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氟-18-BMY 14802的合成与正电子发射断层扫描研究:一种潜在的抗精神病药物。

Synthesis and PET studies of fluorine-18-BMY 14802: a potential antipsychotic drug.

作者信息

Ding Y S, Fowler J S, Dewey S L, Wolf A P, Logan J, Gatley S J, Volkow N D, Shea C, Taylor D P

机构信息

Department of Chemistry, Brookhaven National Laboratory, Upton, New York 11973.

出版信息

J Nucl Med. 1993 Feb;34(2):246-54.

PMID:8094094
Abstract

BMY 14802 is a compound containing fluorine developed as a potential antipsychotic drug. It has a moderate affinity for the sigma binding site and a very low affinity for dopamine D2 receptors and has been predicted to have antipsychotic properties without the side effect potential of existing drugs. To assess the brain uptake, pharmacokinetics, stereoselectivity and binding properties of this potential antipsychotic drug, enantiomerically pure samples of (-) and (+)-[18F]BMY 14802 were examined in a baboon with PET. A tissue distribution with racemic labeled BMY 14802 was also carried out in mice. Radiochemical yields of 15% at the end of bombardment (EOB) for the racemic mixture, and 5% for each enantiomer with a specific activity of 2-5 Ci/mumol at EOB were obtained. In baboons, [18F]BMY 14802 cleared rapidly from the plasma and the glucuronidated [18F]BMY 14802 appeared. Radioactivity peaked (0.04-0.07% dose/cc) in all areas of the brain examined at about 5 min postinjection. It then rapidly cleared to about 30% of peak value by 20 min postinjection and to less than 10% of peak by 60 min postinjection in all regions. A similar rapid clearance from brain was also observed in mice. Pretreatment with unlabeled BMY 14802 (7 mg/kg), did not produce the expected reductions in distribution volume and clearance halftimes consistent with receptor binding. Although the rapid kinetics of [18F]BMY 14802 made it difficult to resolve the processes of transport and binding of the labeled drug, the lack of regional distribution consistent with the known distribution of sigma binding sites as well as the lack of stereoselectivity suggest that the behavior of BMY 14802 in the brain is dominated by its transport properties in tissue rather than its binding to sigma sites. Moreover, its rapid clearance from brain may be a limiting factor in its use as an antipsychotic drug.

摘要

BMY 14802是一种含氟化合物,被开发为一种潜在的抗精神病药物。它对σ结合位点具有中等亲和力,对多巴胺D2受体的亲和力非常低,据预测具有抗精神病特性,且没有现有药物的潜在副作用。为了评估这种潜在抗精神病药物的脑摄取、药代动力学、立体选择性和结合特性,用正电子发射断层扫描(PET)在一只狒狒身上检测了对映体纯的(-)和(+)-[18F]BMY 14802样品。还在小鼠身上进行了外消旋标记的BMY 14802的组织分布研究。外消旋混合物在轰击结束时(EOB)的放射化学产率为15%,每种对映体的放射化学产率为5%,EOB时的比活度为2 - 5 Ci/μmol。在狒狒中,[18F]BMY 14802从血浆中迅速清除,并且出现了葡萄糖醛酸化的[18F]BMY 14802。在注射后约5分钟,放射性在所有检测的脑区达到峰值(0.04 - 0.07%剂量/立方厘米)。然后在注射后20分钟迅速清除至峰值的约30%,在注射后60分钟所有区域清除至峰值的不到10%。在小鼠中也观察到了类似的从脑中快速清除的情况。用未标记的BMY 14802(7毫克/千克)预处理,并未产生与受体结合一致的分布体积和清除半衰期的预期降低。尽管[18F]BMY 14802的快速动力学使得难以分辨标记药物的转运和结合过程,但缺乏与已知σ结合位点分布一致的区域分布以及缺乏立体选择性表明,BMY 14802在脑中的行为主要由其在组织中的转运特性而非其与σ位点的结合所主导。此外,它从脑中的快速清除可能是其作为抗精神病药物使用的一个限制因素。

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