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Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice

Hexaconazole (Hex) has been widely used in agricultural products, and its residues may pose a potential risk to human health. However, the metabolic behavior of Hex enantiomers in mammal organisms is still unknown, which is important for evaluating the differences in their toxicity. In this study, t...

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Autores principales: Luo, Guofei, Pang, Junxiao, Sun, Dali, Zhang, Qinghai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966998/
https://www.ncbi.nlm.nih.gov/pubmed/36851020
http://dx.doi.org/10.3390/toxics11020145
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author Luo, Guofei
Pang, Junxiao
Sun, Dali
Zhang, Qinghai
author_facet Luo, Guofei
Pang, Junxiao
Sun, Dali
Zhang, Qinghai
author_sort Luo, Guofei
collection PubMed
description Hexaconazole (Hex) has been widely used in agricultural products, and its residues may pose a potential risk to human health. However, the metabolic behavior of Hex enantiomers in mammal organisms is still unknown, which is important for evaluating the differences in their toxicity. In this study, the distribution of S-(+)- and R-(−)-Hex in mice was detected by an ultra-high performance liquid chromatography coupled with tandem mass spectrometry (UPLC–MS/MS), and the mechanism differences in the toxicokinetic behavior were analyzed by molecular docking. Good linearities, accuracies, and precisions were achieved for S-(+)- and R-(−)-Hex, with recoveries of 88.7~104.2% and RSDs less than 9.45% in nine tissues of mice. This established method was then used to detect the toxicokinetic of Hex enantiomers in mice after oral administration within 96 h. The results showed that the half-lives of S-(+)- and R-(−)-Hex were 3.07 and 3.71 h in plasma. Hex was mainly accumulated in the liver, followed by the kidneys, brain, lungs, spleen, and heart. The enantiomeric fraction (EF) values of Hex enantiomers in most of the samples were below 1, indicating that S-(+)-Hex decreased faster than its antipode. The molecular docking showed that the binding of S-(+)-Hex with P450arom was much more stable than R-(−)-Hex, which verified the fact that S-(+)-Hex was prefer to decrease in most of the tissues. The results of this study could be helpful for further evaluating the potential toxic risk of Hex enantiomers and for the development and usage of its pure monomer.
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spelling pubmed-99669982023-02-26 Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice Luo, Guofei Pang, Junxiao Sun, Dali Zhang, Qinghai Toxics Article Hexaconazole (Hex) has been widely used in agricultural products, and its residues may pose a potential risk to human health. However, the metabolic behavior of Hex enantiomers in mammal organisms is still unknown, which is important for evaluating the differences in their toxicity. In this study, the distribution of S-(+)- and R-(−)-Hex in mice was detected by an ultra-high performance liquid chromatography coupled with tandem mass spectrometry (UPLC–MS/MS), and the mechanism differences in the toxicokinetic behavior were analyzed by molecular docking. Good linearities, accuracies, and precisions were achieved for S-(+)- and R-(−)-Hex, with recoveries of 88.7~104.2% and RSDs less than 9.45% in nine tissues of mice. This established method was then used to detect the toxicokinetic of Hex enantiomers in mice after oral administration within 96 h. The results showed that the half-lives of S-(+)- and R-(−)-Hex were 3.07 and 3.71 h in plasma. Hex was mainly accumulated in the liver, followed by the kidneys, brain, lungs, spleen, and heart. The enantiomeric fraction (EF) values of Hex enantiomers in most of the samples were below 1, indicating that S-(+)-Hex decreased faster than its antipode. The molecular docking showed that the binding of S-(+)-Hex with P450arom was much more stable than R-(−)-Hex, which verified the fact that S-(+)-Hex was prefer to decrease in most of the tissues. The results of this study could be helpful for further evaluating the potential toxic risk of Hex enantiomers and for the development and usage of its pure monomer. MDPI 2023-02-02 /pmc/articles/PMC9966998/ /pubmed/36851020 http://dx.doi.org/10.3390/toxics11020145 Text en © 2023 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
Luo, Guofei
Pang, Junxiao
Sun, Dali
Zhang, Qinghai
Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice
title Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice
title_full Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice
title_fullStr Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice
title_full_unstemmed Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice
title_short Stereoselective Toxicokinetic and Distribution Study on the Hexaconazole Enantiomers in Mice
title_sort stereoselective toxicokinetic and distribution study on the hexaconazole enantiomers in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9966998/
https://www.ncbi.nlm.nih.gov/pubmed/36851020
http://dx.doi.org/10.3390/toxics11020145
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