首页> 外文期刊>Nuclear Medicine and Biology >Synthesis of 4'-iodo-5-methoxy-valerophenone O-(2-aminoethyl)oxime as an agent for exploration of serotoninergic transporter.
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Synthesis of 4'-iodo-5-methoxy-valerophenone O-(2-aminoethyl)oxime as an agent for exploration of serotoninergic transporter.

机译:合成4'-碘-5-甲氧基-戊苯酮O-(2-氨基乙基)肟作为探索5-羟色胺能转运蛋白的试剂。

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The serotonin reuptake process is observed in the central nervous system and in cells derived from the neural crest. It would therefore be of great interest to visualize this reuptake for brain exploration and to visualize the tumors derived from these cells (Apudome). Fluvoxamine has been described as a specific uptake inhibitor for serotonin uptake and we therefore supposed that an iodinated derivative of this compound would be a suitable tracer for this purpose. We had shown by computer-assisted investigation that the trifluoromethyl group of fluvoxamine can be replaced by iodine without changing the steric hindrance of the structure. We therefore expected that this result would allow the development of a new iodinated ligand for human exploration by SPECT which would inhibit for the serotoninergic transporter. This new ligand is 4'-iodo-5-methoxyvalerophenone O-(2-aminoethyl)oxime in its E configuration. In vitro binding studies demonstrated that this iodinated ligand has a weaker affinity for the serotonin uptake sites than fluvoxamine. Steric hindrance is not sufficient to predict affinity, other structural factors such as electronic density and dipole moment must be considered to explain the biological difference between fluvoxamine and its iodinated analog.
机译:在中枢神经系统和源自神经derived的细胞中观察到5-羟色胺再摄取过程。因此,将这种再摄取可视化以进行脑探索并可视化源自这些细胞的肿瘤(Apudome)将引起极大的兴趣。氟伏沙明已被描述为5-羟色胺摄取的特异性摄取抑制剂,因此我们认为该化合物的碘化衍生物将是适合于此目的的示踪剂。我们已经通过计算机辅助研究表明,氟伏沙明的三氟甲基可以被碘代替,而不会改变结构的空间位阻。因此,我们预期该结果将允许通过SPECT开发一种新的碘配体供人类探索,该配体会抑制5-羟色胺能转运蛋白。这种新的配体是E构型的4'-碘-5-甲氧基戊苯酮O-(2-氨基乙基)肟。体外结合研究表明,这种碘代配体对5-羟色胺摄取部位的亲和力比氟伏沙明弱。立体障碍不足以预测亲和力,必须考虑其他结构因素,例如电子密度和偶极矩来解释氟伏沙明及其碘代类似物之间的生物学差异。

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