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Nanotechnology ; 33(18)2022 Feb 10.
Article in English | MEDLINE | ID: mdl-35062011

ABSTRACT

The concentration of intracellular zinc ions is a significant clinical parameter for diagnosis. However, it is still a challenge for direct visual detection of zinc ions in cells at single-cell level. To address this issue, herein, water-soluble amino-rich polydopamine carbon quantum dots (PDA-CQDs) were successfully synthesized, with strong blue-green fluorescence as the probes for zinc ions detection in cells. The structure and properties of PDA-CQDs were confirmed by transmission electron microscopy (TEM), X-ray diffraction (XRD), Fourier transformed infrared (FT-IR), UV-visible spectrophotometry (UV-vis), and fluorescence spectroscopy. Importantly, by successfully linking salicylaldehyde (SA) to PDA-CQDs via nucleophilic reaction, the FL quenching and Zn ions induced FL-recovering system was built up, thus offering a signal-on platform for the detection of zinc ions. This PDA-CQDs-SA nanoprobe can be applied for the detection of Zn2+with a detection limit of 0.09µM, with good biocompatibility confirmed using cytotoxicity assay. Of significance, the results of fluorescence bioimaging showed that PDA-CQDs-SA is able to detect Zn2+in single-cell visually, with the detection limit of Zn ions in cells as low as 0.11µM per cell, which was confirmed using flow cytometry. Therefore, this work offers a potential probe for Zn2+detection in cells at single-cell level, towards the precise diagnosis of zinc ions related diseases.


Subject(s)
Carbon/chemistry , Indoles/chemistry , Polymers/chemistry , Quantum Dots/chemistry , Zinc/analysis , Aldehydes/chemistry , Aldehydes/toxicity , Carbon/toxicity , Cell Survival/drug effects , Fluorescence , HeLa Cells , Humans , Indoles/toxicity , Ions/analysis , Ions/chemistry , Limit of Detection , Molecular Imaging , Polymers/toxicity , Quantum Dots/toxicity , Single-Cell Analysis , Zinc/chemistry
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