Literature DB >> 25048943

Urinary levels of bisphenol analogues in residents living near a manufacturing plant in south China.

Yunjia Yang1, Jian Guan2, Jie Yin1, Bing Shao3, Hong Li1.   

Abstract

The use of bisphenol A (BPA) has been restricted in many countries because of its potential health effects. As a result of these restrictions, a group of bisphenol analogues that are structurally similar to BPA have been developed as the alternatives for industrial applications. However, latest researches indicated that these chemicals have similar endocrine-disrupting effects as BPA in humans. Moreover, only a limited number of studies have attempted to monitor the exposure level in humans of other bisphenol analogues. In the present study, the concentrations of seven bisphenols, including bisphenol S (BPS), bisphenol F (BPF), bisphenol B (BPB), BPA, bisphenol AF (BPAF), tetrachlorobisphenol A (TCBPA) and tetrabromobisphenol A (TBBPA), in human urine samples were measured by liquid chromatography coupled to mass spectrometry (LC-MS/MS) following the enzymatic hydrolysis of glucuronidase/arylsulfatase and liquid-liquid extraction (LLE). Under the optimised conditions, high recoveries (81.6-116.8%) were obtained for all the analytes, and the relative standard deviations (RSD, %) were less than 16.4% (n=6). The isotopic internal standard calibration curves for each of the target compounds exhibited excellent linearity (r(2)>0.99) and the limit of quantification (LOQ) for the analytes in urine ranged from 0.024 to 0.310 ng mL(-1). The method was applied to investigate the urinary levels of these seven bisphenols in a cohort of residents living near a BPAF manufacturing plant in south China. BPS, BPF, BPA and BPAF were detected in urine samples at concentrations ranging from <LOQ to a few ng mL(-1), whereas BPB, TCBPA and TBBPA were not detected. This is the first study to report the occurrence of BPF and BPAF in human urine samples. The availability of rapid and simple analytical methods may be highly useful for the future biomonitoring of these compounds.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Biomonitoring; Bisphenol analogues; Liquid chromatography; Mass spectrometry; Urine

Mesh:

Substances:

Year:  2014        PMID: 25048943     DOI: 10.1016/j.chemosphere.2014.05.004

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  20 in total

Review 1.  Neuroendocrine disruption in animal models due to exposure to bisphenol A analogues.

Authors:  Cheryl S Rosenfeld
Journal:  Front Neuroendocrinol       Date:  2017-08-08       Impact factor: 8.606

2.  Biochemical activity of soil contaminated with BPS, bioaugmented with a mould fungi consortium and a bacteria consortium.

Authors:  Magdalena Zaborowska; Jadwiga Wyszkowska; Jan Kucharski
Journal:  Environ Sci Pollut Res Int       Date:  2019-11-19       Impact factor: 4.223

3.  Maternal and paternal preconception exposure to bisphenols and size at birth.

Authors:  Vicente Mustieles; Paige L Williams; Mariana F Fernandez; Lidia Mínguez-Alarcón; Jennifer B Ford; Antonia M Calafat; Russ Hauser; Carmen Messerlian
Journal:  Hum Reprod       Date:  2018-08-01       Impact factor: 6.918

4.  Bisphenol A and its analogues disrupt centrosome cycle and microtubule dynamics in prostate cancer.

Authors:  Shuk-Mei Ho; Rahul Rao; Sarah To; Emma Schoch; Pheruza Tarapore
Journal:  Endocr Relat Cancer       Date:  2016-12-20       Impact factor: 5.678

5.  Effects of BPF on steroid hormone homeostasis and gene expression in the hypothalamic-pituitary-gonadal axis of zebrafish.

Authors:  Qian Yang; Xianhai Yang; Jining Liu; Wenjuan Ren; Yingwen Chen; Shubao Shen
Journal:  Environ Sci Pollut Res Int       Date:  2017-07-25       Impact factor: 4.223

6.  Improved method for the determination of endocrine-disrupting chemicals in urine of school-age children using microliquid-liquid extraction and UHPLC-MS/MS.

Authors:  Inmaculada Moscoso-Ruiz; Yolanda Gálvez-Ontiveros; María Giles-Mancilla; María Del Carmen Gómez-Regalado; Ana Rivas; Alberto Zafra-Gómez
Journal:  Anal Bioanal Chem       Date:  2022-07-26       Impact factor: 4.478

7.  Effects of low-dose bisphenol AF on mammal testis development via complex mechanisms: alterations are detectable in both infancy and adulthood.

Authors:  Yuanyuan Li; Yiming Xiong; Lin Lv; Xinghong Li; Zhanfen Qin
Journal:  Arch Toxicol       Date:  2022-09-13       Impact factor: 6.168

8.  Estimation of tetrabromobisphenol A (TBBPA) percutaneous uptake in humans using the parallelogram method.

Authors:  Gabriel A Knudsen; Michael F Hughes; Katelyn L McIntosh; J Michael Sanders; Linda S Birnbaum
Journal:  Toxicol Appl Pharmacol       Date:  2015-09-24       Impact factor: 4.219

9.  Urinary concentrations of phthalate metabolites, bisphenols and personal care product chemical biomarkers in pregnant women in Israel.

Authors:  Ronit Machtinger; Tamar Berman; Michal Adir; Abdallah Mansur; Andrea A Baccarelli; Catherine Racowsky; Antonia M Calafat; Russ Hauser; Ravit Nahum
Journal:  Environ Int       Date:  2018-05-11       Impact factor: 9.621

10.  Application of a novel mass spectrometric (MS) method to examine exposure to Bisphenol-A and common substitutes in a maternal fetal cohort.

Authors:  Erin Speiser Ihde; Stacy Zamudio; Ji Meng Loh; Yalin Zhu; John Woytanowski; Lawrence Rosen; Min Liu; Brian Buckley
Journal:  Hum Ecol Risk Assess       Date:  2017-10-30       Impact factor: 5.190

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