Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure

A variety of mycotoxins from different sources frequently contaminate farm products, presenting a potential toxicological concern for animals and human. Mycotoxin exposure has been the focus of attention for governments around the world. To date, biomarkers are used to monitor mycotoxin exposure and...

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Main Authors: Zhezhe Liu, Xiaoxue Zhao, Libiao Wu, Shuang Zhou, Zhiyong Gong, Yunfeng Zhao, Yongning Wu
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Toxins
Subjects:
Online Access:https://www.mdpi.com/2072-6651/12/3/193
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spelling doaj-3fbc22e5706947f6a8a90fe965b664022020-11-25T02:10:43ZengMDPI AGToxins2072-66512020-03-0112319310.3390/toxins12030193toxins12030193Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin ExposureZhezhe Liu0Xiaoxue Zhao1Libiao Wu2Shuang Zhou3Zhiyong Gong4Yunfeng Zhao5Yongning Wu6School of Food Science and Engineering, Wuhan Polytechnic University, Wuhan 430023, ChinaNHC Key Laboratory of Food Safety Risk Assessment, Food Safety Research Unit (2019RU014) of Chinese Academy of Medical Science, China National Center for Food Safety Risk Assessment, Beijing 100021, ChinaSchool of Food Science and Engineering, Wuhan Polytechnic University, Wuhan 430023, ChinaNHC Key Laboratory of Food Safety Risk Assessment, Food Safety Research Unit (2019RU014) of Chinese Academy of Medical Science, China National Center for Food Safety Risk Assessment, Beijing 100021, ChinaSchool of Food Science and Engineering, Wuhan Polytechnic University, Wuhan 430023, ChinaNHC Key Laboratory of Food Safety Risk Assessment, Food Safety Research Unit (2019RU014) of Chinese Academy of Medical Science, China National Center for Food Safety Risk Assessment, Beijing 100021, ChinaNHC Key Laboratory of Food Safety Risk Assessment, Food Safety Research Unit (2019RU014) of Chinese Academy of Medical Science, China National Center for Food Safety Risk Assessment, Beijing 100021, ChinaA variety of mycotoxins from different sources frequently contaminate farm products, presenting a potential toxicological concern for animals and human. Mycotoxin exposure has been the focus of attention for governments around the world. To date, biomarkers are used to monitor mycotoxin exposure and promote new understanding of their role in chronic diseases. The goal of this research was to develop and validate a sensitive UHPLC-MS/MS method using isotopically-labeled internal standards suitable for accurate determination of 18 mycotoxin biomarkers, including fumonisins, ochratoxins, <i>Alternaria</i> and emerging <i>Fusarium</i> mycotoxins (fumonisin B<sub>1</sub>, B<sub>2</sub>, and B<sub>3</sub>, hydrolyzed fumonisin B<sub>1</sub> and B<sub>2</sub>, ochratoxin A, B, and alpha, alternariol, alternariol monomethyl ether, altenuene, tentoxin, tenuazonic acid, beauvericin, enniatin A, A<sub>1</sub>, B, and B<sub>1</sub>) in human urine. After enzymatic digestion with &#946;-glucuronidase, human urine samples were cleaned up using HLB solid phase extraction cartridges prior to instrument analysis. The multi-mycotoxin and analyte-specific method was validated in-house, providing satisfactory results. The method provided good linearity in the tested concentration range (from LOQ up to 25&#8722;500 ng/mL for different analytes), with R<sup>2</sup> from 0.997 to 0.999. The limits of quantitation varied from 0.0002 to 0.5 ng/mL for all analytes in urine. The recoveries for spiked samples were between 74.0% and 133%, with intra-day precision of 0.5%&#8722;8.7% and inter-day precision of 2.4%&#8722;13.4%. This method was applied to 60 urine samples collected from healthy volunteers in Beijing, and 10 biomarkers were found. At least one biomarker was found in all but one of the samples. The high sensitivity and accuracy of this method make it practical for human biomonitoring and mycotoxin exposure assessment.https://www.mdpi.com/2072-6651/12/3/193human biomonitoringemerging mycotoxinsmetabolitesbiomarkersurineuhplc-ms/ms
collection DOAJ
language English
format Article
sources DOAJ
author Zhezhe Liu
Xiaoxue Zhao
Libiao Wu
Shuang Zhou
Zhiyong Gong
Yunfeng Zhao
Yongning Wu
spellingShingle Zhezhe Liu
Xiaoxue Zhao
Libiao Wu
Shuang Zhou
Zhiyong Gong
Yunfeng Zhao
Yongning Wu
Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure
Toxins
human biomonitoring
emerging mycotoxins
metabolites
biomarkers
urine
uhplc-ms/ms
author_facet Zhezhe Liu
Xiaoxue Zhao
Libiao Wu
Shuang Zhou
Zhiyong Gong
Yunfeng Zhao
Yongning Wu
author_sort Zhezhe Liu
title Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure
title_short Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure
title_full Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure
title_fullStr Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure
title_full_unstemmed Development of a Sensitive and Reliable UHPLC-MS/MS Method for the Determination of Multiple Urinary Biomarkers of Mycotoxin Exposure
title_sort development of a sensitive and reliable uhplc-ms/ms method for the determination of multiple urinary biomarkers of mycotoxin exposure
publisher MDPI AG
series Toxins
issn 2072-6651
publishDate 2020-03-01
description A variety of mycotoxins from different sources frequently contaminate farm products, presenting a potential toxicological concern for animals and human. Mycotoxin exposure has been the focus of attention for governments around the world. To date, biomarkers are used to monitor mycotoxin exposure and promote new understanding of their role in chronic diseases. The goal of this research was to develop and validate a sensitive UHPLC-MS/MS method using isotopically-labeled internal standards suitable for accurate determination of 18 mycotoxin biomarkers, including fumonisins, ochratoxins, <i>Alternaria</i> and emerging <i>Fusarium</i> mycotoxins (fumonisin B<sub>1</sub>, B<sub>2</sub>, and B<sub>3</sub>, hydrolyzed fumonisin B<sub>1</sub> and B<sub>2</sub>, ochratoxin A, B, and alpha, alternariol, alternariol monomethyl ether, altenuene, tentoxin, tenuazonic acid, beauvericin, enniatin A, A<sub>1</sub>, B, and B<sub>1</sub>) in human urine. After enzymatic digestion with &#946;-glucuronidase, human urine samples were cleaned up using HLB solid phase extraction cartridges prior to instrument analysis. The multi-mycotoxin and analyte-specific method was validated in-house, providing satisfactory results. The method provided good linearity in the tested concentration range (from LOQ up to 25&#8722;500 ng/mL for different analytes), with R<sup>2</sup> from 0.997 to 0.999. The limits of quantitation varied from 0.0002 to 0.5 ng/mL for all analytes in urine. The recoveries for spiked samples were between 74.0% and 133%, with intra-day precision of 0.5%&#8722;8.7% and inter-day precision of 2.4%&#8722;13.4%. This method was applied to 60 urine samples collected from healthy volunteers in Beijing, and 10 biomarkers were found. At least one biomarker was found in all but one of the samples. The high sensitivity and accuracy of this method make it practical for human biomonitoring and mycotoxin exposure assessment.
topic human biomonitoring
emerging mycotoxins
metabolites
biomarkers
urine
uhplc-ms/ms
url https://www.mdpi.com/2072-6651/12/3/193
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