The impact of green-synthesised mosquitocidal nanoparticles on non-target aquatic predators is poorly studied. In this research, we proposed a single-step method to synthesise silver nanoparticles (Ag NP) using the seed extract of Melia azedarach. Ag NP were characterised using a variety of biophysical methods, including UV–vis spectrophotometry, scanning electron microscopy, energy-dispersive X-ray spectroscopy and Fourier transform infrared spectroscopy. In laboratory assays on Anopheles stephensi, Ag NP showed LC50ranging from 2.897 (I instar larvae) to 14.548 ppm (pupae). In the field, the application of Ag NP (10 × LC50) lead to complete elimination of larval populations after 72 h. The application of Ag NP in the aquatic environment did not show negative adverse effects on predatory efficiency of the mosquito natural enemy Cyclops vernalis. Overall, this study highlights the concrete possibility to employ M. azedarach-synthesised Ag NP on young instars of malaria vectors.

Green-synthesised nanoparticles from Melia azedarach seeds and the cyclopoid crustacean Cyclops vernalis: an eco-friendly route to control the malaria vector Anopheles stephensi? / Anbu, Priya; Murugan, Kadarkarai; Madhiyazhagan, Pari; Dinesh, Devakumar; Subramaniam, Jayapal; Panneerselvam, Chellasamy; Suresh, Udaiyan; Alarfaj, Abdullah A.; Munusamy, Murugan A.; Higuchi, Akon; Hwang, Jiang Shiou; Kumar, Suresh; Nicoletti, Marcello; Benelli, Giovanni. - In: NATURAL PRODUCT RESEARCH. - ISSN 1478-6419. - 30:18(2016), pp. 2077-2084. [10.1080/14786419.2015.1114935]

Green-synthesised nanoparticles from Melia azedarach seeds and the cyclopoid crustacean Cyclops vernalis: an eco-friendly route to control the malaria vector Anopheles stephensi?

NICOLETTI, Marcello;
2016

Abstract

The impact of green-synthesised mosquitocidal nanoparticles on non-target aquatic predators is poorly studied. In this research, we proposed a single-step method to synthesise silver nanoparticles (Ag NP) using the seed extract of Melia azedarach. Ag NP were characterised using a variety of biophysical methods, including UV–vis spectrophotometry, scanning electron microscopy, energy-dispersive X-ray spectroscopy and Fourier transform infrared spectroscopy. In laboratory assays on Anopheles stephensi, Ag NP showed LC50ranging from 2.897 (I instar larvae) to 14.548 ppm (pupae). In the field, the application of Ag NP (10 × LC50) lead to complete elimination of larval populations after 72 h. The application of Ag NP in the aquatic environment did not show negative adverse effects on predatory efficiency of the mosquito natural enemy Cyclops vernalis. Overall, this study highlights the concrete possibility to employ M. azedarach-synthesised Ag NP on young instars of malaria vectors.
2016
Biological control; biosafety; cyclopoid crustacean; nanobiotechnology; neem; Animals; Green Chemistry Technology; Insect Control; Insecticides; Larva; Lethal Dose 50; Malaria; Melia; Nanoparticles; Plant Extracts; Predatory Behavior; Seeds; Silver; Spectrophotometry, Ultraviolet; Spectroscopy, Fourier Transform Infrared; X-Ray Absorption Spectroscopy; Anopheles; Minocycline; Analytical Chemistry; Biochemistry; Medicine (all); Plant Science; Organic Chemistry
01 Pubblicazione su rivista::01a Articolo in rivista
Green-synthesised nanoparticles from Melia azedarach seeds and the cyclopoid crustacean Cyclops vernalis: an eco-friendly route to control the malaria vector Anopheles stephensi? / Anbu, Priya; Murugan, Kadarkarai; Madhiyazhagan, Pari; Dinesh, Devakumar; Subramaniam, Jayapal; Panneerselvam, Chellasamy; Suresh, Udaiyan; Alarfaj, Abdullah A.; Munusamy, Murugan A.; Higuchi, Akon; Hwang, Jiang Shiou; Kumar, Suresh; Nicoletti, Marcello; Benelli, Giovanni. - In: NATURAL PRODUCT RESEARCH. - ISSN 1478-6419. - 30:18(2016), pp. 2077-2084. [10.1080/14786419.2015.1114935]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/967896
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