Kügler Fabian, Ermert Johannes, Coenen Heinz H
Institute of Neurosciences and Medicine, INM-5: Nuclear Chemistry, Forschungszentrum Jülich GmbH, Jülich, Germany; Present address: Nuklearmedizinische Klinik und Poliklinik, Technische Universität München, Ismaninger Straße 22, D-81675, München, Germany.
J Labelled Comp Radiopharm. 2013 Oct;56(12):609-18. doi: 10.1002/jlcr.3074. Epub 2013 Aug 10.
The D(4) receptor is of high interest for research and clinical application but puts high demands on appropriate radioligands to be useful tools for investigation. Search for adequate radioligands suitable for in vivo imaging is therefore still in progress. The potential neuroleptic drug 6-(4-[4-fluorobenzyl]piperazin-1-yl)benzodioxin shows high affinity and selectivity to the D(4) receptor. Derivatization of this lead structure by adding hydrophilic moieties was carried out in order to lower its lipophilicity what led to three new putative dopamine receptor D(4) ligands. A comprehensive description of the syntheses of standard compounds and corresponding labeling precursors is given which were obtained in satisfactory yields. Furthermore, the radiosyntheses by direct (18) F-labeling and build-up synthesis were compared. All derivatives of 6-(4-[4-fluorobenzyl]-piperazin-1-yl)benzodioxin were successfully synthesized in (18) F-labeled form with radiochemical yields of 9-35% and molar activities of 30-60 GBq/µmol using one-pot procedures.
D(4)受体在研究和临床应用方面备受关注,但对合适的放射性配体要求很高,以便成为有用的研究工具。因此,寻找适用于体内成像的合适放射性配体的工作仍在进行中。潜在的抗精神病药物6-(4-[4-氟苄基]哌嗪-1-基)苯并二恶英对D(4)受体显示出高亲和力和选择性。通过添加亲水性部分对该先导结构进行衍生化,以降低其亲脂性,从而得到了三种新的假定多巴胺受体D(4)配体。文中给出了标准化合物及其相应标记前体合成的全面描述,产率令人满意。此外,还比较了直接(18)F标记合成法和逐步合成法。采用一锅法成功合成了6-(4-[4-氟苄基]哌嗪-1-基)苯并二恶英的所有衍生物的(18)F标记形式,放射化学产率为9-35%,摩尔活度为30-60 GBq/µmol。