4.6 Article

Evaluation of coumarin-tagged deferoxamine as a Zr(IV)-based PET/fluorescence dual imaging probe

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JOURNAL OF INORGANIC BIOCHEMISTRY
卷 245, 期 -, 页码 -

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2023.112259

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Deferoxamine; Zr(IV)-PET imaging; Optical imaging; Dual imaging-metal complexes

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A fluorescent coumarin derivative of DFO (DFOC) has been synthesized and characterized for its potential application in bimodal (PET/fluorescence) imaging based on 89Zr, showing similar properties to pristine DFO. Cell assays and morphological distribution experiments support the use of fluorophore-tagged DFO as a suitable option for dual imaging probes.
Desferoxamine (DFO) is currently the golden standard chelator for 89Zr4+, a promising nuclide for positron emission tomography imaging (PET). The natural siderophore DFO had previously been conjugated with fluo-rophores to obtain Fe(III) sensing molecules. In this study, a fluorescent coumarin derivative of DFO (DFOC) has been prepared and characterized (potentiometry, UV-Vis spectroscopy) for what concerns its protonation and metal coordination properties towards PET-relevant ions (Cu(II), Zr(IV)), evidencing strong similarity with pristine DFO. Retention of DFOC fluorescence emission upon metal binding has been checked (fluorescence spectrophotometry), as it would - and does - allow for optical (fluorescent) imaging, thus unlocking bimodal (PET/fluorescence) imaging for 89Zr(IV) tracers. Crystal violet and MTT assays on NIH-3 T3 fibroblasts and MDA-MB 231 mammary adenocarcinoma cell lines demonstrated, respectively, no cytotoxicity nor metabolic impairment at usual radiodiagnostic concentrations of ZrDFOC. Clonogenic colony-forming assay performed on X-irradiated MDA-MB 231 cells showed no interference of ZrDFOC with radiosensitivity. Morphological bio-distribution (confocal fluorescence, transmission electron microscopy) assays on the same cells suggested internalization of the complex through endocytosis. Overall, these results support fluorophore-tagged DFO as a suitable option to achieve dual imaging (PET/fluorescence) probes based on 89Zr.

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