Issue 13, 2024

A novel NIR fluorescent probe for in situ visualizing Fe(ii) and its application in drug-induced liver/kidney injury

Abstract

Fe2+ has high redox activity and participates in many important physiological processes in vivo, playing a crucial role in the living system. An excessive iron content can lead to oxidative stress and cell damage, leading to the occurrence of many diseases. Therefore, it is necessary to establish an effective method to detect unstable iron(II) ions (Fe2+). In this work, a novel NIR fluorescent probe MDJ-O for Fe2+ based on the N-oxide structure was explored. The probe can monitor Fe2+ based on the ICT mechanism. In the PBS buffer solution containing 1 mM CTAB, MDJ-O showed a rapid response toward Fe2+ in 5 min with a fluorescence enhancement of 49-fold (λex/λem = 535/720 nm). The sensitivity of MDJ-O for Fe2+ was brilliant, and the detection limit was as low as 3.09 μM. Notably, MDJ-O was successfully utilized for living cell imaging and in vivo imaging of zebrafish and mice. In addition, MDJ-O was successfully used for monitoring the level changes of Fe2+ in the liver and kidney injuries induced by acetaminophen (APAP), achieving the visualization of the injury. This work is of great significance for the study of drug-induced liver and kidney injury and other iron-related diseases.

Graphical abstract: A novel NIR fluorescent probe for in situ visualizing Fe(ii) and its application in drug-induced liver/kidney injury

Supplementary files

Article information

Article type
Paper
Submitted
05 Apr 2024
Accepted
22 May 2024
First published
29 May 2024
This article is Open Access
Creative Commons BY-NC license

Mater. Adv., 2024,5, 5624-5631

A novel NIR fluorescent probe for in situ visualizing Fe(II) and its application in drug-induced liver/kidney injury

H. Xiang, Y. Song, Y. Wang, W. Fu and N. Xiao, Mater. Adv., 2024, 5, 5624 DOI: 10.1039/D4MA00361F

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