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Risk assessment of deoxynivalenol in high-risk area of China by human biomonitoring using an improved high throughput UPLC-MS/MS method.


ABSTRACT: A risk assessment of deoxynivalenol (DON) was recently conducted for the residents in Henan province, China, where wheat as the staple food are highly consumed. A high-throughput sensitive UPLC-MS/MS method following 96-well ?Elution solid-phase extraction (SPE) were developed and validated for the determination of DON biomarkers in human urine. Isotope labelled internal standard, 13C-DON, was used for accurate quantification. Urinary samples collected from 151 healthy Chinese aged 2-78 years were processed with and without enzyme hydrolysis to determine total and free biomarkers, respectively. DON, and de-epoxy-deoxynivalenol (DOM-1) to a lesser extent, can be frequently detected in these samples both with and without enzyme hydrolysis. Free DOM-1 was detected at low level in human urine for the first time. Total DON was detected in all samples with a mean concentration at 47.6 ng mL-1. The mean and median probable daily intakes (PDI) for the whole participants, estimated to be 1.61??g/kg bw and 1.10??g/kg bw, both exceeded the PMTDI (1??g/kg bw/day), indicating a potential risk for the residents in this area, especially for children and adolescents.

SUBMITTER: Deng C 

PROVIDER: S-EPMC5832810 | biostudies-other | 2018 Mar

REPOSITORIES: biostudies-other

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Risk assessment of deoxynivalenol in high-risk area of China by human biomonitoring using an improved high throughput UPLC-MS/MS method.

Deng Chunli C   Li Chenglong C   Zhou Shuang S   Wang Xiaodan X   Xu Haibin H   Wang Dan D   Gong Yun Yun YY   Routledge Michael N MN   Zhao Yunfeng Y   Wu Yongning Y  

Scientific reports 20180301 1


A risk assessment of deoxynivalenol (DON) was recently conducted for the residents in Henan province, China, where wheat as the staple food are highly consumed. A high-throughput sensitive UPLC-MS/MS method following 96-well μElution solid-phase extraction (SPE) were developed and validated for the determination of DON biomarkers in human urine. Isotope labelled internal standard, <sup>13</sup>C-DON, was used for accurate quantification. Urinary samples collected from 151 healthy Chinese aged 2-  ...[more]

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