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Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions

Standard solutions of mycotoxins prepared in RP HPLC solvents from neat standards are usually used for analytical method development. Multi-mycotoxin HPLC-MS/MS methods necessitate stability estimation for the wide spectrum of fungal metabolites. The stability of individual diluted stock standard so...

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Autores principales: Kiseleva, Mariya, Chalyy, Zakhar, Sedova, Irina, Aksenov, Ilya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7076964/
https://www.ncbi.nlm.nih.gov/pubmed/32019119
http://dx.doi.org/10.3390/toxins12020094
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author Kiseleva, Mariya
Chalyy, Zakhar
Sedova, Irina
Aksenov, Ilya
author_facet Kiseleva, Mariya
Chalyy, Zakhar
Sedova, Irina
Aksenov, Ilya
author_sort Kiseleva, Mariya
collection PubMed
description Standard solutions of mycotoxins prepared in RP HPLC solvents from neat standards are usually used for analytical method development. Multi-mycotoxin HPLC-MS/MS methods necessitate stability estimation for the wide spectrum of fungal metabolites. The stability of individual diluted stock standard solutions of mycotoxins in RP-HPLC solvents and multi-analyte HPLC-MS/MS calibrants was evaluated under standard storage and analysis conditions. Individual stock standard solutions of aflatoxins, sterigmatocystin, A- and B-trichothecenes, zearalenone and its analogues, ochratoxin A, fumonisins, Alternaria toxins, enniatins and beauvericin, moniliformin, citrinin, mycophenolic, cyclopiazonic acids and citreoviridin were prepared in RP-HPLC solvents and stored at −18 °C for 14 months. UV-spectroscopy was utilized to monitor the stability of analytes, excluding fumonisins. The gradual degradation of α-, β-zearalenol and α-, β-zearalanol in acetonitrile was detected. Aflatoxins and sterigmatocystin, zearalenone, Alternaria toxins, enniatins and beauvericin, citrinin, mycophenolic, cyclopiazonic acids and citreoviridin can be referred to as stable. The concentration of the majority of trichothecenes should be monitored. Diluted multi-mycotoxin standard in water/methanol (50/50 v/v) solutions acidified with 0.1% formic acid proved to be stable in silanized glass at 23 °C exposed to light for at least 75 h (CV ≤ 10%). An unexpected manifestation of MS/MS signal suppression/enhancement was discovered in the course of multi-mycotoxin standard solution stability evaluation.
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spelling pubmed-70769642020-03-20 Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions Kiseleva, Mariya Chalyy, Zakhar Sedova, Irina Aksenov, Ilya Toxins (Basel) Article Standard solutions of mycotoxins prepared in RP HPLC solvents from neat standards are usually used for analytical method development. Multi-mycotoxin HPLC-MS/MS methods necessitate stability estimation for the wide spectrum of fungal metabolites. The stability of individual diluted stock standard solutions of mycotoxins in RP-HPLC solvents and multi-analyte HPLC-MS/MS calibrants was evaluated under standard storage and analysis conditions. Individual stock standard solutions of aflatoxins, sterigmatocystin, A- and B-trichothecenes, zearalenone and its analogues, ochratoxin A, fumonisins, Alternaria toxins, enniatins and beauvericin, moniliformin, citrinin, mycophenolic, cyclopiazonic acids and citreoviridin were prepared in RP-HPLC solvents and stored at −18 °C for 14 months. UV-spectroscopy was utilized to monitor the stability of analytes, excluding fumonisins. The gradual degradation of α-, β-zearalenol and α-, β-zearalanol in acetonitrile was detected. Aflatoxins and sterigmatocystin, zearalenone, Alternaria toxins, enniatins and beauvericin, citrinin, mycophenolic, cyclopiazonic acids and citreoviridin can be referred to as stable. The concentration of the majority of trichothecenes should be monitored. Diluted multi-mycotoxin standard in water/methanol (50/50 v/v) solutions acidified with 0.1% formic acid proved to be stable in silanized glass at 23 °C exposed to light for at least 75 h (CV ≤ 10%). An unexpected manifestation of MS/MS signal suppression/enhancement was discovered in the course of multi-mycotoxin standard solution stability evaluation. MDPI 2020-01-30 /pmc/articles/PMC7076964/ /pubmed/32019119 http://dx.doi.org/10.3390/toxins12020094 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
Kiseleva, Mariya
Chalyy, Zakhar
Sedova, Irina
Aksenov, Ilya
Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions
title Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions
title_full Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions
title_fullStr Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions
title_full_unstemmed Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions
title_short Stability of Mycotoxins in Individual Stock and Multi-Analyte Standard Solutions
title_sort stability of mycotoxins in individual stock and multi-analyte standard solutions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7076964/
https://www.ncbi.nlm.nih.gov/pubmed/32019119
http://dx.doi.org/10.3390/toxins12020094
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