College of Food and Health, Zhejiang A&F University, Hangzhou, 311300, China.
College of Optical, Mechanical and Electrical Engineering, Zhejiang A&F University, Hangzhou, 311300, China.
Talanta. 2025 Jan 1;281:126879. doi: 10.1016/j.talanta.2024.126879. Epub 2024 Sep 13.
The development of high-performance specific sensors is promising for the rapid detection of harmful residues in animal-derived foods. Recently, luminescent metal-organic framework/molecularly imprinted polymer (LMOF/MIP) materials have been developed as ideal candidates for the analysis of harmful residues. Here, we reported a simple fabrication protocol of paper-based chip through in-situ growth of LMOF on a negatively charged modified filter paper, a paper-based molecularly imprinting layer (FP@BA-Eu@MIP) was thereafter successfully prepared via the boronate affinity-based controllable oriented surface imprinting strategy. The paper-based chips obtained were used to construct a rapid test strip of tetracycline (TC). After addition of TC, significant fluorescence changes on the surface of the FP@BA-Eu@MIP paper-based chip could be observed from blue to red via inner filter effect and photo-induced electron transfer under the excitation of 360 nm. The adsorption kinetics was explored in detail. The presented strip exhibited satisfied selectiveness and sensitivity with a limit of detection of 8.47 μg L for TC. It was confirmed that LMOF/MIP as a biomimetic recognition module can play a crucial role in enrichment and fluorescence response. This study provided a real application case for an in-situ fabricated fluorescence paper-based chip in rapidly detecting harmful residues.
开发高性能的特异性传感器有望实现动物源性食品中有害残留物的快速检测。最近,发光金属-有机骨架/分子印迹聚合物(LMOF/MIP)材料已被开发为分析有害残留物的理想候选材料。在这里,我们通过在带负电荷的改性滤纸上原位生长 LMOF 报道了一种通过原位生长制备基于纸的芯片的简单制造方案,随后通过硼酸亲和可控定向表面印迹策略成功制备了基于纸的分子印迹层(FP@BA-Eu@MIP)。获得的基于纸的芯片被用于构建四环素(TC)的快速测试条。加入 TC 后,通过内滤效应和在 360nm 激发下的光致电子转移,在 FP@BA-Eu@MIP 基于纸的芯片表面可以观察到从蓝色到红色的显著荧光变化。详细探讨了吸附动力学。该条带表现出令人满意的选择性和灵敏度,TC 的检测限为 8.47μg L。证实 LMOF/MIP 作为仿生识别模块可以在富集和荧光响应中发挥关键作用。这项研究为快速检测有害残留物的原位制备荧光基于纸的芯片提供了一个实际应用案例。