首页> 外文期刊>Journal of Labelled Compounds and Radiopharmaceuticals >Radiosynthesis of 1231 labelled benzimidazoles as novel single-photon emission computed tomography tracers for the histamine H3 receptor
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Radiosynthesis of 1231 labelled benzimidazoles as novel single-photon emission computed tomography tracers for the histamine H3 receptor

机译:放射性合成1231标记的苯并咪唑作为组胺H3受体的新型单光子发射计算机断层扫描示踪剂

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摘要

The histamine H3 receptor is implicated in many neurological and psychological disorders and is therefore of interest as a target for pharmacological intervention. The drug development process can be facilitated by using a radiotracer for this receptor in conjunction with single-photon emission computed tomography or positron emission tomography imaging studies, such as drug occupancy studies. This study investigates methods for the radiosynthesis of three compounds to be evaluated as novel radiotracers for the histamine H3 receptor. The radiosyntheses of the three target compounds, ~123I-WYE23O949, ~123I-WYE126734 and ~123I-WYE127044 were evaluated using electrophilic iododesilylation and iododestannylation of the corresponding trimethylsilyl and tributylstannyl precursors. All three compounds could be produced in high radiochemical yield by electrophilic iododestannylation. By contrast, only two of the three (WYE230949 and WYE126734) could be produced by electrophilic iododesilylation. This is because of the fact that the trimethylsilyl precursors are less reactive than the stannyl precursors. Electrophilic iododestannylation of the tributylstannyl precursors is therefore the method of choice for radiosynthesis of these compounds because all three target compounds could be produced in high radiochemical yield.
机译:组胺H3受体与许多神经和心理疾病有关,因此作为药理学干预的靶标是令人感兴趣的。通过对该受体使用放射性示踪剂,结合单光子发射计算机断层扫描或正电子发射断层扫描成像研究(例如药物占用研究),可以促进药物开发过程。这项研究调查了三种化合物的放射性合成方法,这些方法被评估为组胺H3受体的新型放射性示踪剂。使用相应的三甲基甲硅烷基和三丁基锡烷基前体的亲电碘代去甲硅烷基化和碘代雌烯基化作用,对三种目标化合物〜123I-WYE23O949,〜123I-WYE126734和〜123I-WYE127044的放射性合成进行了评估。所有三种化合物都可以通过亲电子的碘二苯甲酰化以高放射化学产率生产。相比之下,这三者中只有两者(WYE230949和WYE126734)可以通过亲电的碘去甲硅烷基化生产。这是因为三甲基甲硅烷基前体的反应性比苯乙烯基前体低。因此,三丁基锡烷基前体的亲电碘去锡烷基化是这些化合物放射性合成的选择方法,因为所有三种目标化合物都可以高放射化学产率生产。

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