Related Experiment Video
Updated: Jul 13, 2026

Real-time Monitoring of Ligand-receptor Interactions with Fluorescence Resonance Energy Transfer
Published on: August 20, 2012
Synergistic coordination-driven ratiometric fluorescence detection of the anthrax biomarker dipicolinic acid
Junrong Wu1, Qian Zhang1, Xiaofeng Zhou1
1Engineering Research Center of Biomass Conversion and Pollution Prevention of Anhui Educational Institutions, Biomass Oligosaccharides Engineering Technology Research Center of Anhui Province, School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui 236037, China. 2000xhj@163.com.
Abstract:
2,6-Dipicolinic acid (DPA) is a unique biomarker of Bacillus anthracis, and the development of a simple, rapid, sensitive, and timely detection method for DPA plays a crucial role in preventing anthrax infection. In this study, a novel ratiometric fluorescent nanoprobe was developed for the stable detection of DPA. This design is based on synergistic coordination of a tribipyridine derivative and ZIF-8 with Zn2+ to generate a strong and stable reference fluorescence signal. Subsequently, the carboxyl-functionalized terpyridine moiety acts as a molecular pincer, tightly chelating rare-earth ions to complete the construction of the sophisticated Tpy@ZIF-8/Eu3+ probe. The Tpy@ZIF-8/Eu3+ nanoprobe serves as a multicolor ratiometric fluorescence sensing platform capable of detecting trace amounts of DPA in both aqueous media and complex environments. The sensing system displayed a linear response to DPA over a broad range of 0-60 μM with a low detection limit of 37.55 nM. Importantly, the integration of Tpy@ZIF-8/Eu3+-based test strips with a smartphone facilitates sensitive, real-time, and visually accessible detection of DPA.
More Related Videos
11:17Monitoring Changes in Membrane Polarity, Membrane Integrity, and Intracellular Ion Concentrations in Streptococcus pneumoniae Using Fluorescent Dyes
Published on: February 17, 2014
09:30Analyzing Dynamic Protein Complexes Assembled On and Released From Biolayer Interferometry Biosensor Using Mass Spectrometry and Electron Microscopy
Published on: August 6, 2018