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使用传统的[18F]FDG模块全自动合成[18F]氟米索硝唑。

Fully automated synthesis of [18F]fluoromisonidazole using a conventional [18F]FDG module.

作者信息

Oh Seung Jun, Chi Dae Yoon, Mosdzianowski Christoph, Kim Jung Young, Gil Hee Seop, Kang Se Hun, Ryu Jin Sook, Moon Dae Hyuk

机构信息

Department of Nuclear Medicine, Asan Medical Center, University of Ulsan College of Medicine, 388-1 Pungnap-dong, Songpa-gu, Seoul 138-736, South Korea.

出版信息

Nucl Med Biol. 2005 Nov;32(8):899-905. doi: 10.1016/j.nucmedbio.2005.06.003.

Abstract

We developed a new fully automated method for the synthesis of [18F]fluoromisonidazole ([18F]FMISO) by modifying a commercial FDG synthesizer and its disposable fluid pathway. A three-step procedure was used to prepare the tosylate precursor, 1-(2'-nitro-1'-imidazolyl)-2-O-tetrahydrofuranyl-3-O-toluenesulfonylpropanediol. Using glycerol as the starting material, the precursor was synthesized with a yield of 21%. The optimal labeling conditions for the automated synthesis of [18F]FMISO was 10 mg of precursor in acetonitrile (2 ml heated at 105 degrees C for 360 s, followed by heating at 75 degrees C for 280 s and hydrolysis with 1 N HCl at 105 degrees C for 300 s. Using 3.7 GBq of [18F]F- as a starting activity, [18F]FMISO was obtained with high end-of-synthesis (EOS) radiochemical yields of 58.5+/-3.5% for 60.0+/-5.2 min with high-performance liquid chromatography (HPLC) purification. When solid-phase purification steps were added, the EOS radiochemical yields were 54.5+/-2.8% (337+/-25 GBq/micromol) for 70.0+/-3.8 min (n=10 for each group, decay-corrected). With a high starting radioactivity of 37.0 GBq, we obtained radiochemical yields of 54.4+/-2.9% and 52.8+/-4.2%, respectively (n=3). The solid-phase purification removed unreacted [18F]fluoride and polar impurities before the HPLC procedure. Long-term tests showed a good stability of 98.2+/-1.5%. This new automated synthesis procedure combines high and reproducible yields with the advantage of using a disposable cassette system.

摘要

我们通过改进商用氟代脱氧葡萄糖(FDG)合成仪及其一次性流体通路,开发了一种全新的全自动合成[18F]氟米索硝唑([18F]FMISO)的方法。采用三步法制备对甲苯磺酸酯前体,即1-(2'-硝基-1'-咪唑基)-2-O-四氢呋喃基-3-O-甲苯磺酰基丙二醇。以前体甘油为起始原料,合成产率为21%。[18F]FMISO自动合成的最佳标记条件为:10mg前体溶于乙腈(2ml)中,在105℃加热360s,然后在75℃加热280s,再于105℃用1N盐酸水解300s。以3.7GBq的[18F]F-作为起始活度,通过高效液相色谱(HPLC)纯化,在60.0±5.2分钟内获得了合成结束时(EOS)放射性化学产率高达58.5±3.5%的[18F]FMISO。当添加固相纯化步骤时,在70.0±3.8分钟内,EOS放射性化学产率为54.5±2.8%(337±25GBq/μmol)(每组n = 10,经衰变校正)。起始放射性活度高达37.0GBq时,我们分别获得了54.4±2.9%和52.8±4.2%的放射性化学产率(n = 3)。固相纯化在HPLC步骤之前去除了未反应的[18F]氟化物和极性杂质。长期测试显示稳定性良好,为98.2±1.5%。这种新的自动合成方法结合了高产率和可重复性,且具有使用一次性盒式系统的优点。

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