Sun Jian, Zheng Zheheng, Jia Zixiao, Wang Jiabin, Lin Xucong
College of Biological Science and Engineering, Fuzhou University, Fuzhou 350108, China.
College of Biological Science and Engineering, Fuzhou University, Fuzhou 350108, China.
J Chromatogr A. 2024 Jan 4;1713:464504. doi: 10.1016/j.chroma.2023.464504. Epub 2023 Nov 11.
Herein, an ionic covalent organic framework (iCOF) surface grafting monolithic sorbent was prepared by the multivariate surface self-assembly strategy for in-tube solid-phase microextraction (SPME) of trace aristolochic acids (AAs) in serum, traditional Chinese medicines (TCMs) and Chinese patent drug. Via adjusting the proportion of ionic COF building block during the self-assembly, the density of quaternary ammonium ions in the iCOF was modulated for the enhanced adsorption of AAs. The successful preparation of iCOF surface grafting monolithic sorbent was confirmed by different means. A multiple mode mechanism involving π-π stacking, hydrophobic, electrostatic and hydrogen-bonding interactions was primarily attributed to the adsorption. Several in-tube SPME operating conditions, such as the dosage of ionic COF building block, ACN percentage and TFA percentage in the sampling solution, ACN percentage and TFA percentage in eluent and the collection time span, were optimized to develop the online in-tube SPME-HPLC method for analysis of AAs. Under the optimized conditions, a good linearity was obtained in the concentration range of 20-1000 ng/mL for target AAs in serum samples, the limits of detection (LODs) were less than 10 ng/mL, while the recoveries ranged from 90.3 % to 98.7 % with RSDs (n = 5) below 7.9 %. This study developed a feasible approach to iCOF functionalized monolithic sorbent for SPME and further exhibited the vast potential for the application of COF based monolithic sorbent in sample preparation.
在此,通过多元表面自组装策略制备了一种离子共价有机框架(iCOF)表面接枝整体式吸附剂,用于血清、中药和中成药中痕量马兜铃酸(AAs)的管内固相微萃取(SPME)。通过在自组装过程中调节离子COF构建块的比例,调节iCOF中季铵离子的密度,以增强对AAs的吸附。通过不同方法证实了iCOF表面接枝整体式吸附剂的成功制备。吸附主要归因于包括π-π堆积、疏水、静电和氢键相互作用在内的多种模式机制。优化了几种管内SPME操作条件,如离子COF构建块的用量、采样溶液中乙腈的百分比和三氟乙酸的百分比、洗脱液中乙腈的百分比和三氟乙酸的百分比以及收集时间跨度,以开发用于分析AAs的在线管内SPME-HPLC方法。在优化条件下,血清样品中目标AAs在20-1000 ng/mL浓度范围内具有良好的线性,检测限(LODs)小于10 ng/mL,回收率在90.3%至98.7%之间,相对标准偏差(n = 5)低于7.9%。本研究开发了一种用于SPME的iCOF功能化整体式吸附剂的可行方法,并进一步展示了基于COF的整体式吸附剂在样品制备中的巨大应用潜力。