Hua Marti Z, Liu Jinxin, Li Tianqi, McMullin David R, Hu Yaxi, Lu Xiaonan
Department of Food Science and Agricultural Chemistry, McGill University Macdonald Campus, Sainte-Anne-de-Bellevue, Quebec, H9X 3V9, Canada.
Department of Chemistry, Carleton University, Ottawa, Ontario, K1S 5B6, Canada.
Lab Chip. 2025 Feb 11;25(4):546-556. doi: 10.1039/d4lc00760c.
Mycotoxins are detectable in 60-80% of food crops, posing significant threats to human health and food security, and causing substantial economic losses. Most mitigation approaches focus on detecting mycotoxins with standard methods based on liquid chromatography coupled with mass spectrometry (LC-MS). Typical MS methods require extensive sample preparation and clean-up due to the matrix effect, followed by time-consuming LC separation, complicating the analysis process and limiting analytical throughput. This study reports the development of a repackable microfluidic molecularly imprinted solid-phase extraction coupled with mass spectrometry (μMISPE-MS) method for rapid detection of zearalenone in agri-food samples. Silica microspheres coated with molecularly imprinted polymers were synthesized as the sorbent for analyte enrichment and sample clean-up. A cost-effective microfluidic chip was designed and fabricated as the μMISPE platform with fully automated operation, including on-line microcolumn packing and unpacking. With optimized solvent conditions and on-chip μMISPE protocol, the entire analytical process from sample to answer was completed within 15 min and achieved high recoveries (71-94%) for corn and rice samples at residue levels of 0.05-0.5 ppm (within Canadian regulatory limits of 0.2-10 ppm). This μMISPE-MS method provides a promising tool for improving mycotoxin monitoring in agri-food systems and is generalizable to other rapid analyses of targeted chemicals in complex matrices.
60 - 80%的粮食作物中可检测到霉菌毒素,这对人类健康和粮食安全构成重大威胁,并造成巨大经济损失。大多数缓解方法侧重于使用基于液相色谱-质谱联用(LC-MS)的标准方法检测霉菌毒素。由于基质效应,典型的质谱方法需要进行大量的样品制备和净化,随后是耗时的液相色谱分离,这使分析过程复杂化并限制了分析通量。本研究报告了一种可重新装填的微流控分子印迹固相萃取-质谱联用(μMISPE-MS)方法的开发,用于快速检测农业食品样品中的玉米赤霉烯酮。合成了涂覆有分子印迹聚合物的二氧化硅微球作为吸附剂,用于分析物富集和样品净化。设计并制造了一种经济高效的微流控芯片作为μMISPE平台,具有全自动操作,包括在线微柱装填和卸载。通过优化的溶剂条件和芯片上的μMISPE方案,从样品到结果的整个分析过程在15分钟内完成,对于残留水平为0.05 - 0.5 ppm(在加拿大0.2 - 10 ppm的监管限值内)的玉米和大米样品,回收率较高(71 - 94%)。这种μMISPE-MS方法为改善农业食品系统中的霉菌毒素监测提供了一种有前景的工具,并且可推广到复杂基质中目标化学品的其他快速分析。