新型潜在腺苷A3受体配体5-乙基2,4-二乙基-3-((2-[18F]氟乙基)磺酰基羰基)-6-苯基吡啶-5-羧酸盐([18F]FE@SUPPY:2)的放射性合成

D. Haeusler, M. Mitterhauser, L. Mien, K. Shanab, R. Lanzenberger, E. Schirmer, J. Ungersboeck, L. Nics, H. Spreitzer, H. Viernstein, R. Dudczak, et al.
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引用次数: 5

摘要

由于迄今为止关于腺苷A3受体的分布和功能的信息非常有限,因此需要开发合适的放射性配体。最近,我们引入了[18F]FE@SUPPY (5-(2-[18F]氟乙基)2,4-二乙基-3-(乙基磺酰基羰基)-6-苯基吡啶-5-羧酸盐)作为A3R的第一个pet配体。关于代谢谱-这类二烷基吡啶在一个分子内包含两个酯功能,一个羧基和一个硫羧基-可以预期羧基酯酶对裂解和降解有重要作用。因此,我们的目标是开发[18F]FE@SUPPY:2(5-乙基2,4-二乙基-3-((2-[18F]氟乙基)磺酰基羰基)-6-苯基吡啶-5-羧酸盐),这是一种功能异构体,在硫羧基部分含有标签。为了在大规模放射性合成中获得满意的产率,必须使用20mg /mL前体,在75°C的反应温度下应用至少20分钟。到目前为止,进行了6次完整的大规模放射性合成。从平均51.2±21.8 GBq (mean±SD) [18F]氟化物开始,在75±8分钟内制备了5.8±4.1 GBq的配方[18F]FE@SUPPY:2(12.0±5.4%,基于[18F]氟化物,未校正衰变)。
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Radiosynthesis of a novel potential adenosine A3 receptor ligand, 5-ethyl 2,4-diethyl-3-((2-[18F]fluoroethyl)sulfanylcarbonyl)-6-phenylpyridine-5-carboxylate ([18F]FE@SUPPY:2)
Abstract Since, to date very limited information on the distribution and function of the adenosine A3 receptor is available, the development of suitable radioligands is needed. Recently, we introduced [ 18F]FE@SUPPY (5-(2-[ 18F]fluoroethyl) 2,4-diethyl-3-(ethylsulfanylcarbonyl)-6-phenylpyridine-5-carboxylate) as the first PET-ligand for the A3R. Regarding the metabolic profile – this class of dialkylpyridines comprises two ester functions within one molecule, one carboxylic and one thiocarboxylic – one could expect carboxylesterases significantly contributing to cleavage and degradation. Therefore, our aim was the development of [ 18F]FE@SUPPY:2 (5-ethyl 2,4-diethyl-3-((2-[ 18F]fluoroethyl)sulfanylcarbonyl)-6-phenylpyridine-5-carboxylate), the functional isomer containing the label at the thiocarboxylic moiety. For satisfactory yields in high scale radiosyntheses, a reaction temperature of 75 °C has to be applied for at least 20 min using 20 mg/mL of precursor. So far, 6 complete high-scale radiosyntheses were performed. Starting from an average of 51.2±21.8 GBq (mean±SD) [ 18F]fluoride, 5.8±4.1 GBq of formulated [ 18F]FE@SUPPY:2 (12.0±5.4%, based on [ 18F]fluoride, not corrected for decay) were prepared in 75±8 min.
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