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受限双孔道离子印迹聚合物用于在线萃取和火焰原子吸收光谱法测定牛奶样品中的铜。

Restricted double access ionic imprinted polymer for online extraction and determination of copper from milk samples via FIA-FAAS system.

机构信息

Instrumental Analytical Chemistry Research Group - GPQAI, Institute of Chemistry, Federal University of Alfenas - Unifal-MG, Alfenas, MG, 37130-000, Brazil.

Instrumental Analytical Chemistry Research Group - GPQAI, Institute of Chemistry, Federal University of Alfenas - Unifal-MG, Alfenas, MG, 37130-000, Brazil.

出版信息

Anal Chim Acta. 2024 Apr 1;1296:342308. doi: 10.1016/j.aca.2024.342308. Epub 2024 Feb 5.

Abstract

BACKGROUND

Determining metals in complex biological samples, such as milk, typically involves dry or wet decomposition. However, these techniques have limitations, including low selectivity, risk of contamination, and the use of large reagent volumes. To solve these problems, solid-phase extraction (SPE) using multifunctional sorbents has been extensively explored. In this context, this work proposed synthesizing a new restricted double access ionic imprinted polymer (RAIIP-BSA), for online SPE and determination of Cu from untreated milk samples via flow injection analysis and flame atomic absorption spectrometry (FIA-FASS).

RESULTS

Firstly, the polymer was obtained by bulk polymerization using Cu as a template, 4-vinyl pyridine as a functional monomer, and glycidyl methacrylate as a hydrophilic comonomer. Subsequently, it was covered with bovine serum albumin, creating the restricted double access barrier. The obtained material could exclude 97 % of the proteins from milk samples. RAIIP-BSA was chemically and physically characterized. The main extraction variables were optimized via multivariate optimization. The method showed good figures of merit, such as linearity ranging from 0.05 to 1.0 mg L, LoD and LoQ of 0.03 and 0.05 mg L, intra- and interday precision ranging from 0.73 to 4.14 % and 0.16-3.68 %, and an intra- and interday accuracy ranging from 97.0 to 115.0 % and 103.0-119.0 %, respectively.

SIGNIFICANCE

The developed method demonstrates the effective extraction of Cu from untreated milk samples, exhibiting selectivity, high extraction capacity, prolonged sorbent (RAIIP-BSA) durability, simplicity, and swift operation. This method holds promise as an alternative to conventional metal analysis approaches in complex matrices.

摘要

背景

在牛奶等复杂生物样本中测定金属通常需要进行干法或湿法消解。然而,这些技术存在局限性,包括选择性低、污染风险以及需要使用大量试剂。为了解决这些问题,广泛探索了使用多功能吸附剂的固相萃取(SPE)。在这种情况下,本工作提出合成一种新的受限双入口离子印迹聚合物(RAIIP-BSA),用于在线 SPE 和通过流动注射分析和火焰原子吸收光谱法(FIA-FASS)测定未经处理的牛奶样品中的 Cu。

结果

首先,通过使用 Cu 作为模板、4-乙烯基吡啶作为功能单体和甲基丙烯酸缩水甘油酯作为亲水共聚单体的本体聚合获得聚合物。随后,它被牛血清白蛋白覆盖,形成受限双入口屏障。所得到的材料可以排除牛奶样品中 97%的蛋白质。RAIIP-BSA 进行了化学和物理表征。通过多元优化优化了主要的萃取变量。该方法表现出良好的衡量标准,例如线性范围为 0.05-1.0mg/L,检测限和定量限分别为 0.03 和 0.05mg/L,日内和日间精密度分别为 0.73-4.14%和 0.16-3.68%,以及日内和日间准确度分别为 97.0-115.0%和 103.0-119.0%。

意义

所开发的方法证明了从未经处理的牛奶样品中有效提取 Cu,表现出选择性、高萃取容量、延长吸附剂(RAIIP-BSA)耐用性、简单和快速操作。该方法有望替代复杂基质中常规金属分析方法。

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