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18F标记的二氟雌二醇:作为雌激素受体结合放射性药物的制备及临床前评估

18F-labeled difluoroestradiols: preparation and preclinical evaluation as estrogen receptor-binding radiopharmaceuticals.

作者信息

Seimbille Yann, Rousseau Jacques, Bénard François, Morin Catherine, Ali Hasrat, Avvakumov George, Hammond Geoffrey L, van Lier Johan E

机构信息

Department of Nuclear Medicine and Radiobiology, Faculty of Medicine, Sherbrooke PET Center, Université de Sherbrooke, Sherbrooke, Que., Canada J1H 5N4.

出版信息

Steroids. 2002 Aug;67(9):765-75. doi: 10.1016/s0039-128x(02)00025-9.

Abstract

A-ring fluorination of estradiol (ES) at position 2 or 4 decreases the rate of metabolism by blocking the formation of catechol estrogens, one of the major metabolic pathways of ES. We postulate that adding a 2- or 4-fluoro substituent to 16alpha-[18F]fluoroestradiol (FES), a positron emission tomography (PET) radiopharmaceutical used for estrogen receptor (ER) imaging, should prolong its blood circulation time, and thus, improve its localization in ER-rich target tissues. On such account, we prepared a series of FES derivatives substituted with a fluorine atom at C2 or C4, with or without an 11beta-OMe group, and we tested their binding affinities for the ER and different serum proteins including rat alphafetoprotein (AFP) and human sex hormone-binding globulin (SHBG). Labeling at the 16alpha-position was accomplished via nucleophilic substitution with [18F]F(-) on the reactive 16beta,17beta-cyclic sulfate intermediates. Decay corrected yields varied between 30 and 50% for a total synthesis time of 120 min, providing final products with specific activities >3000 Ci/mmol. The 18F-labeled analogs were evaluated for their biodistribution in immature female rats. Substitutions with the 4-F have little effect on binding affinities. Addition of the 2-F diminishes ER and AFP-binding affinities while augmenting the affinity for the SHBG. Addition of the 11beta-OMe decreases all binding affinities, particularly to AFP and SHBG. In contrast, biodistribution of the corresponding [16alpha-18F]fluoro analogs in immature female rats revealed that the presence of the 11beta-OMe group improves ER-mediated uterus uptake, with the 4,16alpha-[16alpha-18F]difluoro-11beta-methoxyestradiol showing the highest uptake values (15% ID at 1-h post-injection). These data suggest that the addition of both a 4-F and 11beta-OMe group onto FES may provide an improved radiopharmaceutical for PET imaging of ER densities in breast cancer patients.

摘要

雌二醇(ES)在2位或4位的A环氟化通过阻断儿茶酚雌激素的形成来降低代谢速率,儿茶酚雌激素是ES的主要代谢途径之一。我们推测,在用于雌激素受体(ER)成像的正电子发射断层扫描(PET)放射性药物16α-[18F]氟雌二醇(FES)上添加2-或4-氟取代基,应能延长其血液循环时间,从而改善其在富含ER的靶组织中的定位。基于此,我们制备了一系列在C2或C4位被氟原子取代的FES衍生物,有或没有11β-OMe基团,并测试了它们对ER以及包括大鼠甲胎蛋白(AFP)和人类性激素结合球蛋白(SHBG)在内的不同血清蛋白的结合亲和力。16α位的标记是通过用[18F]F(-)对反应性16β,17β-环硫酸酯中间体进行亲核取代来完成的。在120分钟的总合成时间内,衰变校正产率在30%至50%之间变化,提供了比活>3000 Ci/mmol的最终产物。对18F标记的类似物在未成熟雌性大鼠中的生物分布进行了评估。用4-F取代对结合亲和力影响很小。添加2-F会降低ER和AFP的结合亲和力,同时增加对SHBG的亲和力。添加11β-OMe会降低所有结合亲和力,尤其是对AFP和SHBG的亲和力。相比之下,相应的[16α-18F]氟类似物在未成熟雌性大鼠中的生物分布显示,11β-OMe基团的存在改善了ER介导的子宫摄取,4,16α-[16α-18F]二氟-11β-甲氧基雌二醇在注射后1小时显示出最高的摄取值(15% ID)。这些数据表明,在FES上同时添加4-F和11β-OMe基团可能为乳腺癌患者ER密度的PET成像提供一种改进的放射性药物。

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