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Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities

The diamond back moth, Plutella xylostella, causes severe damage at all crop stages, beside its rising resistance to all insecticides. The objective of this study was to look for a new control strategy such as application of insecticide-loaded carbon dot-embedded fluorescent mesoporous silica nanopa...

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Autores principales: Bilal, Muhammad, Sial, Muhammad Umair, Cao, Lidong, Huang, Qiliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144591/
https://www.ncbi.nlm.nih.gov/pubmed/35628599
http://dx.doi.org/10.3390/ijms23105790
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author Bilal, Muhammad
Sial, Muhammad Umair
Cao, Lidong
Huang, Qiliang
author_facet Bilal, Muhammad
Sial, Muhammad Umair
Cao, Lidong
Huang, Qiliang
author_sort Bilal, Muhammad
collection PubMed
description The diamond back moth, Plutella xylostella, causes severe damage at all crop stages, beside its rising resistance to all insecticides. The objective of this study was to look for a new control strategy such as application of insecticide-loaded carbon dot-embedded fluorescent mesoporous silica nanoparticles (FL-SiO(2) NPs). Two different-sized methoxyfenozide-loaded nanoparticles (Me@FL-SiO(2) NPs-70 nm, Me@FL-SiO(2) NPs-150 nm) were prepared, with loading content 15% and 16%. Methoxyfenozide was released constantly from Me@FL-SiO(2) NPs only at specific optimum pH 7.5. The release of methoxyfenozide from Me@FL-SiO(2) NPs was not observed other than this optimum pH, and therefore, we checked and controlled a single release condition to look out for the different particle sizes of insecticide-loaded NPs. This pH-responsive release pattern can find potential application in sustainable plant protection. Moreover, the lethal concentration of the LC(50) value was 24 mg/L for methoxyfenozide (TC), 14 mg/L for Me@FL-SiO(2) NPs-70 nm, and 15 mg/L for Me@FL-SiO(2) NPs-150 nm after 72 h exposure, respectively. After calculating the LC(50), the results predicted that Me@FL-SiO(2) NPs-70 nm and Me@FL-SiO(2) NPs-150 nm exhibited better insecticidal activity against P. xylostella than methoxyfenozide under the same concentrations of active ingredient applied. Moreover, the activities of detoxification enzymes of P. xylostella were suppressed by treatment with insecticide-loaded NPs, which showed that NPs could also be involved in reduction of enzymes. Furthermore, the entering of FL-SiO(2) NPs into the midgut of P. xylostella was confirmed by confocal laser scanning microscope (CLSM). For comparison, P. xylostella under treatment with water as control was also observed under CLSM. The control exhibited no fluorescent signal, while the larvae treated with FL-SiO(2) NPs showed strong fluorescence under a laser excitation wavelength of 448 nm. The reduced enzyme activities as well as higher cuticular penetration in insects indicate that the nano-based delivery system of insecticide could be potentially applied in insecticide resistance management.
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spelling pubmed-91445912022-05-29 Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities Bilal, Muhammad Sial, Muhammad Umair Cao, Lidong Huang, Qiliang Int J Mol Sci Article The diamond back moth, Plutella xylostella, causes severe damage at all crop stages, beside its rising resistance to all insecticides. The objective of this study was to look for a new control strategy such as application of insecticide-loaded carbon dot-embedded fluorescent mesoporous silica nanoparticles (FL-SiO(2) NPs). Two different-sized methoxyfenozide-loaded nanoparticles (Me@FL-SiO(2) NPs-70 nm, Me@FL-SiO(2) NPs-150 nm) were prepared, with loading content 15% and 16%. Methoxyfenozide was released constantly from Me@FL-SiO(2) NPs only at specific optimum pH 7.5. The release of methoxyfenozide from Me@FL-SiO(2) NPs was not observed other than this optimum pH, and therefore, we checked and controlled a single release condition to look out for the different particle sizes of insecticide-loaded NPs. This pH-responsive release pattern can find potential application in sustainable plant protection. Moreover, the lethal concentration of the LC(50) value was 24 mg/L for methoxyfenozide (TC), 14 mg/L for Me@FL-SiO(2) NPs-70 nm, and 15 mg/L for Me@FL-SiO(2) NPs-150 nm after 72 h exposure, respectively. After calculating the LC(50), the results predicted that Me@FL-SiO(2) NPs-70 nm and Me@FL-SiO(2) NPs-150 nm exhibited better insecticidal activity against P. xylostella than methoxyfenozide under the same concentrations of active ingredient applied. Moreover, the activities of detoxification enzymes of P. xylostella were suppressed by treatment with insecticide-loaded NPs, which showed that NPs could also be involved in reduction of enzymes. Furthermore, the entering of FL-SiO(2) NPs into the midgut of P. xylostella was confirmed by confocal laser scanning microscope (CLSM). For comparison, P. xylostella under treatment with water as control was also observed under CLSM. The control exhibited no fluorescent signal, while the larvae treated with FL-SiO(2) NPs showed strong fluorescence under a laser excitation wavelength of 448 nm. The reduced enzyme activities as well as higher cuticular penetration in insects indicate that the nano-based delivery system of insecticide could be potentially applied in insecticide resistance management. MDPI 2022-05-21 /pmc/articles/PMC9144591/ /pubmed/35628599 http://dx.doi.org/10.3390/ijms23105790 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bilal, Muhammad
Sial, Muhammad Umair
Cao, Lidong
Huang, Qiliang
Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities
title Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities
title_full Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities
title_fullStr Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities
title_full_unstemmed Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities
title_short Effects of Methoxyfenozide-Loaded Fluorescent Mesoporous Silica Nanoparticles on Plutella xylostella (L.) (Lepidoptera: Plutellidae) Mortality and Detoxification Enzyme Levels Activities
title_sort effects of methoxyfenozide-loaded fluorescent mesoporous silica nanoparticles on plutella xylostella (l.) (lepidoptera: plutellidae) mortality and detoxification enzyme levels activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9144591/
https://www.ncbi.nlm.nih.gov/pubmed/35628599
http://dx.doi.org/10.3390/ijms23105790
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