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Published on: September 16, 2014
Paper-based fluorescent sensor based on molecularly imprinted polymers and upconversion nanoparticles for selective
Akarapong Prakobkij1,2, Jiajia Zhou3, Mahnaz Maddahfar3
1Department of Applied Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Ubon Ratchathani University, Ubon Ratchathani, 34190, Thailand. purim.j@ubu.ac.th.
None:
D-Proline has been reported as a potential biomarker for gastric (stomach) cancer, creating a demand for practical and rapid analytical approaches for early diagnosis using simple and non-invasive clinical samples. In this work, a microfluidic paper-based analytical device (µPAD) integrating molecularly imprinted polymer-functionalized upconversion nanoparticles (UCNPs@MIPs) was developed for the selective fluorescence-based detection of D-proline. Owing to near-infrared excitation (980 nm), UCNPs provide background-free fluorescence with high photostability, while MIPs serve as artificial receptors to impart molecular selectivity. The sensing mechanism relies on fluorescence quenching of UCNPs@MIPs induced by D-proline through multiphonon relaxation, resulting in an inverse relationship between fluorescence intensity and analyte concentration. Quantitative analysis was achieved using a homemade IR-laser-controlled light box and smartphone-based image capture, with signal evaluation based on blue-channel intensity. The proposed platform exhibited a linear response over the concentration range of 0.01-0.30 mM, with a limit of detection of 0.016 mM. The method was successfully applied to the determination of spiked D-proline in human saliva and serum samples. Owing to its simplicity, low sample consumption, portability, and adaptability, the proposed sensing strategy shows strong potential for on-site analysis and can be extended to broader applications in chemical analysis, biosensing, and environmental monitoring.

