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Pterodon emarginatus oleoresin-based nanoemulsion as a promising tool for Culex quinquefasciatus (Diptera: Culicidae) control
by
Souto, Raimundo N. P.
, Oliveira, Anna E. M. F. M.
, Cruz, Rodrigo A. S.
, de Oliveira, Leandra A. R.
, Duarte, Jonatas L.
, Peniche, Taires
, da Conceição, Edemilson C.
, Faustino, Silvia M. M.
, Carvalho, José C. T.
, Florentino, Alexandro C.
, Ferreira, Ricardo M. A.
, Fernandes, Caio P.
in
Animals
/ Biotechnology
/ Care and treatment
/ Causes of
/ Chemistry
/ Chemistry and Materials Science
/ Chlorella vulgaris - drug effects
/ Chlorella vulgaris - physiology
/ Culicidae - drug effects
/ Culicidae - physiology
/ Emulsions - chemistry
/ Emulsions - toxicity
/ Fabaceae - chemistry
/ Female
/ Insect Control
/ Insecticides - chemistry
/ Insecticides - toxicity
/ Larva - drug effects
/ Larva - physiology
/ Lymphatic diseases
/ Molecular Medicine
/ Nanotechnology
/ Oleoresins
/ Plant Extracts - chemistry
/ Plant Extracts - toxicity
2017
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Pterodon emarginatus oleoresin-based nanoemulsion as a promising tool for Culex quinquefasciatus (Diptera: Culicidae) control
by
Souto, Raimundo N. P.
, Oliveira, Anna E. M. F. M.
, Cruz, Rodrigo A. S.
, de Oliveira, Leandra A. R.
, Duarte, Jonatas L.
, Peniche, Taires
, da Conceição, Edemilson C.
, Faustino, Silvia M. M.
, Carvalho, José C. T.
, Florentino, Alexandro C.
, Ferreira, Ricardo M. A.
, Fernandes, Caio P.
in
Animals
/ Biotechnology
/ Care and treatment
/ Causes of
/ Chemistry
/ Chemistry and Materials Science
/ Chlorella vulgaris - drug effects
/ Chlorella vulgaris - physiology
/ Culicidae - drug effects
/ Culicidae - physiology
/ Emulsions - chemistry
/ Emulsions - toxicity
/ Fabaceae - chemistry
/ Female
/ Insect Control
/ Insecticides - chemistry
/ Insecticides - toxicity
/ Larva - drug effects
/ Larva - physiology
/ Lymphatic diseases
/ Molecular Medicine
/ Nanotechnology
/ Oleoresins
/ Plant Extracts - chemistry
/ Plant Extracts - toxicity
2017
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Pterodon emarginatus oleoresin-based nanoemulsion as a promising tool for Culex quinquefasciatus (Diptera: Culicidae) control
by
Souto, Raimundo N. P.
, Oliveira, Anna E. M. F. M.
, Cruz, Rodrigo A. S.
, de Oliveira, Leandra A. R.
, Duarte, Jonatas L.
, Peniche, Taires
, da Conceição, Edemilson C.
, Faustino, Silvia M. M.
, Carvalho, José C. T.
, Florentino, Alexandro C.
, Ferreira, Ricardo M. A.
, Fernandes, Caio P.
in
Animals
/ Biotechnology
/ Care and treatment
/ Causes of
/ Chemistry
/ Chemistry and Materials Science
/ Chlorella vulgaris - drug effects
/ Chlorella vulgaris - physiology
/ Culicidae - drug effects
/ Culicidae - physiology
/ Emulsions - chemistry
/ Emulsions - toxicity
/ Fabaceae - chemistry
/ Female
/ Insect Control
/ Insecticides - chemistry
/ Insecticides - toxicity
/ Larva - drug effects
/ Larva - physiology
/ Lymphatic diseases
/ Molecular Medicine
/ Nanotechnology
/ Oleoresins
/ Plant Extracts - chemistry
/ Plant Extracts - toxicity
2017
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Pterodon emarginatus oleoresin-based nanoemulsion as a promising tool for Culex quinquefasciatus (Diptera: Culicidae) control
Journal Article
Pterodon emarginatus oleoresin-based nanoemulsion as a promising tool for Culex quinquefasciatus (Diptera: Culicidae) control
2017
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Overview
Background
Preparation of nanoformulations using natural products as bioactive substances is considered very promising for innovative larvicidal agents. On this context, oil in water nanoemulsions develop a main role, since they satisfactorily disperse poor-water soluble substances, such as herbal oils, in aqueous media.
Pterodon emarginatus
, popularly known as sucupira, has a promising bioactive oleoresin. However, to our knowledge, no previous studies were carried out to evaluate its potential against
Culex quinquefasciatus
, the main vector of the tropical neglected disease called lymphatic filariasis or elephantiasis. Thus, we aimed to investigate influence of different pairs of surfactants in nanoemulsion formation and investigate if a sucupira oleoresin-based nanoemulsion has promising larvicidal activity against this
C. quinquefasciatus
. We also evaluated morphological alteration, possible mechanism of insecticidal action and ecotoxicity of the nanoemulsion against a non-target organism.
Results
Among the different pairs of surfactants that were tested, nanoemulsions obtained with polysorbate 80/sorbitan monooleate and polysorbate 80/sorbitan trioleate presented smallest mean droplet size just afterwards preparation, respectively 151.0 ± 2.252 and 160.7 ± 1.493 nm. They presented high negative zeta potential values, low polydispersity index (<0.300) and did not present great alteration in mean droplet size and polydispersity index after 1 day of preparation. Overall, nanoemulsion prepared with polysorbate 80/sorbitan monooleate was considered more stable and was chosen for biological assays. It presented low LC
50
value against larvae (34.75; 7.31–51.86 mg/L) after 48 h of treatment and some morphological alteration was observed. The nanoemulsion did not inhibit acetylcholinesterase of
C. quinquefasciatus
larvae. It was not toxic to green algae
Chlorella vulgaris
at low concentration (25 mg/L).
Conclusions
Our results suggest that optimal nanoemulsions may be prepared with different surfactants using a low cost and low energy simple method. Moreover, this prototype proved to be effective against
C. quinquefasciatus
, being considered an ecofriendly novel nanoproduct that can be useful in integrated control programs of vector control.
Publisher
BioMed Central,BioMed Central Ltd,Springer Nature B.V
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