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Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives

Efficient detection methods must be developed for 1,4-dioxane due to its suspected status as a human carcinogen, which is highly mobile in food and environmental resources. In this regard, this experiment has been conducted to develop reliable and selective detection and measurement methods by using...

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Autores principales: Kim, Myung-Chan, Park, Su-Yeon, Kwon, Seo-Yeon, Kim, Yu-Kyeong, Kim, Yeong-In, Seo, Yong-Soo, Cho, Sueng-Mok, Shin, Eui-Cheol, Mok, Jin Hong, Lee, Yang-Bong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10486431/
https://www.ncbi.nlm.nih.gov/pubmed/37685230
http://dx.doi.org/10.3390/foods12173299
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author Kim, Myung-Chan
Park, Su-Yeon
Kwon, Seo-Yeon
Kim, Yu-Kyeong
Kim, Yeong-In
Seo, Yong-Soo
Cho, Sueng-Mok
Shin, Eui-Cheol
Mok, Jin Hong
Lee, Yang-Bong
author_facet Kim, Myung-Chan
Park, Su-Yeon
Kwon, Seo-Yeon
Kim, Yu-Kyeong
Kim, Yeong-In
Seo, Yong-Soo
Cho, Sueng-Mok
Shin, Eui-Cheol
Mok, Jin Hong
Lee, Yang-Bong
author_sort Kim, Myung-Chan
collection PubMed
description Efficient detection methods must be developed for 1,4-dioxane due to its suspected status as a human carcinogen, which is highly mobile in food and environmental resources. In this regard, this experiment has been conducted to develop reliable and selective detection and measurement methods by using static headspace (SH) isolation, followed by gas chromatography–mass spectrometry (GC-MS). A new method was developed for determining the spiked 1,4-dioxane contents in a polyethylene glycol 600 (PEG 600). The optimal condition for SH-GC-MS was discussed. The representative ions of 1,4-dioxane and 1,4-dioxane-d8 in the SIM mode of MS are 88 and 96, respectively, and the peaks of the SIM mode were separated and confirmed. The linear range for the method covers 0.25 to 100 mg/L with a coefficient of determination (R(2))  ≥  0.999. The method applicability was demonstrated by spike recovery across a variety of food additives (i.e., chlorine bitartrate, choline chloride, polysorbate 20 and 60, and PEG 1000). All spike recovery from the tested samples was in the range of 89.50–102.68% with a precision of 0.44–11.22%. These findings suggest a new analytical method for food safety inspection, and could be applicable for ensuring the safety of foods and environmental and public health on a broad scale.
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spelling pubmed-104864312023-09-09 Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives Kim, Myung-Chan Park, Su-Yeon Kwon, Seo-Yeon Kim, Yu-Kyeong Kim, Yeong-In Seo, Yong-Soo Cho, Sueng-Mok Shin, Eui-Cheol Mok, Jin Hong Lee, Yang-Bong Foods Article Efficient detection methods must be developed for 1,4-dioxane due to its suspected status as a human carcinogen, which is highly mobile in food and environmental resources. In this regard, this experiment has been conducted to develop reliable and selective detection and measurement methods by using static headspace (SH) isolation, followed by gas chromatography–mass spectrometry (GC-MS). A new method was developed for determining the spiked 1,4-dioxane contents in a polyethylene glycol 600 (PEG 600). The optimal condition for SH-GC-MS was discussed. The representative ions of 1,4-dioxane and 1,4-dioxane-d8 in the SIM mode of MS are 88 and 96, respectively, and the peaks of the SIM mode were separated and confirmed. The linear range for the method covers 0.25 to 100 mg/L with a coefficient of determination (R(2))  ≥  0.999. The method applicability was demonstrated by spike recovery across a variety of food additives (i.e., chlorine bitartrate, choline chloride, polysorbate 20 and 60, and PEG 1000). All spike recovery from the tested samples was in the range of 89.50–102.68% with a precision of 0.44–11.22%. These findings suggest a new analytical method for food safety inspection, and could be applicable for ensuring the safety of foods and environmental and public health on a broad scale. MDPI 2023-09-02 /pmc/articles/PMC10486431/ /pubmed/37685230 http://dx.doi.org/10.3390/foods12173299 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
Kim, Myung-Chan
Park, Su-Yeon
Kwon, Seo-Yeon
Kim, Yu-Kyeong
Kim, Yeong-In
Seo, Yong-Soo
Cho, Sueng-Mok
Shin, Eui-Cheol
Mok, Jin Hong
Lee, Yang-Bong
Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives
title Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives
title_full Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives
title_fullStr Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives
title_full_unstemmed Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives
title_short Application of Static Headspace GC-MS Method for Selective 1,4-Dioxane Detection in Food Additives
title_sort application of static headspace gc-ms method for selective 1,4-dioxane detection in food additives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10486431/
https://www.ncbi.nlm.nih.gov/pubmed/37685230
http://dx.doi.org/10.3390/foods12173299
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