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评价香豆素标记的去铁胺作为基于 Zr(IV)的 PET/荧光双模式成像探针。

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

机构信息

Department of Chemistry 'Ugo Schiff', University of Florence, Via della Lastruccia 3, 50019 Sesto Fiorentino, Florence, Italy.

Imaging Platform, Department of Experimental and Clinical Medicine, University of Florence, Viale G.Pieraccini 6, 50139 Florence, Italy.

出版信息

J Inorg Biochem. 2023 Aug;245:112259. doi: 10.1016/j.jinorgbio.2023.112259. Epub 2023 May 18.

Abstract

Desferoxamine (DFO) is currently the golden standard chelator for Zr, a promising nuclide for positron emission tomography imaging (PET). The natural siderophore DFO had previously been conjugated with fluorophores 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 Zr(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 biodistribution (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 Zr.

摘要

去铁胺(DFO)是目前用于正电子发射断层成像(PET)的 Zr 的金标准螯合剂,是一种很有前途的放射性核素。天然的铁载体 DFO 之前已与荧光团缀合以获得 Fe(III)感应分子。在这项研究中,制备并表征了 DFO 的荧光香豆素衍生物(DFOC)(通过电位法、紫外可见光谱法),研究了其质子化和金属配位特性,涉及到与 PET 相关的离子(Cu(II)、Zr(IV)),这表明它与原始 DFO 具有很强的相似性。通过金属结合检查了 DFOC 荧光发射的保留情况(荧光分光光度法),因为它允许进行光学(荧光)成像,从而为 Zr(IV)示踪剂解锁双模态(PET/荧光)成像。NIH-3T3 成纤维细胞和 MDA-MB 231 乳腺腺癌细胞系的结晶紫和 MTT 测定分别表明,在通常的放射性诊断浓度下,ZrDFOC 没有细胞毒性或代谢损伤。在 X 射线照射的 MDA-MB 231 细胞上进行的集落形成克隆测定表明,ZrDFOC 不会干扰放射敏感性。对同一细胞进行的形态生物分布(共聚焦荧光、透射电子显微镜)测定表明,该复合物通过内吞作用被内化。总的来说,这些结果支持将荧光标记的 DFO 作为实现基于 Zr 的双重成像(PET/荧光)探针的合适选择。

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