaslíquido de temperatura lineal. Journal of Chromatography A, v. 11, p. 463-471, 1963. 57 VELASCO, R. et al. Daño económico y costos de control en bovinos mosca de los cuernos. Informativo Agropecuario Bioleche INIA Quilamapu, v. 14, p. 4-7, 2001. VERGHESE, J. The world of spices and herbs. Spice India, v. 11, n. 4, p. 15-18, 1988. VIEIRA, P.C.; FERNANDES, J. B.; ANDREI, C. C. Plantas inseticidas. In: SIMÕES, C. M. O. et al. Farmacognosia: da planta ao medicamento, 5. ed., Porto Alegre/Florianópolis: UFRGS/UFSC, 2004. WANG, G. W. et al. Illicium verum: uma revisão sobre sua botânica, uso tradicional, química e farmacologia. Journal of Ethnopharmacology, v. 136, n. 1, p. 10-20, 2011. WATSON, D. W. et al. Managing the horn fly (Diptera: Muscidae) using an electric walk-through fly trap. Journal of Economic Entomology, v. 95, n. 5, p. 1113-1118, 2002. WILLIAMS, R. E.; WESTBY, E. J. Evaluation of pyrethroids impregnated in cattle ear tags for control of face flies and horn flies. Journal of Economic Entomology, v. 73, n. 6, p. 791-792, 1980. WILLIAMS, R. E. Controle químico, prejuízos econômicos e estratégias de controle. In: Simpósio Internacional sobre mosca dos chifres (Haematobia irritans), 1., 1991. Anais... São Paulo: USP, 1991. WISLOW, R. B. Reguladores de crescimento de insetos e controle da mosca dos chifres. A Hora Veterinária, v. 11, n. 65, p. 38-40, 1992. YANG, X. Q. et al. Essential oil of cinnamon exerts anti-cancer activity against head and neck squamous cell carcinoma via attenuating epidermal growth factor receptor- tyrosine kinase. Journal of Balkan Union of Oncology, v. 20, p. 1518-1525, 2015. YEOM, H. J. et al. Fumigant and contact toxicity of Myrtaceae plant essential oils and blends of their constituents against adults of German cockroach (Blattella germanica) and their acetylcholinesterase inhibitory activity. Pesticide Biochemistry and Physiology, v. 107, n. 2, p. 200-206, 2013. YOUSEFI, M. et al. Thymol as a new anesthetic in common carp (Cyprinus carpio): Efficacy and physiological effects in comparison with eugenol. Aquaculture, v. 495, p. 376-383, 2018. ZHANG, C. et al. Cinnamomum cassia Presl: A review of its traditional uses, phytochemistry, pharmacology and toxicology. Molecules, v. 24, n. 19, p. 3473, 2019. ZHU, J. J. et al. Comparisons of antifeedancy and spatial repellency of three natural product repellents against horn flies, Haematobia irritans (Diptera: Muscidae). Pest Management Science, v. 71, n. 11, p. 1553-1560, 2015. ZUMPT, F. The Stomoxyine biting flies of the world. Diptera: Muscidae. Taxonomy, biology, economic importance and control measures, 1973.pt_BR
dc.subject.cnpqParasitologiapt_BR
Appears in Collections:Mestrado em Ciências Veterinárias

Se for cadastrado no RIMA, poderá receber informações por email.
Se ainda não tem uma conta, cadastre-se aqui!

Files in This Item:
File Description SizeFormat 
2023 - Brena Gava Guimarães.pdf1.46 MBAdobe PDFThumbnail
View/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.