Foged C, Halldin C, Swahn C G, Ginovart N, Karlsson P, Lundkvist C, Farde L
Karolinska Institutet, Department of Clinical Neuroscience, Karolinska Hospital, Stockholm, Sweden.
Nucl Med Biol. 1998 Jul;25(5):503-8. doi: 10.1016/s0969-8051(98)00010-9.
NNC 22-0215 has been found to be a metabolically stable dopamine D1 antagonist with high affinity and selectivity for D1 receptors in vitro. We prepared [11C]NNC 22-0215 with a specific radioactivity of about 50 GBq/micromol at time of administration. In PET experiments with [11C]NNC 22-0215 there was a rapid uptake of radioactivity in the cynomolgus monkey brain (1.8% of total radioactivity injected). Radioactivity accumulated most markedly in the striatum and the neocortex. The striatum to cerebellum ratio was about 4, with specific binding that remained at a plateau level from 50 min to 100 min after injection. Binding in the striatum and neocortex was markedly displaced by SCH 23390, whereas binding in the cerebellum was not reduced. Metabolite studies showed that about 80% of the radioactivity in the monkey plasma represented unchanged radioligand 30 min after injection. The rate of metabolism in monkey plasma in vivo was also determined for a series of structurally related 11C-labelled benzazepines, previously used as dopamine D1 receptor ligands for PET. Results indicate a significantly slower rate of metabolism for [11C]NNC 22-0215 than for any of the previously labelled benzazepines. Thus [11C]NNC 22-0215 has potential for imaging of selective binding to the dopamine D1 receptors in the human brain with high count rates at time of equilibrium.
已发现NNC 22 - 0215是一种代谢稳定的多巴胺D1拮抗剂,在体外对D1受体具有高亲和力和选择性。我们制备了[11C]NNC 22 - 0215,给药时的比活度约为50 GBq/微摩尔。在使用[11C]NNC 22 - 0215的PET实验中,食蟹猴脑中放射性迅速摄取(占注射总放射性的1.8%)。放射性最明显地积聚在纹状体和新皮层。纹状体与小脑的比值约为4,注射后50分钟至100分钟特异性结合保持在平台水平。纹状体和新皮层中的结合被SCH 23390明显取代,而小脑中的结合未减少。代谢物研究表明,注射后30分钟,猴血浆中约80%的放射性代表未变化的放射性配体。还测定了一系列结构相关的11C标记苯并氮杂卓在猴体内血浆中的代谢速率,这些苯并氮杂卓以前用作PET的多巴胺D1受体配体。结果表明,[11C]NNC 22 - 0215的代谢速率明显慢于任何先前标记的苯并氮杂卓。因此,[11C]NNC 22 - 0215有潜力在平衡时以高计数率对人脑中多巴胺D1受体的选择性结合进行成像。