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作为用于正电子发射断层扫描神经成像的σ1受体配体的螺环3-(3-氟丙基)-2-苯并呋喃的评估。

Evaluation of spirocyclic 3-(3-fluoropropyl)-2-benzofurans as sigma1 receptor ligands for neuroimaging with positron emission tomography.

作者信息

Maestrup Eva Grosse, Fischer Steffen, Wiese Christian, Schepmann Dirk, Hiller Achim, Deuther-Conrad Winnie, Steinbach Jörg, Wünsch Bernhard, Brust Peter

机构信息

Institut für Pharmazeutische und Medizinische Chemie der Westfälischen Wilhelms-Universität Münster, Münster, Germany.

出版信息

J Med Chem. 2009 Oct 8;52(19):6062-72. doi: 10.1021/jm900909e.

Abstract

A series of various N-substituted 3-(3-fluoropropyl)-3H-spiro[[2]benzofuran-1,4'-piperidines] (7) has been synthesized. In receptor binding studies, the N-benzyl derivative 7a (WMS-1813) revealed extraordinarily high sigma(1) receptor affinity (K(i) = 1.4 nM) and excellent sigma(1)/sigma(2) selectivity (>600 fold). In vitro biotransformation of 7a with rat liver microsomes led to three main metabolites. N-Debenzylation was inhibited by introduction of an N-phenylethyl residue (7 g). The PET tracer [(18)F]7a was synthesized by nucleophilic substitution of the tosylate 13 with K[(18)F]F-K222-carbonate complex. The decay corrected radiochemical yield of [(18)F]7a was 35-48% with a radiochemical purity of >99.5% and a specific activity of 150-238 GBq/micromol. The radiotracer properties were evaluated in female CD-1 mice by organ distribution and ex vivo brain autoradiography. The radiotracer uptake in the brain was fast and sufficient, with values of approximately 4% injected dose per gram. Target specificity of [(18)F]7a was validated in blocking studies by preapplication of haloperidol, and significant reduction in the uptake of radioactivity was observed in the brain and peripheral organs expressing sigma(1) receptors.

摘要

已合成了一系列不同的N-取代的3-(3-氟丙基)-3H-螺[2]苯并呋喃-1,4'-哌啶。在受体结合研究中,N-苄基衍生物7a(WMS-1813)显示出极高的σ(1)受体亲和力(K(i)=1.4 nM)和出色的σ(1)/σ(2)选择性(>600倍)。7a与大鼠肝微粒体的体外生物转化产生了三种主要代谢物。引入N-苯乙基残基(7g)可抑制N-脱苄基化。通过用K[(18)F]F-K222-碳酸盐络合物对甲苯磺酸酯13进行亲核取代合成了PET示踪剂[(18)F]7a。[(18)F]7a的衰变校正放射化学产率为35-48%,放射化学纯度>99.5%,比活度为150-238 GBq/μmol。通过器官分布和离体脑放射自显影在雌性CD-1小鼠中评估了放射性示踪剂的性质。放射性示踪剂在脑中的摄取迅速且充足,每克约为注射剂量的4%。通过预先应用氟哌啶醇在阻断研究中验证了[(18)F]7a的靶标特异性,并且在表达σ(1)受体的脑和外周器官中观察到放射性摄取显著降低。

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