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采用高分辨电喷雾电离质谱和串联质谱法对双酚 E 和双酚 S 的光诱导副产物进行结构解析。

Structural elucidation of bisphenol E and bisphenol S photoinduced by-products by high-resolution electrospray ionisation mass spectrometry and tandem mass spectrometry.

机构信息

Chemistry Dept., Università degli Studi di Torino, Via Pietro Giuria 5, Turin, 10125, Italy.

Molecular Biotechnology and Health Sciences Dept., Università degli Studi di Torino, Via Pietro Giuria 5, Turin, 10125, Italy.

出版信息

Rapid Commun Mass Spectrom. 2021 Apr 15;35(7):e9039. doi: 10.1002/rcm.9039.

Abstract

RATIONALE

Bisphenol E (BPE) and bisphenol S (BPS) have recently replaced bisphenol A as monomers for producing polycarbonates. However, BPE and BPS can pose hazards as they are known to be endocrine disruptors. Despite the huge increase in their use, there is a lack of data regarding the toxicity and effects of BPE and BPS.

METHODS

We investigated the photoinduced transformation of BPE and BPS when subjected to sun-simulated radiation and using TiO as a photocatalyst. Analyses of BPE, BPS and their by-products were performed by high-performance liquid chromatography/high-resolution mass spectrometry (HPLC/HRMS) using an orbitrap mass analyzer in negative electrospray ionisation (ESI) mode. The chromatographic separations were achieved by employing a C18 reversed-phase column, and the transformation products (TPs) were elucidated structurally using HRMS and multistage MS experiments performed in collision-induced dissociation (CID) mode.

RESULTS

The transformation of bisphenol S involved the formation of twelve by-products, while ten TPs were detected following BPE degradation. For bisphenol S, the cleavage of the molecule is a very important transformation route, together with the hydroxylation of the substrate to provide mono- and poly-hydroxylated TPs. For bisphenol E, the two main routes were hydroxylation and ring opening. Acute toxicity for BPS, BPE and their TPs was assessed using the Vibrio fischeri assay, highlighting that their initial transformation involved the formation of TPs that were more toxic than the parent compound.

CONCLUSIONS

The HPLC/HRMS method developed was useful for characterising and identifying newly formed TPs from bisphenol E and bisphenol S. This study aimed to examine the structure of twenty by-products identified during TiO -mediated photolysis and to evaluate acute toxicity over time.

摘要

原理

双酚 E(BPE)和双酚 S(BPS)最近已取代双酚 A 作为生产聚碳酸酯的单体。然而,由于它们是已知的内分泌干扰物,因此 BPE 和 BPS 可能构成危害。尽管它们的使用量大大增加,但关于 BPE 和 BPS 的毒性和影响的数据仍然缺乏。

方法

我们研究了 BPE 和 BPS 在模拟阳光辐射和使用 TiO 作为光催化剂时的光诱导转化。通过采用轨道阱质谱仪在负离子电喷雾模式下进行高效液相色谱/高分辨率质谱(HPLC/HRMS)分析,对 BPE、BPS 及其副产物进行分析。采用 C18 反相柱实现色谱分离,并通过在碰撞诱导解离(CID)模式下进行 HRMS 和多级 MS 实验阐明转化产物(TP)的结构。

结果

双酚 S 的转化涉及到 12 种副产物的形成,而 BPE 降解后则检测到 10 种 TP。对于双酚 S,分子的断裂是一种非常重要的转化途径,同时还伴随着底物的羟化,提供单羟化和多羟化的 TP。对于双酚 E,两个主要途径是羟化和开环。采用发光菌 Vibrio fischeri 测定法评估了 BPS、BPE 及其 TP 的急性毒性,突出表明它们的初始转化涉及到形成比母体化合物更具毒性的 TP。

结论

所开发的 HPLC/HRMS 方法对于表征和鉴定双酚 E 和双酚 S 新形成的 TP 非常有用。本研究旨在检查 20 种在 TiO 介导的光解过程中鉴定的副产物的结构,并随时间评估急性毒性。

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