Collet Charlotte, Maskali Fatiha, Clément Alexandra, Chrétien Françoise, Poussier Sylvain, Karcher Gilles, Marie Pierre-Yves, Chapleur Yves, Lamandé-Langle Sandrine
Université de Lorraine, Vandoeuvre-les-Nancy, France.
Nancyclotep, Plateforme d'imagerie moléculaire, Vandoeuvre-les-Nancy, France.
J Labelled Comp Radiopharm. 2016 Feb;59(2):54-62. doi: 10.1002/jlcr.3362. Epub 2015 Dec 28.
This work describes the development of new 6-[(18) F]fluoro-carbohydrate-based prosthetic groups equipped with an azido arm that are able to participate in copper(I)-catalyzed cycloadditions for (18) F labeling of biomolecules under mild conditions. The radiolabeling in high radiochemical yields (up to 68 ± 6%) of these different prosthetic groups is presented. The flexibility of the azido arm introduced on the carbohydrate moieties allows efficient click reactions with different alkyne functionalized peptides such as gluthation or Arg-Gly-Asp derivatives in order to prepare glycopeptides. The radiosyntheses of (18) F-labeled glycopeptides proceed in high radiochemical yields (up to 76%) in an automated process with excellent radiochemical purity. The addition of a sugar moiety on peptides should enhance the bioavailability, pharmacokinetic, and in vivo clearance properties of these glycopeptides, compared with the unlabeled native peptide, and these properties are highly favorable for positron emission tomography imaging. A high uptake of (18) F-β-gluco-c(RGDfC) is shown by positron emission tomography imaging in a subcutaneous abscess model in the rat, revealing the potential of this tracer to monitor integrin expression as a part of inflammation and/or angiogenesis processes.
这项工作描述了新型基于6-[(18)F]氟碳水化合物的带有叠氮基臂的 Prosthetic 基团的开发,这些基团能够在温和条件下参与铜(I)催化的环加成反应,用于生物分子的(18)F 标记。展示了这些不同 Prosthetic 基团以高放射化学产率(高达68±6%)进行的放射性标记。引入碳水化合物部分的叠氮基臂的灵活性允许与不同的炔烃功能化肽(如谷胱甘肽或 Arg-Gly-Asp 衍生物)进行高效的点击反应,以制备糖肽。(18)F 标记糖肽的放射性合成在自动化过程中以高放射化学产率(高达76%)进行,具有优异的放射化学纯度。与未标记的天然肽相比,在肽上添加糖部分应可提高这些糖肽的生物利用度、药代动力学和体内清除特性,并且这些特性对于正电子发射断层扫描成像非常有利。在大鼠皮下脓肿模型中,正电子发射断层扫描成像显示(18)F-β-葡萄糖-c(RGDfC)有高摄取,揭示了该示踪剂作为炎症和/或血管生成过程一部分监测整合素表达的潜力。