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18F氟乙基化:11C甲基化放射性示踪剂快速转化的不同策略。

18F fluoroethylations: different strategies for the rapid translation of 11C-methylated radiotracers.

作者信息

Wadsak Wolfgang, Mien Leonhard-Key, Ettlinger Dagmar E, Eidherr Harald, Haeusler Daniela, Sindelar Karoline-Maria, Keppler Bernhard K, Dudczak Robert, Kletter Kurt, Mitterhauser Markus

机构信息

Department of Nuclear Medicine, Medical University of Vienna, Vienna A-1090, Austria.

出版信息

Nucl Med Biol. 2007 Nov;34(8):1019-28. doi: 10.1016/j.nucmedbio.2007.06.012. Epub 2007 Sep 21.

Abstract

INTRODUCTION

The translation of 11C-labeled compounds into their respective 18F-labeled derivatives is an important tool in the rapid development of positron emission tomography (PET) tracers. Thus, our aim was the development of a general method for the preparation of 18F-fluoroethylated compounds that (a) is applicable to a variety of precursors, (b) can be performed in a fully automated commercially available synthesizer and (c) enables this rapid translation of 11C-methylated tracers into their 18F-fluoroethylated analogs sharing the same precursor molecules.

METHODS

Ten methods for the preparation and purification of different 18F-fluoroethylating agents were compared. Subsequently, five 18F-labeled PET tracers were synthesized under fully automated conditions.

RESULTS

Radiochemical yields ranged from 34.4% to 60.8%, and time consumption ranged from 20 to 55 min for all methods. Use of 1-bromo-2-[18F]fluoroethane and distillation evinced as the method of choice.

CONCLUSIONS

We were able to develop a general method for the preparation of a variety of 18F-fluoroethylated molecules. The provided tool is solely based on commercially available resources and has the potential to simplify and accelerate innovative PET tracer development in the future.

摘要

引言

将11C标记的化合物转化为各自的18F标记衍生物是正电子发射断层扫描(PET)示踪剂快速发展的一项重要工具。因此,我们的目标是开发一种制备18F-氟乙基化化合物的通用方法,该方法(a)适用于多种前体,(b)可在全自动商用合成仪中进行,并且(c)能够将11C-甲基化示踪剂快速转化为具有相同前体分子的18F-氟乙基化类似物。

方法

比较了十种制备和纯化不同18F-氟乙基化试剂的方法。随后,在全自动条件下合成了五种18F标记的PET示踪剂。

结果

所有方法的放射化学产率范围为34.4%至60.8%,耗时范围为20至55分钟。使用1-溴-2-[18F]氟乙烷和蒸馏被证明是首选方法。

结论

我们能够开发出一种制备多种18F-氟乙基化分子的通用方法。所提供的工具仅基于市售资源,并且有可能在未来简化和加速创新性PET示踪剂的开发。

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