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用于正电子发射断层扫描雌激素受体成像的11β-甲氧基-4,16α-[16α-(18)F]二氟雌二醇(4F-M[(18)F]FES)的自动化合成

Automated synthesis of 11beta-methoxy-4,16alpha-[16alpha-(18)F]difluoroestradiol (4F-M[(18)F]FES) for estrogen receptor imaging by positron emission tomography.

作者信息

Ahmed Naseem, Langlois Rejean, Rodrigue Serge, Bénard François, van Lier Johan E

机构信息

Sherbrooke Molecular Imaging Center (CIMS), Faculty of Medicine and Health Sciences, Université de Sherbrooke, Sherbrooke, Québec, Canada J1H 5N4.

出版信息

Nucl Med Biol. 2007 May;34(4):459-64. doi: 10.1016/j.nucmedbio.2007.02.001.

Abstract

Addition of both a 4-fluoro and 11beta-methoxy group onto 16alpha-[(18)F]fluoroestradiol ([(18)F]FES) yields 11beta-methoxy-4,16alpha-[16alpha-(18)F]difluoroestradiol (4F-M[(18)F]FES) with potential improved properties for positron emission tomography (PET) imaging of estrogen receptor densities in breast cancer patients. In order to provide 4F-M[(18)F]FES as a radiopharmaceutical for clinical trials, we developed an automated synthesis procedure using 3-O-methoxymethyl-11beta-methoxy-4-fluoro-16,17-O-sulfuryl-16-epiestriol as precursor. The radio synthesis involves stereoselective opening of the protected cyclic sulfone precursor via nucleophilic fluorination with [(18)F]fluoride in acetonitrile. After removal of the protecting ether and 17beta-sulphate groups by rapid hydrolysis in acidic ethanol and subsequent reversed-phase HPLC purification, the pure 4F-M[(18)F]FES was obtained as a sterile physiological saline solution in 45-50% radiochemical yield (decay corrected). The radiochemical purity of the final product was >98% and the effective specific activity (ESA) of 4F-M[(18)F]FES prepared under optimized conditions was >15,000 Ci/mmol. The total preparation time was 110+/-5 min and the product was shown to be stable for at least 6 h.

摘要

在16α-[(18)F]氟雌二醇([(18)F]FES)上同时添加4-氟和11β-甲氧基基团,可得到11β-甲氧基-4,16α-[16α-(18)F]二氟雌二醇(4F-M[(18)F]FES),其在乳腺癌患者雌激素受体密度的正电子发射断层扫描(PET)成像中可能具有更好的性能。为了提供4F-M[(18)F]FES作为用于临床试验的放射性药物,我们开发了一种自动化合成程序,使用3-O-甲氧基甲基-11β-甲氧基-4-氟-16,17-O-磺酰基-16-表雌三醇作为前体。放射性合成包括在乙腈中用[(18)F]氟化物进行亲核氟化,使受保护的环状砜前体进行立体选择性开环。在酸性乙醇中通过快速水解去除保护醚和17β-硫酸盐基团,随后进行反相HPLC纯化后,以45-50%的放射化学产率(衰变校正)获得纯的4F-M[(18)F]FES无菌生理盐水溶液。最终产物的放射化学纯度>98%,在优化条件下制备的4F-M[(18)F]FES的有效比活度(ESA)>15,000 Ci/mmol。总制备时间为110±5分钟,且产物显示至少6小时稳定。

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