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In-vitro oxidation of bisphenol A: Is bisphenol A catechol a suitable biomarker for human exposure to bisphenol A?

机译:双酚A的体外氧化:双酚A儿茶酚是否是人类暴露于双酚A的合适生物标记?

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The extensive use of bisphenol A (BPA) in the manufacture of consumer products results in widespread human exposure to the chemical. In the body, BPA undergoes first-pass metabolism to form BPA glucuronide, considered to be a major BPA byproduct. Concentrations of total (free plus conjugated) urinary species of BPA are used to assess human exposure to BPA. However, because BPA can be present in numerous consumer and household products, potential contamination with parent BPA during collection and handling may pose a challenge when measuring BPA in such biological samples as blood or urine. In this study we investigated the in-vitro phase I metabolism of BPA in rat and human liver microsomes by using on-line solid-phase extraction–high-performance liquid chromatography–tandem mass spectrometry to identify phase I metabolites (e.g., BPA oxidation products) that could be used as potential alternative biomarkers of BPA exposure. We unambiguously identified 5-hydroxy BPA (BPA catechol) as an in-vitro oxidative metabolite of BPA, but human microsomes oxidized only about 10% of BPA to BPA catechol. We evaluated the usefulness of BPA catechol as a potential biomarker of human exposure to BPA by measuring total concentrations of BPA catechol and BPA in 20 urine samples. We detected BPA catechol at much lower concentrations and frequency than those of BPA. Furthermore, we found that free BPA catechol was rather unstable in urine, which highlights the importance of sampling techniques to adequate interpretation of biomonitoring data. Together, these findings suggest that BPA catechol may not be a suitable biomarker of environmental exposure to BPA, but could be used to confirm BPA exposure in special populations or in situations when urine specimens were potentially contaminated with BPA.
机译:双酚A(BPA)在消费品生产中的广泛使用导致人类广泛接触该化学品。在体内,BPA经历首过代谢,形成BPA葡萄糖醛酸,这被认为是BPA的主要副产物。 BPA总(游离和结合)尿种的浓度用于评估人类接触BPA的情况。但是,由于BPA可能存在于许多消费品和家用产品中,因此在测量血液或尿液等生物样品中的BPA时,母体BPA在收集和处理过程中可能会受到污染。在这项研究中,我们通过在线固相萃取-高效液相色谱-串联质谱法鉴定I期代谢物(例如,BPA氧化产物),研究了大鼠和人肝微粒体中BPA的体外I期代谢),可以用作BPA暴露的潜在替代生物标记。我们明确确定5-羟基BPA(BPA儿茶酚)是BPA的体外氧化代谢产物,但人微粒体仅将约10%的BPA氧化为BPA儿茶酚。我们通过测量20个尿液样本中BPA儿茶酚和BPA的总浓度,评估了BPA儿茶酚作为人类接触BPA的潜在生物标志物的有用性。我们检测到的BPA儿茶酚的浓度和频率远低于BPA。此外,我们发现游离的BPA邻苯二酚在尿液中相当不稳定,这突显了采样技术对于充分解释生物监测数据的重要性。总之,这些发现表明,BPA邻苯二酚可能不是环境暴露于BPA的合适生物标志物,但可用于确认特殊人群或尿液样本可能被BPA污染的情况下的BPA暴露。

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