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Insecticidal activity of Leptodactylus knudseni and Phyllomedusa vaillantii crude skin secretions against the mosquitoes Anopheles darlingi and Aedes aegypti
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نویسنده
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trindade f.t.t. ,soares t.a. ,de moura a.a. ,rego t.b. ,soares a.m. ,stábeli r.g. ,calderon l.a. ,de almeida e silva a.
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منبع
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journal of venomous animals and toxins including tropical diseases - 2014 - دوره : 20 - شماره : 1
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چکیده
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Background: mosquitoes are important vectors of several diseases,including malaria and dengue,and control measures are mostly performed using chemical insecticides. unfortunately,mosquito resistance to commonly applied insecticides is widespread. therefore,a prospection for new molecules with insecticidal activity based on amazon biodiversity using the anuransleptodactylus knudseniandphyllomedusa vaillantiiwas performed against the mosquito speciesanopheles darlingiandaedes aegypti.methods: the granular secretion from anuran skin was obtained by manual stimulation,and lethal concentrations (lcs) for larvicidal and adulticidal tests were calculated using concentrations from 1-100 ppm. the skin secretions from the anuran species tested caused significant mortality within the first 24 hours on adults and larvae,but differed within the mosquito species.results: the skin secretions from the anuran species tested caused significant mortality within the first 24 hours on adults and larvae,but differed within the mosquito species. the calculated lc50ofl. knudseniskin secretions againstan. darlingiwas 0.15 and 0.2 ppm for adults and larvae,respectively,but much higher forae. aegypti,i.e.,19 and 38 ppm,respectively. interestingly,the calculated lcs50ofp. vaillantiiagainst both mosquito species in adults were similar,1.8 and 2.1 ppm,respectively,but the lc50foran. darlingilarvae was much lower (0.4 ppm) than forae aegypti(2.1 ppm).conclusions: the present experiments indicate that skin secretions froml. knudseniandp. vaillantiicontain bioactive molecules with potent insecticide activity. the isolation and characterization of skin secretions components will provide new insights for potential insecticidal molecules. © 2014 trindade et al.
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کلیدواژه
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Anuran amphibians; Dengue; Malaria; Vector control
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آدرس
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laboratory of insect bioecology,department of biology,federal university of rondônia (unir),porto velho,rondônia state,brazil,oswaldo cruz foundation - rondônia (fiocruz - rondônia),porto velho,rondônia state, Brazil, center for the study of biomolecules applicable to health,oswaldo cruz foundation - rondônia,department of medicine,federal university of rondônia (unir),porto velho,rondônia state, Brazil, center for the study of biomolecules applicable to health,oswaldo cruz foundation - rondônia,department of medicine,federal university of rondônia (unir),porto velho,rondônia state, Brazil, center for the study of biomolecules applicable to health,oswaldo cruz foundation - rondônia,department of medicine,federal university of rondônia (unir),porto velho,rondônia state, Brazil, center for the study of biomolecules applicable to health,oswaldo cruz foundation - rondônia,department of medicine,federal university of rondônia (unir),porto velho,rondônia state, Brazil, oswaldo cruz foundation - rondônia (fiocruz - rondônia),porto velho,rondônia state,brazil,center for the study of biomolecules applicable to health,oswaldo cruz foundation - rondônia,department of medicine,federal university of rondônia (unir),porto velho,rondônia state, Brazil, oswaldo cruz foundation - rondônia (fiocruz - rondônia),porto velho,rondônia state,brazil,center for the study of biomolecules applicable to health,oswaldo cruz foundation - rondônia,department of medicine,federal university of rondônia (unir),porto velho,rondônia state, Brazil, laboratory of insect bioecology,department of biology,federal university of rondônia (unir),porto velho,rondônia state,brazil,oswaldo cruz foundation - rondônia (fiocruz - rondônia),porto velho,rondônia state, Brazil
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