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一种基于磁性共价有机框架的微型搅拌棒吸附分散微萃取法,用于测定卵泡液中的双酚。

A miniaturized stir bar sorptive dispersive microextraction method for the determination of bisphenols in follicular fluid using a magnetic covalent organic framework.

机构信息

GICAPC Research Group, Department of Analytical Chemistry, University of Valencia, Burjassot, Valencia, 46100, Spain.

IVIRMA Barcelona, Barcelona, 08029, Spain; IVI Foundation IVIRMA Global, Biomedical Research Institute La Fe, Valencia, 46026, Spain.

出版信息

Anal Chim Acta. 2024 Feb 8;1289:342215. doi: 10.1016/j.aca.2024.342215. Epub 2024 Jan 4.

Abstract

BACKGROUND

Bisphenols, particularly bisphenol A (BPA), are the primary monomers used as additives in the manufacturing of many consumer products. The exposure to these compounds is related to endocrine-disrupting and reproductive effects, among others. For this reason, the development of analytical methods for their determination in biological matrixes is needed to monitor the population exposure to these compounds. Their quantification at ovarian level (i.e., follicular fluid) is interesting for the assessment of the bisphenol content to draw conclusions about infertility problems. However, the background does not meet all requirements by focusing mainly on BPA.

RESULTS

In this work, a miniaturized stir bar sorptive dispersive microextraction (mSBSDME) approach has been developed for the determination of BPA and eight analogues in follicular fluid. In the proposed method, the sample is previously cleaned-up using a zirconia-based solid-phase extraction cartridge, removing proteins and phospholipids, and then subjected to the mSBSDME for the preconcentration of the analytes. For this purpose, a magnetic covalent organic framework was used as sorbent. A Plackett-Burman design was applied to select the significant variables affecting the mSBSDME. Afterwards, the only significant variable (i.e., sorbent amount) was optimized. Under the optimized conditions, the proposed method was properly validated, and satisfactory analytical parameters in terms of linearity (up to 50 ng mL), enrichment factors (8.5-14.3), limits of detection in the low ng mL range, and precision (relative standard deviations below 11.5 %) were obtained. Finally, the method was successfully applied to five samples, detecting BPA and other two analogues.

SIGNIFICANCE

This method expands the potential applicability of the mSBSDME to other low-availability complex matrixes, which would otherwise be difficult to analyze. Moreover, it offers a valuable tool for monitoring the female population's exposure to bisphenols with the final aim of evaluating if infertility problems of women might be associated to the exposure to these highly endocrine disrupting compounds.

摘要

背景

双酚类物质,尤其是双酚 A(BPA),是许多消费品制造中用作添加剂的主要单体。这些化合物的暴露与内分泌干扰和生殖等影响有关。出于这个原因,需要开发分析方法来测定生物基质中的这些化合物,以监测人群对这些化合物的暴露情况。在卵巢水平(即卵泡液)对其进行定量分析对于评估双酚含量以得出关于不孕症问题的结论很有意义。然而,该背景主要集中在 BPA 上,没有满足所有要求。

结果

本工作建立了一种用于测定卵泡液中 BPA 和八种类似物的微型搅拌棒吸附分散微萃取(mSBSDME)方法。在该方法中,样品首先使用基于氧化锆的固相萃取柱进行净化,去除蛋白质和磷脂,然后进行 mSBSDME 以对分析物进行预浓缩。为此,使用磁性共价有机骨架作为吸附剂。采用 Plackett-Burman 设计选择影响 mSBSDME 的显著变量。然后,优化了唯一的显著变量(即吸附剂用量)。在优化条件下,对所提出的方法进行了适当的验证,并获得了令人满意的分析参数,包括线性范围(高达 50 ng mL)、富集因子(8.5-14.3)、低 ng mL 范围内的检出限和精密度(相对标准偏差低于 11.5%)。最后,该方法成功应用于五个样品,检测到 BPA 和另外两种类似物。

意义

该方法扩展了 mSBSDME 对其他低可用性复杂基质的潜在适用性,否则这些基质将难以分析。此外,它为监测女性人群对双酚类物质的暴露情况提供了有价值的工具,最终目的是评估女性不孕症问题是否与这些高度内分泌干扰化合物的暴露有关。

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