School of Pharmaceutical Sciences & Institute of Materia Medica, Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, Shandong, 250117, China.
School of Pharmaceutical Sciences & Institute of Materia Medica, Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, Shandong, 250117, China.
Anal Chim Acta. 2024 Oct 16;1326:343138. doi: 10.1016/j.aca.2024.343138. Epub 2024 Aug 22.
Sulfonamide (SA) residues in food of animal origin possess a potential threat to human health and environment. However, due to the polar and ionic characteristics and trace level of SAs and the complexity of food matrices, direct measurement of SAs in these samples is still very difficult. Development of efficient sample pretreatment method for sensitive and selective extraction of trace SAs is of great significance and urgently desired. Therefore, rational design and synthesizing advanced and selective extractants is quite important.
In this work, a novel phenazine-based microporous organic network (MON) named TEPM-DP is reasonably synthesized and employed as a packing material for selective solid phase extraction (SPE) and sensitive determination of four typical SAs in milk samples. Phenazine-based monomer with aromatic and heteroaromatic ring and numerous N atoms is chosen to construct TEPM-DP adsorbent to provide π-π, hydrogen bonding, hydrophobic, and electrostatic extraction sites for SAs. The proposed method owns wide linear ranges, low limits of detection, high enrichment factors, and good precisions and recoveries for SAs in complex milk samples. The recoveries of SAs on TEPM-DP are much higher than those of commercial C18 and activated carbon. The extraction mechanisms are also elucidated via FT-IR, XPS, and comparative experiments.
This work reports the first example of design and synthesizing phenazine-based MON in SPE via a simple and rapid solvothermal method. The results reveal the great prospects of TEPM-DP for enriching polar and ionic SAs in complex samples and uncover the potency of phenazine-based MON in sample pretreatment, which will promote the development of MON.
动物源食品中的磺胺类(SA)残留对人类健康和环境构成潜在威胁。然而,由于 SA 的极性和离子特性以及痕量水平,以及食品基质的复杂性,直接测量这些样品中的 SA 仍然非常困难。开发高效的样品预处理方法,用于敏感和选择性提取痕量 SA,具有重要意义,且需求迫切。因此,合理设计和合成先进的选择性萃取剂非常重要。
本工作合理合成了一种新型基于吩嗪的微孔有机网络(MON),命名为 TEPM-DP,并将其用作选择性固相萃取(SPE)和灵敏测定牛奶样品中四种典型 SA 的填充材料。选择具有芳环和杂芳环以及大量 N 原子的吩嗪单体来构建 TEPM-DP 吸附剂,为 SA 提供π-π、氢键、疏水和静电萃取位点。该方法对复杂牛奶样品中的 SA 具有较宽的线性范围、较低的检测限、较高的富集因子和良好的精密度和回收率。SA 在 TEPM-DP 上的回收率远高于商用 C18 和活性炭。还通过 FT-IR、XPS 和对比实验阐明了萃取机制。
本工作首次报道了通过简单快速的溶剂热法在 SPE 中设计和合成基于吩嗪的 MON 的实例。结果表明 TEPM-DP 具有在复杂样品中富集极性和离子型 SA 的巨大潜力,揭示了基于吩嗪的 MON 在样品预处理方面的潜力,这将促进 MON 的发展。