首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Synthesis, radiolabeling and biological evaluation of [I-125]-1-[2-(benzylthio)ethyl]-4-(5-iodo-2-methoxyphenyl) piperazine as a new 5-HT1A receptor ligand
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Synthesis, radiolabeling and biological evaluation of [I-125]-1-[2-(benzylthio)ethyl]-4-(5-iodo-2-methoxyphenyl) piperazine as a new 5-HT1A receptor ligand

机译:[I-125] -1- [2-(苄硫基)乙基] -4-(5-碘-2-甲氧基苯基)哌嗪作为新的5-HT1A受体配体的合成,放射性标记和生物学评价

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摘要

5-HT1A receptors have been implicated in the pathogenesis of a wide variety of disorders related to the serotonin receptors. WAY100635 is a well-known high affinity 5-HT1A receptor antagonist. Many C-11 and F-18 radiolabeled derivatives and its radioiodinated analogues have been reported as imaging agents for 5-HT1A receptors. In this regard, the synthesis, radiolabeling and biological evaluation of a new 5-HT1A receptor radioligand, k[I-125]-1-(2-(benzylthio)ethyl)-4-(5-iodo-2-methoxyphenyl) piperazine ([I-125]-BTE-IMPP), are described. Radioiodination of this newly synthesized compound was done by the direct aromatic electrophilic substitution via Iodo-Gen method. Radiochemical yield and radiochemical purity determined by TLC and RTLC were > 70% and > 95%, respectively. Biodistribution studies of [I-125]-BTE-IMPP in rats displayed relatively high uptake in hippocampus (Hip) and low uptake in cerebellum (Cer). The level of the radiotracer uptake was over threefold higher in hippocampus than in cerebellum at 30 min post-injection. Moreover, the brain to blood uptake ratio and the blocking studies results indicated prolonged retention of the radiotracer and relatively good specific binding to 5-HT1A receptor. These findings strongly suggest that [I-125]-BTE-IMPP could be a good candidate as an in vivo marker for pharmacological study of 5-HT1A receptors in animal models.
机译:5-HT1A受体对与血清素受体相关的各种疾病的发病机制涉及。 Way100635是一种众所周知的高亲和力5-HT1A受体拮抗剂。已经报告了许多C-11和F-18放射性标记的衍生物及其放射性碘相似量作为5-HT1A受体的成像剂。在这方面,新的5-HT1A受体放射性配体K [I-125] -1-(2-(苄基)乙基)-4-(5-碘-2-甲氧基苯基)哌嗪的合成,放射性标记和生物学评价([I-125] -bt -bl -blp)描述。通过直接芳族电泳取代通过碘-Ge方法进行该新合成化合物的放射性碘。由TLC和RTLC测定的放射化学产率和放射化学纯度分别> 70%和> 95%。大鼠中[I-125] -BTE-Impp的生物分布研究显示在海马(髋髋)和小脑(CER)中的低摄取相对较高的吸收。在30分钟后,海马在海马的辐射水平吸收水平超过三倍,比在注射后30分钟。此外,对吸血剂的大脑和阻断研究结果表明,延长尿离子蛋白和相对良好的特异性结合至5-HT1A受体。这些发现强烈表明[I-125] -BTE-FPRP可以是动物模型中5-HT1A受体的体内标记物的良好候选者。

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