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Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention

Poor utilization efficiency of conventional pesticide formulation has resulted in overuse, which could increase costs, toxicity to other non-target organisms, concerns about human health and safety, groundwater contamination, causing ecosystem destruction and food pollution. The folia-adhesive formu...

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Autores principales: Yu, Manli, Sun, Changjiao, Xue, Yumiao, Liu, Chang, Qiu, Dewen, Cui, Bo, Zhang, Yan, Cui, Haixin, Zeng, Zhanghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9070571/
https://www.ncbi.nlm.nih.gov/pubmed/35528583
http://dx.doi.org/10.1039/c9ra05843e
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author Yu, Manli
Sun, Changjiao
Xue, Yumiao
Liu, Chang
Qiu, Dewen
Cui, Bo
Zhang, Yan
Cui, Haixin
Zeng, Zhanghua
author_facet Yu, Manli
Sun, Changjiao
Xue, Yumiao
Liu, Chang
Qiu, Dewen
Cui, Bo
Zhang, Yan
Cui, Haixin
Zeng, Zhanghua
author_sort Yu, Manli
collection PubMed
description Poor utilization efficiency of conventional pesticide formulation has resulted in overuse, which could increase costs, toxicity to other non-target organisms, concerns about human health and safety, groundwater contamination, causing ecosystem destruction and food pollution. The folia-adhesive formulation is supposed to enhance foliar retention time and utilization efficiency. According to the microstructure of the foliage, the nanopesticides surfaces were modified by affinity groups to improve folia adhesion and decrease the loss from crop foliage. In this study, tannic acid, a bioadhesive natural molecule, has been applied to develop abamectin nanopesticide (Abam-PLA-Tannin-NS) and azoxystrobin nanopesticide (Azox-PLA-Tannin-NS) with strong adhesion to foliage by chemical modification. Abam-PLA-Tannin-NS and Azox-PLA-Tannin-NS presented better photostability and continuous release behavior. The retention rates of Abam-PLA-Tannin-NS and Azox-PLA-Tannin-NS on the foliage was remarkably enhanced by more than 50%, compared with unmodified nanopesticides. Resultantly, the indoor toxicity of Abam-PLA-Tannin-NS and antifungal activity of Azox-PLA-Tannin-NS were enhanced. The interaction force between tannic acid coating nanoparticles and foliage was mainly from hydrogen bonding. Our findings could be beneficial to develop novel leaf-adhesive nanopesticides with high retention time and bioavailability.
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spelling pubmed-90705712022-05-05 Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention Yu, Manli Sun, Changjiao Xue, Yumiao Liu, Chang Qiu, Dewen Cui, Bo Zhang, Yan Cui, Haixin Zeng, Zhanghua RSC Adv Chemistry Poor utilization efficiency of conventional pesticide formulation has resulted in overuse, which could increase costs, toxicity to other non-target organisms, concerns about human health and safety, groundwater contamination, causing ecosystem destruction and food pollution. The folia-adhesive formulation is supposed to enhance foliar retention time and utilization efficiency. According to the microstructure of the foliage, the nanopesticides surfaces were modified by affinity groups to improve folia adhesion and decrease the loss from crop foliage. In this study, tannic acid, a bioadhesive natural molecule, has been applied to develop abamectin nanopesticide (Abam-PLA-Tannin-NS) and azoxystrobin nanopesticide (Azox-PLA-Tannin-NS) with strong adhesion to foliage by chemical modification. Abam-PLA-Tannin-NS and Azox-PLA-Tannin-NS presented better photostability and continuous release behavior. The retention rates of Abam-PLA-Tannin-NS and Azox-PLA-Tannin-NS on the foliage was remarkably enhanced by more than 50%, compared with unmodified nanopesticides. Resultantly, the indoor toxicity of Abam-PLA-Tannin-NS and antifungal activity of Azox-PLA-Tannin-NS were enhanced. The interaction force between tannic acid coating nanoparticles and foliage was mainly from hydrogen bonding. Our findings could be beneficial to develop novel leaf-adhesive nanopesticides with high retention time and bioavailability. The Royal Society of Chemistry 2019-08-28 /pmc/articles/PMC9070571/ /pubmed/35528583 http://dx.doi.org/10.1039/c9ra05843e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yu, Manli
Sun, Changjiao
Xue, Yumiao
Liu, Chang
Qiu, Dewen
Cui, Bo
Zhang, Yan
Cui, Haixin
Zeng, Zhanghua
Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
title Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
title_full Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
title_fullStr Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
title_full_unstemmed Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
title_short Tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
title_sort tannic acid-based nanopesticides coating with highly improved foliage adhesion to enhance foliar retention
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9070571/
https://www.ncbi.nlm.nih.gov/pubmed/35528583
http://dx.doi.org/10.1039/c9ra05843e
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