Department of Chemistry, State University of Londrina (UEL), Rodovia Celso Garcia Cid, PR 445, Km 380, 86050-482, Londrina, PR, Brazil.
Department of Chemistry, State University of Londrina (UEL), Rodovia Celso Garcia Cid, PR 445, Km 380, 86050-482, Londrina, PR, Brazil; National Institute of Science and Technology in Bioanalysis (INCTBio), State University of Campinas (UNICAMP), Institute of Chemistry, Department of Analytical Chemistry, CidadeUniversitáriaZeferinoVaz s/n, 13083-861, Campinas, SP, Brazil.
Talanta. 2019 Sep 1;202:460-468. doi: 10.1016/j.talanta.2019.05.023. Epub 2019 May 4.
A new on-line solid phase preconcentration method using an ion-imprinted polymer with restrict access material based on copper-imprinted poly(allylthiourea) modified with 2-hydroxyethyl methacrylate and bovine serum (IIP-HEMA-BSA) to preconcentrate Cu ions and exclude protein from milk samples via FIA-FAAS was developed. The samples were on-line preconcentrated at pH 4.5 through a mini-column packed with 50.0 mg of IIP-HEMA-BSA at a flow rate of 7.6 mL min followed by a counter-current elution with 1.00 mol L HCl towards the FAAS detector. The interference of ions commonly found in milk samples and the presence of BSA were investigated in the Cu ions preconcentration. The method provided an analytical curve ranging from 3.6 to 100.0 μg L, preconcentration factor of 24-fold, limit of detection of 1.1 μg L and sample throughput of 20 h. The accuracy of the method was attested by Cu ions addition/recovery tests as well as by using GFAAS of samples microwave-assisted digested. The proposed method was successfully applied to the copper determination in milk samples, requiring only pH adjustment followed by preconcentration step as sample pretreatment. Copper content in bovine milk sample was 0.635 ± 0.042 mg kg, while to soybean milk samples were between 0.048 ± 0.008 and 0.094 ± 0.005 mg kg. To the best of our knowledge, the potential of IIP-HEMA-BSA for Cu ions extraction from biological samples and simultaneous removal of macromolecules employing minimal sample pretreatment was demonstrated for the first time. The proposed extraction method stands out by being simple, fast and a low-cost analytical strategy when compared to the conventional microwave-assisted acid digestion.
一种新的在线固相预浓缩方法,使用基于铜印迹的聚(烯丙基硫脲)与 2-羟乙基甲基丙烯酸酯和牛血清(IIP-HEMA-BSA)修饰的限制进入材料,通过流动注射分析-火焰原子吸收光谱法(FIA-FAAS)从牛奶样品中预浓缩 Cu 离子并排除蛋白质。样品在 pH 4.5 下通过填充有 50.0 mg IIP-HEMA-BSA 的微型柱在线预浓缩,流速为 7.6 mL/min,然后用 1.00 mol/L HCl 进行逆流洗脱,流向 FAAS 检测器。研究了离子印迹聚合物在 Cu 离子预浓缩过程中对常见于牛奶样品中的离子的干扰和 BSA 的存在。该方法提供了 3.6 至 100.0 μg/L 的分析曲线,浓缩因子为 24 倍,检测限为 1.1 μg/L,样品通量为 20 h。该方法的准确性通过 Cu 离子添加/回收率测试以及使用微波辅助消解的样品石墨炉原子吸收光谱法(GFAAS)进行了验证。该方法成功应用于牛奶样品中铜的测定,仅需 pH 调节和预浓缩步骤作为样品预处理。牛奶奶样中的铜含量为 0.635±0.042 mg/kg,而大豆奶样中的铜含量在 0.048±0.008 和 0.094±0.005 mg/kg 之间。据我们所知,这是首次证明 IIP-HEMA-BSA 具有从生物样品中提取 Cu 离子并同时去除大分子的潜力,仅需最小的样品预处理。与传统的微波辅助酸消解相比,该提取方法具有简单、快速和低成本的分析策略。