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Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice

Kresoxim-methyl is a high-efficiency and broad-spectrum fungicide used for the control of rice fungal diseases; however, its residues after application potentially threaten human health. Investigations on the dissipation of kresoxim-methyl residue in rice field systems and dietary risk assessment of...

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Autores principales: Sun, MingNa, Yu, Lu, Tong, Zhou, Dong, Xu, Chu, Yue, Wang, Mei, Gao, TongChun, Duan, JinSheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6412633/
https://www.ncbi.nlm.nih.gov/pubmed/30769935
http://dx.doi.org/10.3390/molecules24040692
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author Sun, MingNa
Yu, Lu
Tong, Zhou
Dong, Xu
Chu, Yue
Wang, Mei
Gao, TongChun
Duan, JinSheng
author_facet Sun, MingNa
Yu, Lu
Tong, Zhou
Dong, Xu
Chu, Yue
Wang, Mei
Gao, TongChun
Duan, JinSheng
author_sort Sun, MingNa
collection PubMed
description Kresoxim-methyl is a high-efficiency and broad-spectrum fungicide used for the control of rice fungal diseases; however, its residues after application potentially threaten human health. Investigations on the dissipation of kresoxim-methyl residue in rice field systems and dietary risk assessment of kresoxim-methyl in humans are limited. The present study employed the QuEChERS-GC-MS/MS method for residue analysis of kresoxim-methyl in rice plants, brown rice, and rice husks. The samples were extracted with acetonitrile and purified by PSA, C(18) column, and GCB. The average recovery of the spiked target compounds in the three matrices was between 80.5% and 99.3%, and the RSD was between 2.1% and 7.1%. The accuracy and precision of the method is in accordance with the requirements of residue analysis methods. Dissipation dynamic testing of kresoxim-methyl in rice plants indicated a half-life within the range of 1.8–6.0 days, and a rapid dissipation rate was detected. Dietary intake risk assessment showed that the national estimated daily intake (NEDI) of kresoxim-methyl in various Chinese subpopulations was 0.022–0.054 μg/(kg bw·days), and the risk quotient (RQ) was 0.0000055–0.00014%. These findings indicate that the risk for chronic dietary intake of kresoxim-methyl in brown rice is relatively low. The present study provides information and theoretical basis for guiding the scientific use of kresoxim-methyl in rice fields and evaluating its dietary risk in brown rice.
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spelling pubmed-64126332019-04-09 Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice Sun, MingNa Yu, Lu Tong, Zhou Dong, Xu Chu, Yue Wang, Mei Gao, TongChun Duan, JinSheng Molecules Article Kresoxim-methyl is a high-efficiency and broad-spectrum fungicide used for the control of rice fungal diseases; however, its residues after application potentially threaten human health. Investigations on the dissipation of kresoxim-methyl residue in rice field systems and dietary risk assessment of kresoxim-methyl in humans are limited. The present study employed the QuEChERS-GC-MS/MS method for residue analysis of kresoxim-methyl in rice plants, brown rice, and rice husks. The samples were extracted with acetonitrile and purified by PSA, C(18) column, and GCB. The average recovery of the spiked target compounds in the three matrices was between 80.5% and 99.3%, and the RSD was between 2.1% and 7.1%. The accuracy and precision of the method is in accordance with the requirements of residue analysis methods. Dissipation dynamic testing of kresoxim-methyl in rice plants indicated a half-life within the range of 1.8–6.0 days, and a rapid dissipation rate was detected. Dietary intake risk assessment showed that the national estimated daily intake (NEDI) of kresoxim-methyl in various Chinese subpopulations was 0.022–0.054 μg/(kg bw·days), and the risk quotient (RQ) was 0.0000055–0.00014%. These findings indicate that the risk for chronic dietary intake of kresoxim-methyl in brown rice is relatively low. The present study provides information and theoretical basis for guiding the scientific use of kresoxim-methyl in rice fields and evaluating its dietary risk in brown rice. MDPI 2019-02-15 /pmc/articles/PMC6412633/ /pubmed/30769935 http://dx.doi.org/10.3390/molecules24040692 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, MingNa
Yu, Lu
Tong, Zhou
Dong, Xu
Chu, Yue
Wang, Mei
Gao, TongChun
Duan, JinSheng
Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice
title Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice
title_full Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice
title_fullStr Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice
title_full_unstemmed Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice
title_short Dissipation Dynamics and Dietary Risk Assessment of Kresoxim-Methyl Residue in Rice
title_sort dissipation dynamics and dietary risk assessment of kresoxim-methyl residue in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6412633/
https://www.ncbi.nlm.nih.gov/pubmed/30769935
http://dx.doi.org/10.3390/molecules24040692
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