Cargando…

Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction

To analyze pesticide residues, GC coupled with quadrupole-Orbitrap MS (GC-Orbitrap-MS) has become a powerful tool because of its unique characteristics of accurate mass full-spectrum acquisition, high resolution, fast acquisition rates, and overcoming matrix interference. This paper presents an effi...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Yuanyuan, Meng, Zhijuan, Su, Chunyan, Fan, Sufang, Li, Yan, Liu, Haiye, Zhang, Xuan, Chen, Pingping, Geng, Yunyun, Li, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9217587/
https://www.ncbi.nlm.nih.gov/pubmed/35757318
http://dx.doi.org/10.1155/2022/7684432
_version_ 1784731681499906048
author Wang, Yuanyuan
Meng, Zhijuan
Su, Chunyan
Fan, Sufang
Li, Yan
Liu, Haiye
Zhang, Xuan
Chen, Pingping
Geng, Yunyun
Li, Qiang
author_facet Wang, Yuanyuan
Meng, Zhijuan
Su, Chunyan
Fan, Sufang
Li, Yan
Liu, Haiye
Zhang, Xuan
Chen, Pingping
Geng, Yunyun
Li, Qiang
author_sort Wang, Yuanyuan
collection PubMed
description To analyze pesticide residues, GC coupled with quadrupole-Orbitrap MS (GC-Orbitrap-MS) has become a powerful tool because of its unique characteristics of accurate mass full-spectrum acquisition, high resolution, fast acquisition rates, and overcoming matrix interference. This paper presents an efficiency evaluation of GC-Orbitrap-MS for identification and quantitation in the 352 pesticide residues analysis of chrysanthemum flowers in full-scan mode. A streamlined pretreatment approach using one-step extraction and dilution was used, which provided high-throughput processing and excellent recovery. The samples were extracted using acetonitrile. The extracted solution was purified by a Sin-QuEChERS Nano column to suppress the matrix in chrysanthemum flowers and determined by GC-Orbitrap-MS. The calibration curves for the 352 pesticides obtained by GC-Orbitrap-MS were linear in the range of 0.5–200 μg·kg(−1), with the correlation coefficients higher than 0.99. The limits of detection (LODs) and the limits of quantification (LOQs) for the 352 pesticide residues were 0.3–3.0 μg·kg(−1) and 1.0–10.0 μg·kg(−1), respectively. The average recoveries in chrysanthemum flower at three levels were 95.2%, 88.6%, and 95.7%, respectively, with relative standard deviations (RSDs) of 7.1%, 7.5%, and 7.2%, respectively. Lastly, the validated method and retrospective analysis was applied to a total of 200 chrysanthemum flower samples bought in local pharmacies. The proposed method can simultaneously detect multipesticide residues with a good performance in qualitative and quantitative detection.
format Online
Article
Text
id pubmed-9217587
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-92175872022-06-23 Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction Wang, Yuanyuan Meng, Zhijuan Su, Chunyan Fan, Sufang Li, Yan Liu, Haiye Zhang, Xuan Chen, Pingping Geng, Yunyun Li, Qiang J Anal Methods Chem Research Article To analyze pesticide residues, GC coupled with quadrupole-Orbitrap MS (GC-Orbitrap-MS) has become a powerful tool because of its unique characteristics of accurate mass full-spectrum acquisition, high resolution, fast acquisition rates, and overcoming matrix interference. This paper presents an efficiency evaluation of GC-Orbitrap-MS for identification and quantitation in the 352 pesticide residues analysis of chrysanthemum flowers in full-scan mode. A streamlined pretreatment approach using one-step extraction and dilution was used, which provided high-throughput processing and excellent recovery. The samples were extracted using acetonitrile. The extracted solution was purified by a Sin-QuEChERS Nano column to suppress the matrix in chrysanthemum flowers and determined by GC-Orbitrap-MS. The calibration curves for the 352 pesticides obtained by GC-Orbitrap-MS were linear in the range of 0.5–200 μg·kg(−1), with the correlation coefficients higher than 0.99. The limits of detection (LODs) and the limits of quantification (LOQs) for the 352 pesticide residues were 0.3–3.0 μg·kg(−1) and 1.0–10.0 μg·kg(−1), respectively. The average recoveries in chrysanthemum flower at three levels were 95.2%, 88.6%, and 95.7%, respectively, with relative standard deviations (RSDs) of 7.1%, 7.5%, and 7.2%, respectively. Lastly, the validated method and retrospective analysis was applied to a total of 200 chrysanthemum flower samples bought in local pharmacies. The proposed method can simultaneously detect multipesticide residues with a good performance in qualitative and quantitative detection. Hindawi 2022-06-15 /pmc/articles/PMC9217587/ /pubmed/35757318 http://dx.doi.org/10.1155/2022/7684432 Text en Copyright © 2022 Yuanyuan Wang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Yuanyuan
Meng, Zhijuan
Su, Chunyan
Fan, Sufang
Li, Yan
Liu, Haiye
Zhang, Xuan
Chen, Pingping
Geng, Yunyun
Li, Qiang
Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction
title Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction
title_full Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction
title_fullStr Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction
title_full_unstemmed Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction
title_short Rapid Screening of 352 Pesticide Residues in Chrysanthemum Flower by Gas Chromatography Coupled to Quadrupole-Orbitrap Mass Spectrometry with Sin-QuEChERS Nanocolumn Extraction
title_sort rapid screening of 352 pesticide residues in chrysanthemum flower by gas chromatography coupled to quadrupole-orbitrap mass spectrometry with sin-quechers nanocolumn extraction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9217587/
https://www.ncbi.nlm.nih.gov/pubmed/35757318
http://dx.doi.org/10.1155/2022/7684432
work_keys_str_mv AT wangyuanyuan rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT mengzhijuan rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT suchunyan rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT fansufang rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT liyan rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT liuhaiye rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT zhangxuan rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT chenpingping rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT gengyunyun rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction
AT liqiang rapidscreeningof352pesticideresiduesinchrysanthemumflowerbygaschromatographycoupledtoquadrupoleorbitrapmassspectrometrywithsinquechersnanocolumnextraction