Zhang Ming-Rong, Tsuchiyama Akio, Haradahira Terushi, Yoshida Yuichiro, Furutsuka Kenji, Suzuki Kazutoshi
Department of Medical Imaging, National Institute of Radiological Sciences, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.
Appl Radiat Isot. 2002 Sep;57(3):335-42. doi: 10.1016/s0969-8043(02)00075-1.
An automated system was developed to synthesize 18F-labeled compounds using [18F]fluoroethyl bromide ([18F]FEtBr) as a synthetic precursor. The apparatus makes possible the following sequence of processes: (1) production of an aqueous solution of [18F]fluoride ([18F]F-), (2) recovery of [18F]F- from target chamber, (3) drying of [18F]F-, (4) formation and distillation of [18F]FEtBr into a trapping vessel, (5) alkylation of target compounds with [18F]FEtBr, (6) High performance liquid chromatography purification and (7) formulation. [18F]FEtBr, the synthetic precursor for fluoroethylation, was labeled via nucleophilic displacement of 2-trifluoromethanesulfonyloxy ethylbromide (BrCH2CH2OTf) with [18F]F- and was purified from the reaction mixture by distillation. After the conditions for forming [18F]FEtBr and drying [18F]F- were optimized, [18F]FEtBr was obtained in a radiochemical yield of 71 +/- 13% (n = 21, based on [18F]F-, corrected for decay) and a radiochemical purity of 98 +/- 1.4% at end of the syntheses (EOS). Using this automated system, [18F]fluoroethylspiperone ([18F]FEtSP) was prepared by reacting spiperone with [18F]FEtBr in a radiochemical yield and purity of 56 +/- 12% (n = 5, based on [18F]FEtBr, corrected for decay) and 97 +/- 1.5% with a specific activity of 310 +/- 120 GBq/mumol at EOS. The total synthesis time was 55 +/- 2.3 min from the end of bombardment and the developed system has proved to be reliable and reproducible.
开发了一种自动化系统,用于以[18F]氟乙基溴([18F]FEtBr)作为合成前体来合成18F标记的化合物。该装置使以下一系列过程成为可能:(1)制备[18F]氟化物([18F]F-)的水溶液,(2)从靶室回收[18F]F-,(3)干燥[18F]F-,(4)形成[18F]FEtBr并蒸馏至捕集容器中,(5)用[18F]FEtBr对目标化合物进行烷基化反应,(6)高效液相色谱纯化,以及(7)制剂配制。[18F]FEtBr作为氟乙基化的合成前体,通过用[18F]F-对2-三氟甲磺酰氧基乙基溴(BrCH2CH2OTf)进行亲核取代进行标记,并通过蒸馏从反应混合物中纯化。在优化了形成[18F]FEtBr和干燥[18F]F-的条件后,在合成结束时(EOS)获得了放射性化学产率为71±13%(n = 21,基于[18F]F-,已校正衰变)且放射性化学纯度为98±1.4%的[18F]FEtBr。使用该自动化系统,通过使螺哌隆与[18F]FEtBr反应制备了[18F]氟乙基螺哌隆([18F]FEtSP),放射性化学产率和纯度分别为56±12%(n = 5,基于[18F]FEtBr,已校正衰变)和97±1.5%,在EOS时比活度为310±120 GBq/μmol。从轰击结束起的总合成时间为55±2.3分钟,并且已证明所开发的系统可靠且可重复。