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Updated: May 25, 2026

An Aptamer-based Sensor for Unchelated Gadolinium(III)
Published on: January 9, 2017
Dual-functional gadolinium-based copper(II) probe for selective magnetic resonance imaging and fluorescence sensing
Xiaolin Zhang1, Xu Jing, Tao Liu
1State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116012, China.
Abstract:
A unique gadolinium complex, Nap-DO3A-Gd, comprising a naphthylamine luminescent moiety, a di-2-picolylamine (DPA) binding chelator, and a 1,4,7,10-tetraazacyclododecane-1,4,7-triacetic acid (DO3A) moiety has been designed and synthesized as a dual-functional probe for selective magnetic resonance imaging and fluorescent sensing of copper(II) in living cells. Nap-DO3A-Gd exhibited a turn-on manner of relaxivity changes and a fluorescent quenching toward Cu(2+). Through the introduction of naphthalamide into the Gd(3+) contrast agent platform to restrict the coordination ability of the DPA chelator and with Gd(3+) coordinating to the DPA moiety to turn away the interferences of other metal cations from Cu(2+) detection, the probe featured selective relaxivity changes toward Cu(2+) over other metal ions and brought unique Cu(2+)-specific luminescent responses. The probe was water-soluble with the luminescent detection limit established at 6 ppb and was successfully used for luminescence imaging detection of copper(II) in living cells. The results demonstrated the efficiency and advantage of our approach in the development of a dual-modality image.
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