Cargando…

Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography

The chiral separation of etoxazole enantiomers on Lux Cellulose-1, Lux Cellulose-3, Chiralpak IC, and Chiralpak AD chiral columns was carefully investigated by normal-phase high performance liquid chromatography and reverse-phase high performance liquid chromatography (HPLC). Hexane/isopropanol, hex...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Ping, He, Yuhan, Wang, Sheng, Shi, Dongmei, Xu, Yangyang, Yang, Furong, Wang, Jianhao, He, Lin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397032/
https://www.ncbi.nlm.nih.gov/pubmed/32659902
http://dx.doi.org/10.3390/molecules25143134
_version_ 1783565692651438080
author Zhang, Ping
He, Yuhan
Wang, Sheng
Shi, Dongmei
Xu, Yangyang
Yang, Furong
Wang, Jianhao
He, Lin
author_facet Zhang, Ping
He, Yuhan
Wang, Sheng
Shi, Dongmei
Xu, Yangyang
Yang, Furong
Wang, Jianhao
He, Lin
author_sort Zhang, Ping
collection PubMed
description The chiral separation of etoxazole enantiomers on Lux Cellulose-1, Lux Cellulose-3, Chiralpak IC, and Chiralpak AD chiral columns was carefully investigated by normal-phase high performance liquid chromatography and reverse-phase high performance liquid chromatography (HPLC). Hexane/isopropanol, hexane/n-butanol, methanol/water, and acetonitrile/water were used as mobile phase at a flow rate of 0.8 mL/min. The effects of chiral stationary phase, mobile phase component, mobile phase ratio, and temperature on etoxazole separation were also studied. Etoxazole enantiomers were baseline separated on Lux Cellulose-1, Chiralpak IC, and Chiralpak AD chiral columns, and partially separated on Lux Cellulose-3 chiral column under normal-phase HPLC. However, the complete separation on Lux Cellulose-1, Chiralpak IC, and partial separation on Chiralpak AD were obtained under reverse-phase HPLC. Normal-phase HPLC presented better resolution for etoxazole enantiomers than reverse-phase HPLC. Thermodynamic parameters, including ΔH and ΔS, were also calculated based on column temperature changes from 10 °C to 40 °C, and the maximum resolutions (R(s)) were not always acquired at the lowest temperature. Furthermore, the optimized method was successfully applied to determine etoxazole enantiomers in cucumber, cabbage, tomato, and soil. The results of chiral separation efficiency of etoxazole enantiomers under normal-phase and reverse-phase HPLC were compared, and contribute to the comprehensive environmental risk assessment of etoxazole at the enantiomer level.
format Online
Article
Text
id pubmed-7397032
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-73970322020-08-05 Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography Zhang, Ping He, Yuhan Wang, Sheng Shi, Dongmei Xu, Yangyang Yang, Furong Wang, Jianhao He, Lin Molecules Article The chiral separation of etoxazole enantiomers on Lux Cellulose-1, Lux Cellulose-3, Chiralpak IC, and Chiralpak AD chiral columns was carefully investigated by normal-phase high performance liquid chromatography and reverse-phase high performance liquid chromatography (HPLC). Hexane/isopropanol, hexane/n-butanol, methanol/water, and acetonitrile/water were used as mobile phase at a flow rate of 0.8 mL/min. The effects of chiral stationary phase, mobile phase component, mobile phase ratio, and temperature on etoxazole separation were also studied. Etoxazole enantiomers were baseline separated on Lux Cellulose-1, Chiralpak IC, and Chiralpak AD chiral columns, and partially separated on Lux Cellulose-3 chiral column under normal-phase HPLC. However, the complete separation on Lux Cellulose-1, Chiralpak IC, and partial separation on Chiralpak AD were obtained under reverse-phase HPLC. Normal-phase HPLC presented better resolution for etoxazole enantiomers than reverse-phase HPLC. Thermodynamic parameters, including ΔH and ΔS, were also calculated based on column temperature changes from 10 °C to 40 °C, and the maximum resolutions (R(s)) were not always acquired at the lowest temperature. Furthermore, the optimized method was successfully applied to determine etoxazole enantiomers in cucumber, cabbage, tomato, and soil. The results of chiral separation efficiency of etoxazole enantiomers under normal-phase and reverse-phase HPLC were compared, and contribute to the comprehensive environmental risk assessment of etoxazole at the enantiomer level. MDPI 2020-07-09 /pmc/articles/PMC7397032/ /pubmed/32659902 http://dx.doi.org/10.3390/molecules25143134 Text en © 2020 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
Zhang, Ping
He, Yuhan
Wang, Sheng
Shi, Dongmei
Xu, Yangyang
Yang, Furong
Wang, Jianhao
He, Lin
Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography
title Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography
title_full Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography
title_fullStr Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography
title_full_unstemmed Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography
title_short Chiral Separation and Determination of Etoxazole Enantiomers in Vegetables by Normal-Phase and Reverse-Phase High Performance Liquid Chromatography
title_sort chiral separation and determination of etoxazole enantiomers in vegetables by normal-phase and reverse-phase high performance liquid chromatography
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7397032/
https://www.ncbi.nlm.nih.gov/pubmed/32659902
http://dx.doi.org/10.3390/molecules25143134
work_keys_str_mv AT zhangping chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT heyuhan chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT wangsheng chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT shidongmei chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT xuyangyang chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT yangfurong chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT wangjianhao chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography
AT helin chiralseparationanddeterminationofetoxazoleenantiomersinvegetablesbynormalphaseandreversephasehighperformanceliquidchromatography