Beauregard Jean-Mathieu, Croteau Etienne, Ahmed Naseem, Ouellette René, van Lier Johan E, Bénard François
Sherbrooke Molecular Imaging Center (CIMS), Université de Sherbrooke, Sherbrooke, Québec, Canada J1H 5N4.
Nucl Med Biol. 2007 Apr;34(3):325-9. doi: 10.1016/j.nucmedbio.2007.01.001.
16alpha-[(18)F]Fluoro-17beta-estradiol ([(18)F]FES) and various derivatives can be used to image noninvasively the expression of estrogen receptors in breast cancer. A high specific activity is required for successful visualization of ER expression in vivo, particularly for small animal imaging. We describe a simple method for effective specific activity (ESA) measurements of ER-binding ligands.
Scintillator-coated polystyrene microplates (FlashPlate) were coated with purified ER of the alpha subtype. [(18)F]FES and 4-fluoro-11beta-methoxy-16alpha-[(18)F]fluoroestradiol (4F-M[(18)F]FES) were prepared by stereoselective opening of their respective cyclic sulfate precursors. After decay of the radioactivity, samples at various dilutions were put in the wells of the FlashPlate along with buffer and [(3)H]estradiol. On the same FlashPlate, nonradioactive estradiol was placed at concentrations ranging from 10(-11) to 10(-6) M to provide a standard competition curve.
The average effective specific activities of different batches of [(18)F]FES and 4F-M[(18)F]FES were 1169 (range, 49-6251) and 4695 (range, 413-15,261) Ci/mmol, respectively.
Scintillation proximity technology allows for simple and reproducible measurements of the ESA of receptor-binding radiopharmaceutical for which purified receptors are available.
16α-[(18)F]氟-17β-雌二醇([(18)F]FES)及其各种衍生物可用于无创成像乳腺癌中雌激素受体的表达。为了在体内成功可视化雌激素受体表达,尤其是用于小动物成像,需要高比活度。我们描述了一种用于雌激素受体结合配体有效比活度(ESA)测量的简单方法。
用α亚型的纯化雌激素受体包被闪烁体包被的聚苯乙烯微孔板(FlashPlate)。[(18)F]FES和4-氟-11β-甲氧基-16α-[(18)F]氟雌二醇(4F-M[(18)F]FES)通过各自环硫酸酯前体的立体选择性开环制备。放射性衰变后,将不同稀释度的样品与缓冲液和[(3)H]雌二醇一起放入FlashPlate的孔中。在同一FlashPlate上,放置浓度范围为10(-11)至10(-6)M的非放射性雌二醇以提供标准竞争曲线。
不同批次的[(18)F]FES和4F-M[(18)F]FES的平均有效比活度分别为1169(范围49-6251)和4695(范围413-15261)Ci/mmol。
闪烁接近技术允许对有纯化受体可用的受体结合放射性药物的ESA进行简单且可重复的测量。