首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Substituted benzamides as ligands for visualization of dopamine receptor binding in the human brain by positron emission tomography.
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Substituted benzamides as ligands for visualization of dopamine receptor binding in the human brain by positron emission tomography.

机译:取代的苯甲酰胺作为配体可通过正电子发射断层扫描显像人脑中的多巴胺受体结合。

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摘要

Two substituted benzamides, FLB 524 and raclopride, were labeled with 11C and examined for their possible use as ligands for positron emission tomography (PET)-scan studies on dopamine-2 (D-2) receptors in the brains of monkeys and healthy human subjects. Both ligands allowed the in vivo visualization of D-2 receptor binding in the corpus striatum caudate nucleus/putamen complex in PET-scan images. [11C]Raclopride showed a high ratio of specific striatal to nonspecific cerebellar binding, and the kinetics of binding of this ligand made it optimal for PET studies. The in vivo binding of [11C]raclopride in the striatum of cynomolgus monkeys was markedly reduced by displacement with haloperidol. This and previous in vitro data indicate that [11C]raclopride binds selectively to striatal D-2 dopamine receptors. In healthy human subjects, [11C]raclopride binding in the caudate nucleus/putamen was 4- to 5-fold greater than nonspecific binding in the cerebellum. In comparison with previously available ligands for PET-scan studies on central dopamine receptors in man, [11C]raclopride appears to be advantageous with regard to (i) specificity of binding to D-2 receptors, (ii) the high ratio between binding in dopamine-rich (caudate, putamen) and dopamine-poor (cerebellum) human brain regions, and (iii) rapid association and reversibility of specific binding. [11C]Raclopride should be a valuable tool for characterizing D-2 receptors in the brains of patients with neuropsychiatric disorders.
机译:两种取代的苯甲酰胺,FLB 524和雷洛必利,用11C标记,并检查它们是否可能用作正电子发射断层扫描(PET)扫描的猴子和健康人类大脑中多巴胺2(D-2)受体的扫描研究的配体。两种配体均允许在PET扫描图像中体内显示纹状体尾状核/丘脑复合体中D-2受体的结合。 [11C]雷氯必利显示出特定纹状体与非特异性小脑结合的高比率,并且该配体的结合动力学使其成为PET研究的最佳选择。氟哌啶醇置换可显着降低食蟹猴纹状体中[11C]雷氯必利的体内结合。该和以前的体外数据表明,[11C]雷氯必利与纹状体D-2多巴胺受体选择性结合。在健康的人类受试者中,[11C] raclopride在尾状核/丘脑中的结合比在小脑中的非特异性结合高4至5倍。与先前针对人的中央多巴胺受体进行PET扫描研究的配体相比,[11C]雷氯必利在以下方面似乎具有优势:(i)与D-2受体结合的特异性,(ii)多巴胺丰富(尾状,壳状核)和多巴胺缺乏(小脑)的人脑区域,以及(iii)快速结合和特异性结合的可逆性。 [11C]雷洛必利应该是表征神经精神疾病患者大脑中D-2受体的有价值的工具。

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