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11β-[¹⁸F]氟-5α-二氢睾酮和11β-[¹⁸F]氟-19-去甲-5α-二氢睾酮的合成:通过卤氟还原法制备、受体结合及组织分布

Synthesis of 11 beta-[18F]fluoro-5 alpha-dihydrotestosterone and 11 beta-[18F]fluoro-19-nor-5 alpha-dihydrotestosterone: preparation via halofluorination-reduction, receptor binding, and tissue distribution.

作者信息

Choe Y S, Lidström P J, Chi D Y, Bonasera T A, Welch M J, Katzenellenbogen J A

机构信息

Department of Chemistry, University of Illinois, Urbana 61801.

出版信息

J Med Chem. 1995 Mar 3;38(5):816-25. doi: 10.1021/jm00005a009.

Abstract

We have prepared 11 beta-fluoro-5 alpha-dihydrotestosterone (11 beta-F-DHT, 1) and 11 beta-fluoro-19-nor-5 alpha-dihydrotestosterone (11 beta-F-19-nor-DHT, 2) in order to investigate the properties of these new androgens labeled with fluorine-18 as potential androgen receptor (AR)-based imaging agents for prostate cancer. These compounds were synthesized in 6 steps from hydrocortisone and in 13 steps from 1,4-androstadiene-3,11,17-trione, respectively. Relative binding affinities (RBA) of 11 beta-F-DHT and 11 beta-F-19-nor-DHT to AR are 53.1 and 75.3 (R1881 = 100), respectively, the latter being the highest reported among fluorine-substituted androgens. The fluorination step, which involves addition of halogen fluoride across the 9(11)-double bond, followed by reductive dehalogenation at the 9 alpha-position has been adapted to introduce a fluorine-18-label at the 11 beta-position of DHT and 19-nor-DHT. The two high-affinity F-18-labeled ligands [18F]-1 and [18F]-2 were evaluated in vivo, in tissue distribution studies using diethylstilbestrol-pretreated mature male rats. 11 beta-F-DHT shows high prostate uptake and selective prostate to blood and prostate to muscle uptake ratios, the latter two ratios increasing from 5 and 8 at 1 h to 12 and 19 at 4 h postinjection. Moreover, this compound has low uptake in bone, displaying the lowest in vivo defluorination among all androgens labeled with fluorine-18 tested so far. The in vivo properties of 11 beta-F-DHT in rats are thus favorable for imaging of prostate cancer. On the other hand, 11 beta-F-19-nor-DHT shows low prostate uptake with low selectivity and high uptake in liver, kidney, and bladder. Even though this ligand has the highest RBA and undergoes little metabolic defluorination, it appears to suffer from rapid metabolism in vivo. Therefore, it is apparent that the biodistribution properties of androgens are affected by their structure and metabolism as well as by their RBA.

摘要

为了研究这些用氟 - 18标记的新型雄激素作为前列腺癌潜在雄激素受体(AR)成像剂的性质,我们制备了11β - 氟 - 5α - 二氢睾酮(11β - F - DHT,1)和11β - 氟 - 19 - 去甲 - 5α - 二氢睾酮(11β - F - 19 - nor - DHT,2)。这些化合物分别由氢化可的松经6步合成,由1,4 - 雄甾二烯 - 3,11,17 - 三酮经13步合成。11β - F - DHT和11β - F - 19 - nor - DHT与AR的相对结合亲和力(RBA)分别为53.1和75.3(R1881 = 100),后者是氟取代雄激素中报道的最高值。氟化步骤包括在9(11) - 双键上加成氟化氢,然后在9α - 位进行还原脱卤,已被用于在DHT和19 - nor - DHT的11β - 位引入氟 - 18标记。两种高亲和力的F - 18标记配体[18F] - 1和[18F] - 2在体内进行了评估,使用己烯雌酚预处理的成年雄性大鼠进行组织分布研究。11β - F - DHT显示出高前列腺摄取以及前列腺与血液和前列腺与肌肉的摄取比具有选择性,后两个比值在注射后1小时为5和8,在4小时时增加到12和19。此外,该化合物在骨骼中的摄取较低,在迄今为止测试的所有用氟 - 标记的雄激素中,其体内脱氟率最低。因此,11β - F - DHT在大鼠体内的性质有利于前列腺癌的成像。另一方面,11β - F - 19 - nor - DHT显示出低前列腺摄取,选择性低,在肝脏、肾脏和膀胱中摄取高。尽管该配体具有最高的RBA且代谢脱氟很少,但它在体内似乎存在快速代谢。因此,很明显雄激素的生物分布性质受其结构、代谢以及RBA的影响。

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