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碳-11表哌立酮:一种适用于正电子发射断层显像(PET)研究纹状体及纹状体以外多巴胺D2受体的放射性配体。

Carbon-11 epidepride: a suitable radioligand for PET investigation of striatal and extrastriatal dopamine D2 receptors.

作者信息

Langer O, Halldin C, Dollé F, Swahn C G, Olsson H, Karlsson P, Hall H, Sandell J, Lundkvist C, Vaufrey F, Loc'h C, Crouzel C, Mazière B, Farde L

机构信息

Karolinska Institutet, Department of Clinical Neuroscience, Karolinska Hospital, Stockholm, Sweden.

出版信息

Nucl Med Biol. 1999 Jul;26(5):509-18. doi: 10.1016/s0969-8051(99)00005-0.

Abstract

Epidepride [(S)-(-)-N-([1-ethyl-2-pyrrolidinyl]methyl)-5-iodo-2,3-dimethoxybenza mide] binds with a picomolar affinity (Ki = 24 pM) to the dopamine D2 receptor. Iodine-123-labeled epidepride has been used previously to study striatal and extrastriatal dopamine D2 receptors with single photon emission computed tomography (SPECT). Our aim was to label epidepride with carbon-11 for comparative quantitative studies between positron emission tomography (PET) and SPECT. Epidepride was synthesized from its bromo-analogue FLB 457 via the corresponding trimethyl-tin derivative. In an alternative synthetic pathway, the corresponding substituted benzoic acid was reacted with the optically pure aminomethylpyrrolidine-derivative. Demethylation of epidepride gave the desmethyl-derivative, which was reacted with [11C]methyl triflate. Total radiochemical yield was 40-50% within a total synthesis time of 30 min. The specific radioactivity at the end of synthesis was 37-111 GBq/micromol (1,000-3,000 Ci/mmol). Human postmortem whole-hemisphere autoradiography demonstrated dense binding in the caudate putamen, and also in extrastriatal areas such as the thalamus and the neocortex. The binding was inhibited by unlabeled raclopride. PET studies in a cynomolgus monkey demonstrated high uptake in the striatum and in several extrastriatal regions. At 90 min after injection, uptake in the striatum, thalamus and neocortex was about 11, 4, and 2 times higher than in the cerebellum, respectively. Pretreatment experiment with unlabeled raclopride (1 mg/kg) inhibited 50-70% of [11C]epidepride binding. The fraction of unchanged [11C]epidepride in monkey plasma determined by a gradient high performance liquid chromatography (HPLC) method was about 30% of the total radioactivity at 30 min after injection of [11C]epidepride. The availability of [11C]epidepride allows the PET-verification of the data obtained from quantitation studies with SPECT.

摘要

表阿必利[(S)-(-)-N-([1-乙基-2-吡咯烷基]甲基)-5-碘-2,3-二甲氧基苯甲酰胺]以皮摩尔亲和力(Ki = 24 pM)与多巴胺D2受体结合。碘-123标记的表阿必利此前已用于通过单光子发射计算机断层扫描(SPECT)研究纹状体和纹状体以外的多巴胺D2受体。我们的目的是用碳-11标记表阿必利,以便在正电子发射断层扫描(PET)和SPECT之间进行比较定量研究。表阿必利由其溴代类似物FLB 457通过相应的三甲基锡衍生物合成。在另一种合成途径中,相应的取代苯甲酸与光学纯的氨甲基吡咯烷衍生物反应。表阿必利的去甲基化得到去甲基衍生物,其与[11C]甲基三氟甲磺酸酯反应。在30分钟的总合成时间内,总放射化学产率为40 - 50%。合成结束时的比活度为37 - 111 GBq/μmol(1,000 - 3,000 Ci/mmol)。人类死后全脑半球放射自显影显示在尾状壳核以及丘脑和新皮质等纹状体以外区域有密集结合。未标记的雷氯必利可抑制这种结合。对食蟹猴的PET研究表明,纹状体和几个纹状体以外区域有高摄取。注射后90分钟,纹状体、丘脑和新皮质的摄取分别比小脑高约11、4和2倍。用未标记的雷氯必利(1 mg/kg)进行的预处理实验抑制了50 - 70%的[11C]表阿必利结合。通过梯度高效液相色谱(HPLC)法测定,猴血浆中未变化的[11C]表阿必利在注射[11C]表阿必利后30分钟约占总放射性的30%。[11C]表阿必利的可得性使得能够对从SPECT定量研究中获得的数据进行PET验证。

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