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Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization

Poorly water-soluble compounds are difficult to develop as pesticide products and face great challenges in water-based and environmentally friendly formulation development. In this study, high pressure homogenization combined with lyophilization was adopted to prepare the solid nanodispersions of ch...

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Autores principales: Cui, Bo, Feng, Lei, Wang, Chunxin, Yang, Dongsheng, Yu, Manli, Zeng, Zhanghua, Wang, Yan, Sun, Changjiao, Zhao, Xiang, Cui, Haixin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4976933/
https://www.ncbi.nlm.nih.gov/pubmed/27500828
http://dx.doi.org/10.1371/journal.pone.0160877
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author Cui, Bo
Feng, Lei
Wang, Chunxin
Yang, Dongsheng
Yu, Manli
Zeng, Zhanghua
Wang, Yan
Sun, Changjiao
Zhao, Xiang
Cui, Haixin
author_facet Cui, Bo
Feng, Lei
Wang, Chunxin
Yang, Dongsheng
Yu, Manli
Zeng, Zhanghua
Wang, Yan
Sun, Changjiao
Zhao, Xiang
Cui, Haixin
author_sort Cui, Bo
collection PubMed
description Poorly water-soluble compounds are difficult to develop as pesticide products and face great challenges in water-based and environmentally friendly formulation development. In this study, high pressure homogenization combined with lyophilization was adopted to prepare the solid nanodispersions of chlorantraniliprole with poor solubility and high melting point. The mean particle sizes of the solid nanodispersions with different pesticide contents were all less than 75 nm, even when the content was up to 91.5%. For the 2.5% chlorantraniliprole solid nanodispersion with the mean particle size of 29 nm, the suspensibility and wetting time in water were 97.32% and 13 s, respectively. The re-dispersibility and wettability were superior to those of conventional water dispersible granules. The retention on the rice leaf of 18.7 mg/cm(2) was 1.5 and 3 times that of commercial aqueous suspension concentrate and pure water. The bioassay result to diamondback moths indicated that the toxicity of the solid nanodispersion was 3.3 and 2.8 times that of technical and aqueous suspension concentrate, respectively. Moreover, the solid nanodispersion has the advantages of total avoidance of organic solvents, significant reduction of surfactants and feasibility of obtaining high concentration nanoformulations. The solid nanodispersion is an attractive candidate for improving pesticide solubility and efficacy, and its application in crop production will reduce both residues in food and environmental pollution of pesticide.
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spelling pubmed-49769332016-08-25 Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization Cui, Bo Feng, Lei Wang, Chunxin Yang, Dongsheng Yu, Manli Zeng, Zhanghua Wang, Yan Sun, Changjiao Zhao, Xiang Cui, Haixin PLoS One Research Article Poorly water-soluble compounds are difficult to develop as pesticide products and face great challenges in water-based and environmentally friendly formulation development. In this study, high pressure homogenization combined with lyophilization was adopted to prepare the solid nanodispersions of chlorantraniliprole with poor solubility and high melting point. The mean particle sizes of the solid nanodispersions with different pesticide contents were all less than 75 nm, even when the content was up to 91.5%. For the 2.5% chlorantraniliprole solid nanodispersion with the mean particle size of 29 nm, the suspensibility and wetting time in water were 97.32% and 13 s, respectively. The re-dispersibility and wettability were superior to those of conventional water dispersible granules. The retention on the rice leaf of 18.7 mg/cm(2) was 1.5 and 3 times that of commercial aqueous suspension concentrate and pure water. The bioassay result to diamondback moths indicated that the toxicity of the solid nanodispersion was 3.3 and 2.8 times that of technical and aqueous suspension concentrate, respectively. Moreover, the solid nanodispersion has the advantages of total avoidance of organic solvents, significant reduction of surfactants and feasibility of obtaining high concentration nanoformulations. The solid nanodispersion is an attractive candidate for improving pesticide solubility and efficacy, and its application in crop production will reduce both residues in food and environmental pollution of pesticide. Public Library of Science 2016-08-08 /pmc/articles/PMC4976933/ /pubmed/27500828 http://dx.doi.org/10.1371/journal.pone.0160877 Text en © 2016 Cui et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Cui, Bo
Feng, Lei
Wang, Chunxin
Yang, Dongsheng
Yu, Manli
Zeng, Zhanghua
Wang, Yan
Sun, Changjiao
Zhao, Xiang
Cui, Haixin
Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization
title Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization
title_full Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization
title_fullStr Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization
title_full_unstemmed Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization
title_short Stability and Biological Activity Evaluation of Chlorantraniliprole Solid Nanodispersions Prepared by High Pressure Homogenization
title_sort stability and biological activity evaluation of chlorantraniliprole solid nanodispersions prepared by high pressure homogenization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4976933/
https://www.ncbi.nlm.nih.gov/pubmed/27500828
http://dx.doi.org/10.1371/journal.pone.0160877
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