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自动化一步一锅法[(18)F]FCWAY合成:化学杂质的产生与最小化

An automated one-step one-pot [(18)F]FCWAY synthesis: development and minimization of chemical impurities.

作者信息

Vuong Bik-Kee, Kiesewetter Dale O, Lang Lixin, Ma Ying, Eckelman William C, Channing Michael A

机构信息

PET Department, Warren Grant Magnuson Clinical Center, Bethesda, MD 20892-1180, USA.

出版信息

Nucl Med Biol. 2007 May;34(4):433-8. doi: 10.1016/j.nucmedbio.2007.03.001.

Abstract

[(18)F]FCWAY (N-{2-[4-(2-methoxyphenyl)piperazino]}-N-(2-pyridinyl)trans-4-fluorocyclohexanecarboxamide) has been prepared routinely as a serotonin 5-HT(1A) receptor ligand for clinical human studies. We have developed an automated one-step radiosynthesis using a modified Nuclear Interface C-11 Methylation System. The chemical synthesis of an appropriate methanesulfonate precursor for single-step nucleophilic substitution with [(18)F]fluoride ion and the adaptation of radiochemical synthesis to an automated production module were accomplished. Following purification of a substrate using countercurrent chromatography, radiochemical yield increased from 18.9+/-0.3% to 21.9+/-2.2%. In addition, reduction of chemical impurities from about 40% to about 20% of total mass was observed. Further improvements in chemical purity were achieved by minimization of side reactions by modification of reaction conditions and optimization of the high-performance liquid chromatography method for the purification of the final radiopharmaceutical. Optimized automated synthesis produced [(18)F]FCWAY in a radiochemical yield of 28+/-6% at a chemical purity of 99.3% based on the absorbance of FCWAY at 254 nm and with a specific activity of 3433+/-1015 mCi/micromol at the end of bombardment, all calculated from the same 50 runs.

摘要

[(18)F]FCWAY(N-{2-[4-(2-甲氧基苯基)哌嗪基]}-N-(2-吡啶基)反式-4-氟环己烷甲酰胺)已作为5-羟色胺5-HT(1A)受体配体常规制备用于人体临床研究。我们利用改良的核接口C-11甲基化系统开发了一种自动化一步放射性合成方法。完成了用于与[(18)F]氟离子进行单步亲核取代的合适甲磺酸盐前体的化学合成以及放射性化学合成向自动化生产模块的适配。使用逆流色谱法纯化底物后,放射化学产率从18.9±0.3%提高到21.9±2.2%。此外,观察到化学杂质从总质量的约40%减少到约20%。通过改变反应条件使副反应最小化以及优化用于纯化最终放射性药物的高效液相色谱方法,进一步提高了化学纯度。优化后的自动化合成以28±6%的放射化学产率制备[(18)F]FCWAY,基于FCWAY在254nm处的吸光度,化学纯度为99.3%,轰击结束时比活度为3433±1015mCi/μmol,所有数据均根据相同的50次运行计算得出。

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