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Updated: Dec 24, 2025

Biofunctionalized Prussian Blue Nanoparticles for Multimodal Molecular Imaging Applications
Published on: April 28, 2015
Fluoride-specific fluorescence/MRI bimodal probe based on a gadolinium(iii)-flavone complex: synthesis, mechanism and
Yue Wang1, Run Zhang, Renfeng Song
1School of Chemical Engineering, University of Science and Technology Liaoning, 185 Qianshan Zhong Road, Anshan 114044, P. R. China. qtmeng@ustl.edu.cn zhangzhiqiang@ustl.edu.cn.
Abstract:
Molecular imaging is a powerful tool to visualize cellular processes and activity levels of biomarkers at the cellular and molecular level, in which a molecular probe is a prerequisite for the molecular imaging technique. The present work reports a bimodal probe for the fluorescence and magnetic resonance detection of fluoride ions (F-) in aqueous media and in vivo. The bimodal probe, EDTA-Gd-HF, was prepared by self-assembly of the EDTA-Gd complex with 3-hydroxyflavone (HF). In the system, HF plays the role of spectroscopic reporter and Gd(iii) serves as a MRI signal output unit as well as the fluoride ion binding site. Upon addition of fluoride ions into an aqueous solution of EDTA-Gd-HF, the replacement of one coordinated water molecule and then liberation of HF led to remarkable spectroscopic recovery and distinct changes to the longitudinal relaxivity (r1), by which fluorescence/MRI bimodal fluoride ion sensing was achieved. In vivo magnetic resonance imaging (MRI) in mice indicates that EDTA-Gd-HF can be potentially used in biomedical diagnosis and therapy fields.

