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Imaging cortical dopamine D1 receptors using 11CNNC112 and ketanserin blockade of the 5-HT2A receptors

机译:使用11C NNC112和酮色林阻断5-HT2A受体对皮质多巴胺D1受体进行成像

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摘要

[11C]NNC112 (8-chloro-7-hydroxy-3-methyl-5-(7-benzofuranyl)-2,3,4,5-tetrahydro-IH-3-benzazepine), a selective positron-emission tomography (PET) ligand for the D1 receptor (R) over the 5-HT2A R in vitro, has shown lower selectivity in vivo, hampering measurement of D1 R in the cortex. [11C]NNC112 PET and intravenous (i.v) ketanserin challenge were used to (1) confirm the previous findings of [11C]NNC112 in vivo D1 R selectivity, and (2) develop a feasible methodology for imaging cortical D1 R without contamination by 5-HT2A R. Seven healthy volunteers underwent [11C]NNC112 PET scans at baseline and after a 5-HT2A R-blocking dose of ketanserin (0.15 mg/kg, i.v.). Percent BPND change between the post-ketanserin and baseline scans was calculated. Irrespective of the quantification method used, ketanserin pretreatment led to significant decrease of BPND in the cortical (∼30%) and limbic regions (∼20%) but not in the striatum, which contains a much lower amount of 5-HT2A R. Therefore, ketanserin allows D1 R signal to be detected by [11C]NNC112 PET without significant 5-HT2A R contamination. These data confirm the presence of a significant 5-HT2A R contribution to cortical [11C]NNC112 signal, and call for caution in the interpretation of published [11C]NNC112 PET findings on cortical D1 R in humans. In the absence of more selective ligands, [11C]NNC112 PET with ketanserin can be used for cortical D1 R imaging in vivo.
机译:[ 11 C] NNC112(8-氯-7-羟基-3-甲基-5-(7-苯并呋喃基)-2,3,4,5-四氢-IH-3-苯并ze庚因),体外5-HT2A R上D1受体(R)的选择性正电子发射断层扫描(PET)配体显示出较低的体内选择性,妨碍了皮层中D1 R的测量。 [ 11 C] NNC112 PET和静脉内(iv)ketanserin攻击用于(1)确认先前对[ 11 C] NNC112体内D1 R选择性的发现,以及(2)开发了一种可行的方法,对皮层D1 R成像,不受5-HT2A R污染。七名健康志愿者在基线和5-HT2A R阻断剂量后接受了[ 11 C] NNC112 PET扫描酮色林(0.15 mg / kg,iv)。计算了酮色林注射后和基线扫描之间的BPND变化百分比。无论采用哪种定量方法,酮色林预处理均会导致皮质(约30%)和边缘区域(约20%)的BPND显着降低,而纹状体中的BPND却显着降低,纹状体中的5-HT2A R含量要低得多。 ,酮色林允许[ 11 C] NNC112 PET检测D1 R信号,而没有明显的5-HT2A R污染。这些数据证实了对皮质[ 11 C] NNC112信号有明显的5-HT2A R贡献,因此在解释已发表的[ 11 C] NNC112信号时需要谨慎。 PET对人类皮质D1 R的发现。在没有更多选择性配体的情况下,[ 11 C] NNC112 PET与酮色林可以用于体内D1 R皮层成像。

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