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Updated: Jun 21, 2026

Fabricating a UV-Vis and Raman Spectroscopy Immunoassay Platform
Published on: November 10, 2016
A one-shot approach for serum vancomycin assessment using fluorescence-based molecularly imprinted polymer
Suticha Chunta1, Maliwan Amatatongchai2, Rungthiwa Niamlaoong3
1Department of Clinical Chemistry, Faculty of Medical Technology, Prince of Songkla University, Hatyai, 90110, Songkhla, Thailand. suticha.c@psu.ac.th.
Novel molecularly imprinted polymer nanoparticles (MIP NPs) with fluorescent thionine offer a rapid and sensitive method for vancomycin (VA) detection. This fluorescence-based assay provides accurate VA measurement in serum within 10 minutes.
Area of Science:
- Nanotechnology
- Analytical Chemistry
- Biomedical Engineering
Background:
- Accurate vancomycin (VA) monitoring is crucial for therapeutic efficacy and preventing toxicity.
- Existing methods for VA detection can be time-consuming and require complex procedures.
- Development of rapid, sensitive, and selective assays for VA is highly desirable.
Purpose of the Study:
- To develop novel fluorescence-based molecularly imprinted polymer nanoparticles (MIP NPs) for sensitive vancomycin (VA) detection.
- To utilize thionine as both a functional monomer and an internal fluorescent probe for direct readout.
- To establish a rapid and selective assay for VA quantification in serum samples.
Main Methods:
- Preparation of MIP NPs incorporating fluorescent thionine within the polymer matrix.
- Utilizing the fluorescence quenching effect of vancomycin binding to MIP NPs for detection.
- Development of a fluorescence spectrometry assay for VA quantification in serum.
Main Results:
- The developed MIP NPs assay showed a linear response for VA from 1.55 to 100 mg/L with a low limit of detection (0.46 mg/L).
- High recovery rates (97-115%) and good within-run precision (2.7-6.2%) were achieved.
- The assay demonstrated high selectivity for VA over other common drugs and acceptable accuracy compared to a standard immunoassay, yielding results within 10 minutes.
Conclusions:
- Thionine-based MIP NPs provide a sensitive, selective, and rapid platform for vancomycin detection.
- The developed fluorescence assay offers a promising alternative to conventional methods for therapeutic drug monitoring.
- The unique properties of these MIP NPs suggest potential for broader applications in selective material development.
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